Daily Archives: March 25, 2016

Automation – Wikipedia, the free encyclopedia

Posted: March 25, 2016 at 12:45 pm

Automation or automatic control, is the use of various control systems for operating equipment such as machinery, processes in factories, boilers and heat treating ovens, switching on telephone networks, steering and stabilization of ships, aircraft and other applications with minimal or reduced human intervention. Some processes have been completely automated.

The biggest benefit of automation is that it saves labor; however, it is also used to save energy and materials and to improve quality, accuracy and precision.

The term automation, inspired by the earlier word automatic (coming from automaton), was not widely used before 1947, when General Motors established an automation department.[1] It was during this time that industry was rapidly adopting feedback controllers, which were introduced in the 1930s.[2]

Automation has been achieved by various means including mechanical, hydraulic, pneumatic, electrical, electronic devices and computers, usually in combination. Complicated systems, such as modern factories, airplanes and ships typically use all these combined techniques.

One of the simplest types of control is on-off control. An example is the thermostats used on household appliances. Electromechanical thermostats used in HVAC may only have provision for on/off control of heating or cooling systems. Electronic controllers may add multiple stages of heating and variable fan speed control.

Sequence control, in which a programmed sequence of discrete operations is performed, often based on system logic that involves system states. An elevator control system is an example of sequence control.

The advanced type of automation that revolutionized manufacturing, aircraft, communications and other industries, is feedback control, which is usually continuous and involves taking measurements using a sensor and making calculated adjustments to keep the measured variable within a set range. Moreover, it can be understood as the relation of two variables, one for the "x" axis and a second for the "y" axis. If the value of "y" increases, then the value on the "x" axis will also increase, and vice versa.[3]

All the elements constituting the measurement and control of a single variable are called a control loop. Control that uses a measured signal, feeds the signal back and compares it to a set point, calculates and sends a return signal to make a correction, is called closed loop control. If the controller does not incorporate feedback to make a correction then it is open loop.

Loop control is normally accomplished with a controller. The theoretical basis of open and closed loop automation is control theory.

Sequential control may be either to a fixed sequence or to a logical one that will perform different actions depending on various system states. An example of an adjustable but otherwise fixed sequence is a timer on a lawn sprinkler.

States refer to the various conditions that can occur in a use or sequence scenario of the system. An example is an elevator, which uses logic based on the system state to perform certain actions in response to its state and operator input. For example, if the operator presses the floor n button, the system will respond depending on whether the elevator is stopped or moving, going up or down, or if the door is open or closed, and other conditions.[4]

An early development of sequential control was relay logic, by which electrical relays engage electrical contacts which either start or interrupt power to a device. Relays were first used in telegraph networks before being developed for controlling other devices, such as when starting and stopping industrial-sized electric motors or opening and closing solenoid valves. Using relays for control purposes allowed event-driven control, where actions could be triggered out of sequence, in response to external events. These were more flexible in their response than the rigid single-sequence cam timers. More complicated examples involved maintaining safe sequences for devices such as swing bridge controls, where a lock bolt needed to be disengaged before the bridge could be moved, and the lock bolt could not be released until the safety gates had already been closed.

The total number of relays, cam timers and drum sequencers can number into the hundreds or even thousands in some factories. Early programming techniques and languages were needed to make such systems manageable, one of the first being ladder logic, where diagrams of the interconnected relays resembled the rungs of a ladder. Special computers called programmable logic controllers were later designed to replace these collections of hardware with a single, more easily re-programmed unit.

In a typical hard wired motor start and stop circuit (called a control circuit) a motor is started by pushing a "Start" or "Run" button that activates a pair of electrical relays. The "lock-in" relay locks in contacts that keep the control circuit energized when the push button is released. (The start button is a normally open contact and the stop button is normally closed contact.) Another relay energizes a switch that powers the device that throws the motor starter switch (three sets of contacts for three phase industrial power) in the main power circuit. Large motors use high voltage and experience high in-rush current, making speed important in making and breaking contact. This can be dangerous for personnel and property with manual switches. The "lock in" contacts in the start circuit and the main power contacts for the motor are held engaged by their respective electromagnets until a "stop" or "off" button is pressed, which de-energizes the lock in relay.[5]

Commonly interlocks are added to a control circuit. Suppose that the motor in the example is powering machinery that has a critical need for lubrication. In this case an interlock could be added to insure that the oil pump is running before the motor starts. Timers, limit switches and electric eyes are other common elements in control circuits.

Solenoid valves are widely used on compressed air or hydraulic fluid for powering actuators on mechanical components. While motors are used to supply continuous rotary motion, actuators are typically a better choice for intermittently creating a limited range of movement for a mechanical component, such as moving various mechanical arms, opening or closing valves, raising heavy press rolls, applying pressure to presses.

Computers can perform both sequential control and feedback control, and typically a single computer will do both in an industrial application. Programmable logic controllers (PLCs) are a type of special purpose microprocessor that replaced many hardware components such as timers and drum sequencers used in relay logic type systems. General purpose process control computers have increasingly replaced stand alone controllers, with a single computer able to perform the operations of hundreds of controllers. Process control computers can process data from a network of PLCs, instruments and controllers in order to implement typical (such as PID) control of many individual variables or, in some cases, to implement complex control algorithms using multiple inputs and mathematical manipulations. They can also analyze data and create real time graphical displays for operators and run reports for operators, engineers and management.

Control of an automated teller machine (ATM) is an example of an interactive process in which a computer will perform a logic derived response to a user selection based on information retrieved from a networked database. The ATM process has similarities with other online transaction processes. The different logical responses are called scenarios. Such processes are typically designed with the aid of use cases and flowcharts, which guide the writing of the software code.

The earliest feedback control mechanism was used to tent the sails of windmills. It was patented by Edmund Lee in 1745.[6]

The centrifugal governor, which dates to the last quarter of the 18th century, was used to adjust the gap between millstones.[7] The centrifugal governor was also used in the automatic flour mill developed by Oliver Evans in 1785, making it the first completely automated industrial process. The governor was adopted by James Watt for use on a steam engine in 1788 after Watts partner Boulton saw one at a flour mill Boulton & Watt were building.[6]

The governor could not actually hold a set speed; the engine would assume a new constant speed in response to load changes. The governor was able to handle smaller variations such as those caused by fluctuating heat load to the boiler. Also, there was a tendency for oscillation whenever there was a speed change. As a consequence, engines equipped with this governor were not suitable for operations requiring constant speed, such as cotton spinning.[6]

Several improvements to the governor, plus improvements to valve cut-off timing on the steam engine, made the engine suitable for most industrial uses before the end of the 19th century. Advances in the steam engine stayed well ahead of science, both thermodynamics and control theory.[6]

The governor received relatively little scientific attention until James Clerk Maxwell published a paper that established the beginning of a theoretical basis for understanding control theory. Development of the electronic amplifier during the 1920s, which was important for long distance telephony, required a higher signal to noise ratio, which was solved by negative feedback noise cancellation. This and other telephony applications contributed to control theory. Military applications during the Second World War that contributed to and benefited from control theory were fire-control systems and aircraft controls. The word "automation" itself was coined in the 1940s by General Electric.[8] The so-called classical theoretical treatment of control theory dates to the 1940s and 1950s.[3]

Relay logic was introduced with factory electrification, which underwent rapid adaption from 1900 though the 1920s. Central electric power stations were also undergoing rapid growth and operation of new high pressure boilers, steam turbines and electrical substations created a large demand for instruments and controls.

Central control rooms became common in the 1920s, but as late as the early 1930s, most process control was on-off. Operators typically monitored charts drawn by recorders that plotted data from instruments. To make corrections, operators manually opened or closed valves or turned switches on or off. Control rooms also used color coded lights to send signals to workers in the plant to manually make certain changes.[9]

Controllers, which were able to make calculated changes in response to deviations from a set point rather than on-off control, began being introduced the 1930s. Controllers allowed manufacturing to continue showing productivity gains to offset the declining influence of factory electrification.[10]

Factory productivity was greatly increased by electrification in the 1920s. Manufacturing productivity growth fell from 5.2%/yr 1919-29 to 2.76%/yr 1929-41. Field notes that spending on non-medical instruments increased significantly from 192933 and remained strong thereafter.

In 1959 Texacos Port Arthur refinery became the first chemical plant to use digital control.[11] Conversion of factories to digital control began to spread rapidly in the 1970s as the price of computer hardware fell.

The automatic telephone switchboard was introduced in 1892 along with dial telephones.[12] By 1929, 31.9% of the Bell system was automatic. Automatic telephone switching originally used vacuum tube amplifiers and electro-mechanical switches, which consumed a large amount of electricity. Call volume eventually grew so fast that it was feared the telephone system would consume all electricity production, prompting Bell Labs to begin research on the transistor.[13]

The logic performed by telephone switching relays was the inspiration for the digital computer.

The first commercially successful glass bottle blowing machine was an automatic model introduced in 1905.[14] The machine, operated by a two-man crew working 12-hour shifts, could produce 17,280 bottles in 24 hours, compared to 2,880 bottles made by a crew of six men and boys working in a shop for a day. The cost of making bottles by machine was 10 to 12 cents per gross compared to $1.80 per gross by the manual glassblowers and helpers.

Sectional electric drives were developed using control theory. Sectional electric drives are used on different sections of a machine where a precise differential must be maintained between the sections. In steel rolling, the metal elongates as it passes through pairs of rollers, which must run at successively faster speeds. In paper making the paper sheet shrinks as it passes around steam heated drying arranged in groups, which must run at successively slower speeds. The first application of a sectional electric drive was on a paper machine in 1919.[15] One of the most important developments in the steel industry during the 20th century was continuous wide strip rolling, developed by Armco in 1928.[16]

Before automation many chemicals were made in batches. In 1930, with the widespread use of instruments and the emerging use of controllers, the founder of Dow Chemical Co. was advocating continuous production.[17]

Self-acting machine tools that displaced hand dexterity so they could be operated by boys and unskilled laborers were developed by James Nasmyth in the 1840s.[18]Machine tools were automated with Numerical control (NC) using punched paper tape in the 1950s. This soon evolved into computerized numerical control (CNC).

Today extensive automation is practiced in practically every type of manufacturing and assembly process. Some of the larger processes include electrical power generation, oil refining, chemicals, steel mills, plastics, cement plants, fertilizer plants, pulp and paper mills, automobile and truck assembly, aircraft production, glass manufacturing, natural gas separation plants, food and beverage processing, canning and bottling and manufacture of various kinds of parts. Robots are especially useful in hazardous applications like automobile spray painting. Robots are also used to assemble electronic circuit boards. Automotive welding is done with robots and automatic welders are used in applications like pipelines.

The main advantages of automation are:

The following methods are often employed to improve productivity, quality, or robustness.

The main disadvantages of automation are:

In manufacturing, the purpose of automation has shifted to issues broader than productivity, cost, and time.

Lights out manufacturing is when a production system is 100% or near to 100% automated (not hiring any workers). In order to eliminate the need for labor costs all together.

Another major shift in automation is the increased demand for flexibility and convertibility in manufacturing processes. Manufacturers are increasingly demanding the ability to easily switch from manufacturing Product A to manufacturing Product B without having to completely rebuild the production lines. Flexibility and distributed processes have led to the introduction of Automated Guided Vehicles with Natural Features Navigation.

Digital electronics helped too. Former analogue-based instrumentation was replaced by digital equivalents which can be more accurate and flexible, and offer greater scope for more sophisticated configuration, parametrization and operation. This was accompanied by the fieldbus revolution which provided a networked (i.e. a single cable) means of communicating between control systems and field level instrumentation, eliminating hard-wiring.

Discrete manufacturing plants adopted these technologies fast. The more conservative process industries with their longer plant life cycles have been slower to adopt and analogue-based measurement and control still dominates. The growing use of Industrial Ethernet on the factory floor is pushing these trends still further, enabling manufacturing plants to be integrated more tightly within the enterprise, via the internet if necessary. Global competition has also increased demand for Reconfigurable Manufacturing Systems.

Engineers can now have numerical control over automated devices. The result has been a rapidly expanding range of applications and human activities. Computer-aided technologies (or CAx) now serve as the basis for mathematical and organizational tools used to create complex systems. Notable examples of CAx include Computer-aided design (CAD software) and Computer-aided manufacturing (CAM software). The improved design, analysis, and manufacture of products enabled by CAx has been beneficial for industry.[20]

Information technology, together with industrial machinery and processes, can assist in the design, implementation, and monitoring of control systems. One example of an industrial control system is a programmable logic controller (PLC). PLCs are specialized hardened computers which are frequently used to synchronize the flow of inputs from (physical) sensors and events with the flow of outputs to actuators and events.[21]

Human-machine interfaces (HMI) or computer human interfaces (CHI), formerly known as man-machine interfaces, are usually employed to communicate with PLCs and other computers. Service personnel who monitor and control through HMIs can be called by different names. In industrial process and manufacturing environments, they are called operators or something similar. In boiler houses and central utilities departments they are called stationary engineers.[22]

Different types of automation tools exist:

When it comes to Factory Automation, Host Simulation Software (HSS) is a commonly used testing tool that is used to test the equipment software. HSS is used to test equipment performance with respect to Factory Automation standards (timeouts, response time, processing time).[23]

Many roles for humans in industrial processes presently lie beyond the scope of automation. Human-level pattern recognition, language comprehension, and language production ability are well beyond the capabilities of modern mechanical and computer systems (but see Watson (computer)). Tasks requiring subjective assessment or synthesis of complex sensory data, such as scents and sounds, as well as high-level tasks such as strategic planning, currently require human expertise. In many cases, the use of humans is more cost-effective than mechanical approaches even where automation of industrial tasks is possible. Overcoming these obstacles is a theorized path to post-scarcity economics.

The Paradox of Automation says that the more efficient the automated system, the more crucial the human contribution of the operators. Humans are less involved, but their involvement becomes more critical.

If an automated system has an error, it will multiply that error until its fixed or shut down. This is where human operators come in.[24]

A fatal example of this was Air France Flight 447, where a failure of automation put the pilots into a manual situation they were not prepared for.[25]

Food and drink

The food retail industry has started to apply automation to the ordering process; McDonald's has introduced touch screen ordering and payment systems in many of its restaurants, reducing the need for as many cashier employees.[26]The University of Texas at Austin has introduced fully automated cafe retail locations.[27] Some Cafes and restaurants have utilized mobile and tablet "apps" to make the ordering process more efficient by customers ordering and paying on their device.[28][spamlink?][29] Some restaurants have automated food delivery to customers tables using a Conveyor belt system. The use of robots is sometimes employed to replace waiting staff.[30]

Stores

Many Supermarkets and even smaller stores are rapidly introducing Self checkout systems reducing the need for employing checkout workers.

Online shopping could be considered a form of automated retail as the payment and checkout are through an automated Online transaction processing system. Other forms of automation can also be an integral part of online shopping, for example the deployment of automated warehouse robotics such as that applied by Amazon using Kiva Systems.

Involves the removal of human labor from the mining process.[31] The mining industry is currently in the transition towards Automation. Currently it can still require a large amount of human capital, particularly in the third world where labor costs are low so there is less incentive for increasing efficiency through automation.

The Defense Advanced Research Projects Agency (DARPA) started the research and development of automated visual surveillance and monitoring (VSAM) program, between 1997 and 1999, and airborne video surveillance (AVS) programs, from 1998 to 2002. Currently, there is a major effort underway in the vision community to develop a fully automated tracking surveillance system. Automated video surveillance monitors people and vehicles in real time within a busy environment. Existing automated surveillance systems are based on the environment they are primarily designed to observe, i.e., indoor, outdoor or airborne, the amount of sensors that the automated system can handle and the mobility of sensor, i.e., stationary camera vs. mobile camera. The purpose of a surveillance system is to record properties and trajectories of objects in a given area, generate warnings or notify designated authority in case of occurrence of particular events.[32]

As demands for safety and mobility have grown and technological possibilities have multiplied, interest in automation has grown. Seeking to accelerate the development and introduction of fully automated vehicles and highways, the United States Congress authorized more than $650 million over six years for intelligent transport systems (ITS) and demonstration projects in the 1991 Intermodal Surface Transportation Efficiency Act (ISTEA). Congress legislated in ISTEA that "the Secretary of Transportation shall develop an automated highway and vehicle prototype from which future fully automated intelligent vehicle-highway systems can be developed. Such development shall include research in human factors to ensure the success of the man-machine relationship. The goal of this program is to have the first fully automated highway roadway or an automated test track in operation by 1997. This system shall accommodate installation of equipment in new and existing motor vehicles." [ISTEA 1991, part B, Section 6054(b)].

Full automation commonly defined as requiring no control or very limited control by the driver; such automation would be accomplished through a combination of sensor, computer, and communications systems in vehicles and along the roadway. Fully automated driving would, in theory, allow closer vehicle spacing and higher speeds, which could enhance traffic capacity in places where additional road building is physically impossible, politically unacceptable, or prohibitively expensive. Automated controls also might enhance road safety by reducing the opportunity for driver error, which causes a large share of motor vehicle crashes. Other potential benefits include improved air quality (as a result of more-efficient traffic flows), increased fuel economy, and spin-off technologies generated during research and development related to automated highway systems.[33]

Automated waste collection trucks prevent the need for as many workers as well as easing the level of labor required to provide the service.[34]

Home automation (also called domotics) designates an emerging practice of increased automation of household appliances and features in residential dwellings, particularly through electronic means that allow for things impracticable, overly expensive or simply not possible in recent past decades.

Industrial automation deals primarily with the automation of manufacturing, quality control and material handling processes. General purpose controllers for industrial processes include Programmable logic controllers, stand-alone I/O modules, and computers. Industrial automation is to replace the decision making of humans and manual command-response activities with the use of mechanized equipment and logical programming commands. One trend is increased use of Machine vision to provide automatic inspection and robot guidance functions, another is a continuing increase in the use of robots. Industrial automation is simply done at the industrial level.

Energy efficiency in industrial processes has become a higher priority. Semiconductor companies like Infineon Technologies are offering 8-bit micro-controller applications for example found in motor controls, general purpose pumps, fans, and ebikes to reduce energy consumption and thus increase efficiency.

Industrial robotics is a sub-branch in the industrial automation that aids in various manufacturing processes. Such manufacturing processes include; machining, welding, painting, assembling and material handling to name a few.[37] Industrial robots utilizes various mechanical, electrical as well as software systems to allow for high precision, accuracy and speed that far exceeds any human performance. The birth of industrial robot came shortly after World War II as United States saw the need for a quicker way to produce industrial and consumer goods.[38] Servos, digital logic and solid state electronics allowed engineers to build better and faster systems and overtime these systems were improved and revised to the point where a single robot is capable of running 24 hours a day with little or no maintenance.

Industrial automation incorporates programmable logic controllers in the manufacturing process. Programmable logic controllers (PLCs) use a processing system which allows for variation of controls of inputs and outputs using simple programming. PLCs make use of programmable memory, storing instructions and functions like logic, sequencing, timing, counting, etc. Using a logic based language, a PLC can receive a variety of inputs and return a variety of logical outputs, the input devices being sensors and output devices being motors, valves, etc. PLCs are similar to computers, however, while computers are optimized for calculations, PLCs are optimized for control task and use in industrial environments. They are built so that only basic logic-based programming knowledge is needed and to handle vibrations, high temperatures, humidity and noise. The greatest advantage PLCs offer is their flexibility. With the same basic controllers, a PLC can operate a range of different control systems. PLCs make it unnecessary to rewire a system to change the control system. This flexibility leads to a cost-effective system for complex and varied control systems.[39]

Agent-assisted automation refers to automation used by call center agents to handle customer inquiries. There are two basic types: desktop automation and automated voice solutions. Desktop automation refers to software programming that makes it easier for the call center agent to work across multiple desktop tools. The automation would take the information entered into one tool and populate it across the others so it did not have to be entered more than once, for example. Automated voice solutions allow the agents to remain on the line while disclosures and other important information is provided to customers in the form of pre-recorded audio files. Specialized applications of these automated voice solutions enable the agents to process credit cards without ever seeing or hearing the credit card numbers or CVV codes[40]

The key benefit of agent-assisted automation is compliance and error-proofing. Agents are sometimes not fully trained or they forget or ignore key steps in the process. The use of automation ensures that what is supposed to happen on the call actually does, every time.

Research by the Oxford Martin School showed that employees engaged in "tasks following well-defined procedures that can easily be performed by sophisticated algorithms" are at risk of displacement. The study, published in 2013, shows that automation can affect both skilled and unskilled work and both high and low-paying occupations; however, low-paid physical occupations are most at risk.[41] However, according to a study published in McKinsey Quarterly[42] in 2015 the impact of computerization in most cases is not replacement of employees but automation of portions of the tasks they perform.[43]

Based on a formula by Gilles Saint-Paul, an economist at Toulouse 1 University, the demand for unskilled human capital declines at a slower rate than the demand for skilled human capital increases.[44] In the long run and for society as a whole it has led to cheaper products, lower average work hours, and new industries forming (I.e, robotics industries, computer industries, design industries). These new industries provide many high salary skill based jobs to the economy.

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Automation - Wikipedia, the free encyclopedia

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Automation | The Car Company Tycoon Game

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Automation is still in development, but you can get in on Early Access now! Youll get instant access to some extra content for the current version of the game, and a copy of the full version when its completed, as well as every update along the way.

IMPORTANT NOTE: Automation is still heavily in development. There is already many hours of interesting gameplay to be had out of Automation, but some major features are not complete. Large updates are usually released every few months

Automation Early Access: Steam

Automation is sold as a Digital Download version only, and is for Windows PCs only

Click here to check the minimum specifications. Noting that if your Graphics Card doesnt support Shader Model 3.0 or above it wont run Automation (almost all modern graphic cards, but please check your graphics card manufacturers website if unsure)

Note: Intel Integrated Graphics cards (as seen on many budget laptops) are not officially supported but some of them may run Automation OK on low settings. Try the demo if unsure.

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Automation | The Car Company Tycoon Game

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Automation | Define Automation at Dictionary.com

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Historical Examples

automation at its ultimate, not even the steward department had tasks adequately to fill the hours.

He complained of segregation and unemployment, and automation in the United States.

automation or not, Leoh thought smilingly, there were certain human values that transcended mere efficiency.

automation, the second industrial revolution, has eliminated for all practical purposes the need for their labor.

Once integrated in practical experiences of a different nature, such as those of automation, they all allow for a new dynamics.

He said "No, we got automation here, we are taking too much business in so we have to let you go."

I eased through the back door, heard our automation equipment humming.

Strong emphasis was placed on the introduction of automation in both production and management processes.

British Dictionary definitions for automation Expand

the use of methods for controlling industrial processes automatically, esp by electronically controlled systems, often reducing manpower

the extent to which a process is so controlled

Word Origin and History for automation Expand

1948, in the manufacturing sense, coined by Ford Motor Co. Vice President Delmar S. Harder, from automatic + -ion. Earlier (1838) was automatism, which meant "quality of being automatic" in the classical sense.

automation in Technology Expand

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Automation | Define Automation at Dictionary.com

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Automation | Definition of automation by Merriam-Webster

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Automation Personnel Services – Temporary Staffing …

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Whether youre looking to replace one employee for a day or to hire several hundred employees indefinitely, Automation Personnel Services has a proven track record for recruiting, tracking and managing payroll for as many or as few employees as you need. We are your one source for temporary, temp-to-hire, technical services, outsourcing, direct hire, on-site management and payroll services.

From its founding in Birmingham, Alabama in 1990, Automation Personnel Services has expanded across the United States with district offices that operate in Alabama, California, Florida, Georgia, Tennessee, Mississippi, North Carolina, South Carolina, Louisiana, and Texas. Automation Personnel Services has the resources and expertise to provide cutting-edge, cost-effective workforce solutions to companies and industries of all sizes including, manufacturing, electronics, distribution, engineering and wholesale sales.

We specialize in providing light industrial employees to a variety of customers. In fact, ninety-four percent of our company-wide staffing is light industrial, so our expertise in this field far exceeds that of our competition. Our employees fill needs in plastics manufacturing, electronics manufacturing, warehousing, assembly and production lines for various products, distribution centers, and other labor-intensive manpower needs.

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The Abolition of Work–Bob Black – Primitivism

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The Abolition of Work

Bob Black

No one should ever work.

Work is the source of nearly all the misery in the world. Almost any evil you'd care to name comes from working or from living in a world designed for work. In order to stop suffering, we have to stop working.

That doesn't mean we have to stop doing things. It does mean creating a new way of life based on play; in other words, a *ludic* conviviality, commensality, and maybe even art. There is more to play than child's play, as worthy as that is. I call for a collective adventure in generalized joy and freely interdependent exuberance. Play isn't passive. Doubtless we all need a lot more time for sheer sloth and slack than we ever enjoy now, regardless of income or occupation, but once recovered from employment-induced exhaustion nearly all of us want to act. Oblomovism and Stakhanovism are two sides of the same debased coin.

The ludic life is totally incompatible with existing reality. So much the worse for "reality," the gravity hole that sucks the vitality from the little in life that still distinguishes it from mere survival. Curiously -- or maybe not -- all the old ideologies are conservative because they believe in work. Some of them, like Marxism and most brands of anarchism, believe in work all the more fiercely because they believe in so little else.

Liberals say we should end employment discrimination. I say we should end employment. Conservatives support right-to-work laws. Following Karl Marx's wayward son-in-law Paul Lafargue I support the right to be lazy. Leftists favor full employment. Like the surrealists -- except that I'm not kidding -- I favor full *un*employment. Trotskyists agitate for permanent revolution. I agitate for permanent revelry. But if all the ideologues (as they do) advocate work -- and not only because they plan to make other people do theirs -- they are strangely reluctant to say so. They will carry on endlessly about wages, hours, working conditions, exploitation, productivity, profitability. They'll gladly talk about anything but work itself. These experts who offer to do our thinking for us rarely share their conclusions about work, for all its saliency in the lives of all of us. Among themselves they quibble over the details. Unions and management agree that we ought to sell the time of our lives in exchange for survival, although they haggle over the price. Marxists think we should be bossed by bureaucrats. Libertarians think we should be bossed by businessmen. Feminists don't care which form bossing takes so long as the bosses are women. Clearly these ideology-mongers have serious differences over how to divvy up the spoils of power. Just as clearly, none of them have any objection to power as such and all of them want to keep us working.

You may be wondering if I'm joking or serious. I'm joking *and* serious. To be ludic is not to be ludicrous. Play doesn't have to be frivolous, although frivolity isn't triviality: very often we ought to take frivolity seriously. I'd like life to be a game -- but a game with high stakes. I want to play *for* *keeps*.

The alternative to work isn't just idleness. To be ludic is not to be quaaludic. As much as I treasure the pleasure of torpor, it's never more rewarding than when it punctuates other pleasures and pastimes. Nor am I promoting the managed time-disciplined safety-valve called "leisure"; far from it. Leisure is nonwork for the sake of work. Leisure is the time spent recovering from work and in the frenzied but hopeless attempt to forget about work. Many people return from vacation so beat that they look forward to returning to work so they can rest up. The main difference between work and leisure is that work at least you get paid for your alienation and enervation.

I am not playing definitional games with anybody. When I say I want to abolish work, I mean just what I say, but I want to say what I mean by defining my terms in non-idiosyncratic ways. My minimum definition of work is *forced* *labor*, that is, compulsory production. Both elements are essential. Work is production enforced by economic or political means, by the carrot or the stick. (The carrot is just the stick by other means.) But not all creation is work. Work is never done for its own sake, it's done on account of some product or output that the worker (or, more often, somebody else) gets out of it. This is what work necessarily is. To define it is to despise it. But work is usually even worse than its definition decrees. The dynamic of domination intrinsic to work tends over time toward elaboration. In advanced work-riddled societies, including all industrial societies whether capitalist of "Communist," work invariably acquires other attributes which accentuate its obnoxiousness.

Usually -- and this is even more true in "Communist" than capitalist countries, where the state is almost the only employer and everyone is an employee -- work is employment, i. e., wage-labor, which means selling yourself on the installment plan. Thus 95% of Americans who work, work for somebody (or some*thing*) else. In the USSR or Cuba or Yugoslavia or any other alternative model which might be adduced, the corresponding figure approaches 100%. Only the embattled Third World peasant bastions -- Mexico, India, Brazil, Turkey -- temporarily shelter significant concentrations of agriculturists who perpetuate the traditional arrangement of most laborers in the last several millenia, the payment of taxes (= ransom) to the state or rent to parasitic landlords in return for being otherwise left alone. Even this raw deal is beginning to look good. *All* industrial (and office) workers are employees and under the sort of surveillance which ensures servility.

But modern work has worse implications. People don't just work, they have "jobs." One person does one productive task all the time on an or-else basis. Even if the task has a quantum of intrinsic interest (as increasingly many jobs don't) the monotony of its obligatory exclusivity drains its ludic potential. A "job" that might engage the energies of some people, for a reasonably limited time, for the fun of it, is just a burden on those who have to do it for forty hours a week with no say in how it should be done, for the profit of owners who contribute nothing to the project, and with no opportunity for sharing tasks or spreading the work among those who actually have to do it. This is the real world of work: a world of bureaucratic blundering, of sexual harassment and discrimination, of bonehead bosses exploiting and scapegoating their subordinates who -- by any rational-technical criteria -- should be calling the shots. But capitalism in the real world subordinates the rational maximization of productivity and profit to the exigencies of organizational control.

The degradation which most workers experience on the job is the sum of assorted indignities which can be denominated as "discipline." Foucault has complexified this phenomenon but it is simple enough. Discipline consists of the totality of totalitarian controls at the workplace -- surveillance, rotework, imposed work tempos, production quotas, punching -in and -out, etc. Discipline is what the factory and the office and the store share with the prison and the school and the mental hospital. It is something historically original and horrible. It was beyond the capacities of such demonic dictators of yore as Nero and Genghis Khan and Ivan the Terrible. For all their bad intentions they just didn't have the machinery to control their subjects as thoroughly as modern despots do. Discipline is the distinctively diabolical modern mode of control, it is an innovative intrusion which must be interdicted at the earliest opportunity.

Such is "work." Play is just the opposite. Play is always voluntary. What might otherwise be play is work if it's forced. This is axiomatic. Bernie de Koven has defined play as the "suspension of consequences." This is unacceptable if it implies that play is inconsequential. The point is not that play is without consequences. This is to demean play. The point is that the consequences, if any, are gratuitous. Playing and giving are closely related, they are the behavioral and transactional facets of the same impulse, the play-instinct. They share an aristocratic disdain for results. The player gets something out of playing; that's why he plays. But the core reward is the experience of the activity itself (whatever it is). Some otherwise attentive students of play, like Johan Huizinga (*Homo* *Ludens*), *define* it as game-playing or following rules. I respect Huizinga's erudition but emphatically reject his constraints. There are many good games (chess, baseball, Monopoly, bridge) which are rule-governed but there is much more to play than game-playing. Conversation, sex, dancing, travel -- these practices aren't rule-governed but they are surely play if anything is. And rules can be *played* *with* at least as readily as anything else.

Work makes a mockery of freedom. The official line is that we all have rights and live in a democracy. Other unfortunates who aren't free like we are have to live in police states. These victims obey orders or-else, no matter how arbitrary. The authorities keep them under regular surveillance. State bureaucrats control even the smaller details of everyday life. The officials who push them around are answerable only to higher-ups, public or private. Either way, dissent and disobedience are punished. Informers report regularly to the authorities. All this is supposed to be a very bad thing.

And so it is, although it is nothing but a description of the modern workplace. The liberals and conservatives and libertarians who lament totalitarianism are phonies and hypocrites. There is more freedom in any moderately deStalinized dictatorship than there is in the ordinary American workplace. You find the same sort of hierarchy and discipline in an office or factory as you do in a prison or monastery. In fact, as Foucault and others have shown, prisons and factories came in at about the same time, and their operators consciously borrowed from each other's control techniques. A worker is a par-time slave. The boss says when to show up, when to leave, and what to do in the meantime. He tells you how much work to do and how fast. He is free to carry his control to humiliating extremes, regulating, if he feels like it, the clothes you wear or how often you go to the bathroom. With a few exceptions he can fire you for any reason, or no reason. He has you spied on by snitches and supervisors, he amasses a dossier on every employee. Talking back is called "insubordination," just as if a worker is a naughty child, and it not only gets you fired, it disqualifies you for unemployment compensation. Without necessarily endorsing it for them either, it is noteworthy that children at home and in school receive much the same treatment, justified in their case by their supposed immaturity. What does this say about their parents and teachers who work?

The demeaning system of domination I've described rules over half the waking hours of a majority of women and the vast majority of men for decades, for most of their lifespans. For certain purposes it's not too misleading to call our system democracy or capitalism or -- better still -- industrialism, but its real names are factory fascism and office oligarchy. Anybody who says these people are "free" is lying or stupid. You are what you do. If you do boring, stupid monotonous work, chances are you'll end up boring, stupid and monotonous. Work is a much better explanation for the creeping cretinization all around us than even such significant moronizing mechanisms as television and education. People who are regimented all their lives, handed off to work from school and bracketed by the family in the beginning and the nursing home at the end, are habituated to heirarchy and psychologically enslaved. Their aptitude for autonomy is so atrophied that their fear of freedom is among their few rationally grounded phobias. Their obedience training at work carries over into the families *they* start, thus reproducing the system in more ways than one, and into politics, culture and everything else. Once you drain the vitality from people at work, they'll likely submit to heirarchy and expertise in everything. They're used to it.

We are so close to the world of work that we can't see what it does to us. We have to rely on outside observers from other times or other cultures to appreciate the extremity and the pathology of our present position. There was a time in our own past when the "work ethic" would have been incomprehensible, and perhaps Weber was on to something when he tied its appearance to a religion, Calvinism, which if it emerged today instead of four centuries ago would immediately and appropriately be labeled a cult. Be that as it may, we have only to draw upon the wisdom of antiquity to put work in perspective. The ancients saw work for what it is, and their view prevailed, the Calvinist cranks notwithstanding, until overthrown by industrialism -- but not before receiving the endorsement of its prophets.

Let's pretend for a moment that work doesn't turn people into stultified submissives. Let's pretend, in defiance of any plausible psychology and the ideology of its boosters, that it has no effect on the formation of character. And let's pretend that work isn't as boring and tiring and humiliating as we all know it really is. Even then, work would *still* make a mockery of all humanistic and democratic aspirations, just because it usurps so much of our time. Socrates said that manual laborers make bad friends and bad citizens because they have no time to fulfill the responsibilities of friendship and citizenship. He was right. Because of work, no matter what we do we keep looking at out watches. The only thing "free" about so-called free time is that it doesn't cost the boss anything. Free time is mostly devoted to getting ready for work, going to work, returning from work, and recovering from work. Free time is a euphemism for the peculiar way labor as a factor of production not only transports itself at its own expense to and from the workplace but assumes primary responsibility for its own maintenance and repair. Coal and steel don't do that. Lathes and typewriters don't do that. But workers do. No wonder Edward G. Robinson in one of his gangster movies exclaimed, "Work is for saps!"

Both Plato and Xenophon attribute to Socrates and obviously share with him an awareness of the destructive effects of work on the worker as a citizen and a human being. Herodotus identified contempt for work as an attribute of the classical Greeks at the zenith of their culture. To take only one Roman example, Cicero said that "whoever gives his labor for money sells himself and puts himself in the rank of slaves." His candor is now rare, but contemporary primitive societies which we are wont to look down upon have provided spokesmen who have enlightened Western anthropologists. The Kapauku of West Irian, according to Posposil, have a conception of balance in life and accordingly work only every other day, the day of rest designed "to regain the lost power and health." Our ancestors, even as late as the eighteenth century when they were far along the path to our present predicament, at least were aware of what we have forgotten, the underside of industrialization. Their religious devotion to "St. Monday" -- thus establishing a *de* *facto* five-day week 150-200 years before its legal consecration -- was the despair of the earliest factory owners. They took a long time in submitting to the tyranny of the bell, predecessor of the time clock. In fact it was necessary for a generation or two to replace adult males with women accustomed to obedience and children who could be molded to fit industrial needs. Even the exploited peasants of the *ancien* *regime* wrested substantial time back from their landlord's work. According to Lafargue, a fourth of the French peasants' calendar was devoted to Sundays and holidays, and Chayanov's figures from villages in Czarist Russia -- hardly a progressive society -- likewise show a fourth or fifth of peasants' days devoted to repose. Controlling for productivity, we are obviously far behind these backward societies. The exploited *muzhiks* would wonder why any of us are working at all. So should we.

To grasp the full enormity of our deterioration, however, consider the earliest condition of humanity, without government or property, when we wandered as hunter-gatherers. Hobbes surmised that life was then nasty, brutish and short. Others assume that life was a desperate unremitting struggle for subsistence, a war waged against a harsh Nature with death and disaster awaiting the unlucky or anyone who was unequal to the challenge of the struggle for existence. Actually, that was all a projection of fears for the collapse of government authority over communities unaccustomed to doing without it, like the England of Hobbes during the Civil War. Hobbes' compatriots had already encountered alternative forms of society which illustrated other ways of life -- in North America, particularly -- but already these were too remote from their experience to be understandable. (The lower orders, closer to the condition of the Indians, understood it better and often found it attractive. Throughout the seventeenth century, English settlers defected to Indian tribes or, captured in war, refused to return. But the Indians no more defected to white settlements than Germans climb the Berlin Wall from the west.) The "survival of the fittest" version -- the Thomas Huxley version -- of Darwinism was a better account of economic conditions in Victorian England than it was of natural selection, as the anarchist Kropotkin showed in his book *Mutual* *Aid,* *A* *Factor* *of* *Evolution*. (Kropotkin was a scientist -- a geographer -- who'd had ample involuntary opportunity for fieldwork whilst exiled in Siberia: he knew what he was talking about.) Like most social and political theory, the story Hobbes and his successors told was really unacknowledged autobiography.

The anthropologist Marshall Sahlins, surveying the data on contemporary hunter-gatherers, exploded the Hobbesian myth in an article entitled "The Original Affluent Society." They work a lot less than we do, and their work is hard to distinguish from what we regard as play. Sahlins concluded that "hunters and gatherers work less than we do; and rather than a continuous travail, the food quest is intermittent, leisure abundant, and there is a greater amount of sleep in the daytime per capita per year than in any other condition of society." They worked an average of four hours a day, assuming they were "working" at all. Their "labor," as it appears to us, was skilled labor which exercised their physical and intellectual capacities; unskilled labor on any large scale, as Sahlins says, is impossible except under industrialism. Thus it satisfied Friedrich Schiller's definition of play, the only occasion on which man realizes his complete humanity by giving full "play" to both sides of his twofold nature, thinking and feeling. As he put it: "The animal *works* when deprivation is the mainspring of its activity, and it *plays* when the fullness of its strength is this mainspring, when superabundant life is its own stimulus to activity." (A modern version -- dubiously developmental -- is Abraham Maslow's counterposition of "deficiency" and "growth" motivation.) Play and freedom are, as regards production, coextensive. Even Marx, who belongs (for all his good intentions) in the productivist pantheon, observed that "the realm of freedom does not commence until the point is passed where labor under the compulsion of necessity and external utility is required." He never could quite bring himself to identify this happy circumstance as what it is, the abolition of work -- it's rather anomalous, after all, to be pro-worker and anti-work -- but we can.

The aspiration to go backwards or forwards to a life without work is evident in every serious social or cultural history of pre-industrial Europe, among them M. Dorothy George's *England* In* *Transition* and Peter Burke's *Popular* *Culture* *in* *Early* *Modern* *Europe*. Also pertinent is Daniel Bell's essay, "Work and its Discontents," the first text, I believe, to refer to the "revolt against work" in so many words and, had it been understood, an important correction to the complacency ordinarily associated with the volume in which it was collected, *The* *End* *of* *Ideology*. Neither critics nor celebrants have noticed that Bell's end-of-ideology thesis signaled not the end of social unrest but the beginning of a new, uncharted phase unconstrained and uninformed by ideology. It was Seymour Lipset (in *Political* *Man*), not Bell, who announced at the same time that "the fundamental problems of the Industrial Revolution have been solved," only a few years before the post- or meta-industrial discontents of college students drove Lipset from UC Berkeley to the relative (and temporary) tranquility of Harvard.

As Bell notes, Adam Smith in *The* *Wealth* *of* *Nations*, for all his enthusiasm for the market and the division of labor, was more alert to (and more honest about) the seamy side of work than Ayn Rand or the Chicago economists or any of Smith's modern epigones. As Smith observed: "The understandings of the greater part of men are necessarily formed by their ordinary employments. The man whose life is spent in performing a few simple operations... has no occasion to exert his understanding... He generally becomes as stupid and ignorant as it is possible for a human creature to become." Here, in a few blunt words, is my critique of work. Bell, writing in 1956, the Golden Age of Eisenhower imbecility and American self-satisfaction, identified the unorganized, unorganizable malaise of the 1970's and since, the one no political tendency is able to harness, the one identified in HEW's report *Work* *in* *America*, the one which cannot be exploited and so is ignored. That problem is the revolt against work. It does not figure in any text by any laissez-faire economist -- Milton Friedman, Murray Rothbard, Richard Posner -- because, in their terms, as they used to say on *Star* *Trek*, "it does not compute."

If these objections, informed by the love of liberty, fail to persuade humanists of a utilitarian or even paternalist turn, there are others which they cannot disregard. Work is hazardous to your health, to borrow a book title. In fact, work is mass murder or genocide. Directly or indirectly, work will kill most of the people who read these words. Between 14,000 and 25,000 workers are killed annually in this country on the job. Over two million are disabled. Twenty to twenty-five million are injured every year. And these figures are based on a very conservative estimation of what constitutes a work-related injury. Thus they don't count the half million cases of occupational disease every year. I looked at one medical textbook on occupational diseases which was 1,200 pages long. Even this barely scratches the surface. The available statistics count the obvious cases like the 100,000 miners who have black lung disease, of whom 4,000 die every year, a much higher fatality rate than for AIDS, for instance, which gets so much media attention. This reflects the unvoiced assumption that AIDS afflicts perverts who could control their depravity whereas coal-mining is a sacrosanct activity beyond question. What the statistics don't show is that tens of millions of people have heir lifespans shortened by work -- which is all that homicide means, after all. Consider the doctors who work themselves to death in their 50's. Consider all the other workaholics.

Even if you aren't killed or crippled while actually working, you very well might be while going to work, coming from work, looking for work, or trying to forget about work. The vast majority of victims of the automobile are either doing one of these work-obligatory activities or else fall afoul of those who do them. To this augmented body-count must be added the victims of auto-industrial pollution and work-induced alcoholism and drug addiction. Both cancer and heart disease are modern afflictions normally traceable, directly, or indirectly, to work.

Work, then, institutionalizes homicide as a way of life. People think the Cambodians were crazy for exterminating themselves, but are we any different? The Pol Pot regime at least had a vision, however blurred, of an egalitarian society. We kill people in the six-figure range (at least) in order to sell Big Macs and Cadillacs to the survivors. Our forty or fifty thousand annual highway fatalities are victims, not martyrs. They died for nothing -- or rather, they died for work. But work is nothing to die for.

Bad news for liberals: regulatory tinkering is useless in this life-and-death context. The federal Occupational Safety and Health Administration was designed to police the core part of the problem, workplace safety. Even before Reagan and the Supreme Court stifled it, OSHA was a farce. At previous and (by current standards) generous Carter-era funding levels, a workplace could expect a random visit from an OSHA inspector once every 46 years.

State control of the economy is no solution. Work is, if anything, more dangerous in the state-socialist countries than it is here. Thousands of Russian workers were killed or injured building the Moscow subway. Stories reverberate about covered-up Soviet nuclear disasters which make Times Beach and Three-Mile Island look like elementary-school air-raid drills. On the other hand, deregulation, currently fashionable, won't help and will probably hurt. From a health and safety standpoint, among others, work was at its worst in the days when the economy most closely approximated laissez-faire.

Historians like Eugene Genovese have argued persuasively that -- as antebellum slavery apologists insisted -- factory wage-workers in the Northern American states and in Europe were worse off than Southern plantation slaves. No rearrangement of relations among bureaucrats and businessmen seems to make much difference at the point of production. Serious enforcement of even the rather vague standards enforceable in theory by OSHA would probably bring the economy to a standstill. The enforcers apparently appreciate this, since they don't even try to crack down on most malefactors.

What I've said so far ought not to be controversial. Many workers are fed up with work. There are high and rising rates of absenteeism, turnover, employee theft and sabotage, wildcat strikes, and overall goldbricking on the job. There may be some movement toward a conscious and not just visceral rejection of work. And yet the prevalent feeling, universal among bosses and their agents and also widespread among workers themselves is that work itself is inevitable and necessary.

I disagree. It is now possible to abolish work and replace it, insofar as it serves useful purposes, with a multitude of new kinds of free activities. To abolish work requires going at it from two directions, quantitative and qualitative. On the one hand, on the quantitative side, we have to cut down massively on the amount of work being done. At present most work is useless or worse and we should simply get rid of it. On the other hand -- and I think this the crux of the matter and the revolutionary new departure -- we have to take what useful work remains and transform it into a pleasing variety of game-like and craft-like pastimes, indistinguishable from other pleasurable pastimes, except that they happen to yield useful end-products. Surely that shouldn't make them *less* enticing to do. Then all the artificial barriers of power and property could come down. Creation could become recreation. And we could all stop being afraid of each other.

I don't suggest that most work is salvageable in this way. But then most work isn't worth trying to save. Only a small and diminishing fraction of work serves any useful purpose independent of the defense and reproduction of the work-system and its political and legal appendages. Twenty years ago, Paul and Percival Goodman estimated that just five percent of the work then being done -- presumably the figure, if accurate, is lower now -- would satisfy our minimal needs for food, clothing, and shelter. Theirs was only an educated guess but the main point is quite clear: directly or indirectly, most work serves the unproductive purposes of commerce or social control. Right off the bat we can liberate tens of millions of salesmen, soldiers, managers, cops, stockbrokers, clergymen, bankers, lawyers, teachers, landlords, security guards, ad-men and everyone who works for them. There is a snowball effect since every time you idle some bigshot you liberate his flunkeys and underlings also. Thus the economy *implodes*.

Forty percent of the workforce are white-collar workers, most of whom have some of the most tedious and idiotic jobs ever concocted. Entire industries, insurance and banking and real estate for instance, consist of nothing but useless paper-shuffling. It is no accident that the "tertiary sector," the service sector, is growing while the "secondary sector" (industry) stagnates and the "primary sector" (agriculture) nearly disappears. Because work is unnecessary except to those whose power it secures, workers are shifted from relatively useful to relatively useless occupations as a measure to assure public order. Anything is better than nothing. That's why you can't go home just because you finish early. They want your *time*, enough of it to make you theirs, even if they have no use for most of it. Otherwise why hasn't the average work week gone down by more than a few minutes in the past fifty years?

Next we can take a meat-cleaver to production work itself. No more war production, nuclear power, junk food, feminine hygiene deodorant -- and above all, no more auto industry to speak of. An occasional Stanley Steamer or Model-T might be all right, but the auto-eroticism on which such pestholes as Detroit and Los Angeles depend on is out of the question. Already, without even trying, we've virtually solved the energy crisis, the environmental crisis and assorted other insoluble social problems.

Finally, we must do away with far and away the largest occupation, the one with the longest hours, the lowest pay and some of the most tedious tasks around. I refer to *housewives* doing housework and child-rearing. By abolishing wage-labor and achieving full unemployment we undermine the sexual division of labor. The nuclear family as we know it is an inevitable adaptation to the division of labor imposed by modern wage-work. Like it or not, as things have been for the last century or two it is economically rational for the man to bring home the bacon, for the woman to do the shitwork to provide him with a haven in a heartless world, and for the children to be marched off to youth concentration camps called "schools," primarily to keep them out of Mom's hair but still under control, but incidentally to acquire the habits of obedience and punctuality so necessary for workers. If you would be rid of patriarchy, get rid of the nuclear family whose unpaid "shadow work," as Ivan Illich says, makes possible the work-system that makes *it* necessary. Bound up with this no-nukes strategy is the abolition of childhood and the closing of the schools. There are more full-time students than full-time workers in this country. We need children as teachers, not students. They have a lot to contribute to the ludic revolution because they're better at playing than grown-ups are. Adults and children are not identical but they will become equal through interdependence. Only play can bridge the generation gap.

I haven't as yet even mentioned the possibility of cutting way down on the little work that remains by automating and cybernizing it. All the scientists and engineers and technicians freed from bothering with war research and planned obsolescence would have a good time devising means to eliminate fatigue and tedium and danger from activities like mining. Undoubtedly they'll find other projects to amuse themselves with. Perhaps they'll set up world-wide all-inclusive multi-media communications systems or found space colonies. Perhaps. I myself am no gadget freak. I wouldn't care to live in a pushbutton paradise. I don't what robot slaves to do everything; I want to do things myself. There is, I think, a place for labor-saving technology, but a modest place. The historical and pre-historical record is not encouraging. When productive technology went from hunting-gathering to agriculture and on to industry, work increased while skills and self-determination diminished. The further evolution of industrialism has accentuated what Harry Braverman called the degradation of work. Intelligent observers have always been aware of this. John Stuart Mill wrote that all the labor-saving inventions ever devised haven't saved a moment's labor. Karl Marx wrote that "it would be possible to write a history of the inventions, made since 1830, for the sole purpose of supplying capital with weapons against the revolts of the working class." The enthusiastic technophiles -- Saint-Simon, Comte, Lenin, B. F. Skinner -- have always been unabashed authoritarians also; which is to say, technocrats. We should be more than sceptical about the promises of the computer mystics. *They* work like dogs; chances are, if they have their way, so will the rest of us. But if they have any particularized contributions more readily subordinated to human purposes than the run of high tech, let's give them a hearing.

What I really want to see is work turned into play. A first step is to discard the notions of a "job" and an "occupation." Even activities that already have some ludic content lose most of it by being reduced to jobs which certain people, and only those people are forced to do to the exclusion of all else. Is it not odd that farm workers toil painfully in the fields while their air-conditioned masters go home every weekend and putter about in their gardens? Under a system of permanent revelry, we will witness the Golden Age of the dilettante which will put the Renaissance to shame. There won't be any more jobs, just things to do and people to do them.

The secret of turning work into play, as Charles Fourier demonstrated, is to arrange useful activities to take advantage of whatever it is that various people at various times in fact enjoy doing. To make it possible for some people to do the things they could enjoy it will be enough just to eradicate the irrationalities and distortions which afflict these activities when they are reduced to work. I, for instance, would enjoy doing some (not too much) teaching, but I don't want coerced students and I don't care to suck up to pathetic pedants for tenure.

Second, there are some things that people like to do from time to time, but not for too long, and certainly not all the time. You might enjoy baby-sitting for a few hours in order to share the company of kids, but not as much as their parents do. The parents meanwhile, profoundly appreciate the time to themselves that you free up for them, although they'd get fretful if parted from their progeny for too long. These differences among individuals are what make a life of free play possible. The same principle applies to many other areas of activity, especially the primal ones. Thus many people enjoy cooking when they can practice it seriously at their leisure, but not when they're just fueling up human bodies for work.

Third -- other things being equal -- some things that are unsatisfying if done by yourself or in unpleasant surroundings or at the orders of an overlord are enjoyable, at least for a while, if these circumstances are changed. This is probably true, to some extent, of all work. People deploy their otherwise wasted ingenuity to make a game of the least inviting drudge-jobs as best they can. Activities that appeal to some people don't always appeal to all others, but everyone at least potentially has a variety of interests and an interest in variety. As the saying goes, "anything once." Fourier was the master at speculating how aberrant and perverse penchants could be put to use in post-civilized society, what he called Harmony. He thought the Emperor Nero would have turned out all right if as a child he could have indulged his taste for bloodshed by working in a slaughterhouse. Small children who notoriously relish wallowing in filth could be organized in "Little Hordes" to clean toilets and empty the garbage, with medals awarded to the outstanding. I am not arguing for these precise examples but for the underlying principle, which I think makes perfect sense as one dimension of an overall revolutionary transformation. Bear in mind that we don't have to take today's work just as we find it and match it up with the proper people, some of whom would have to be perverse indeed. If technology has a role in all this it is less to automate work out of existence than to open up new realms for re/creation. To some extent we may want to return to handicrafts, which William Morris considered a probable and desirable upshot of communist revolution. Art would be taken back from the snobs and collectors, abolished as a specialized department catering to an elite audience, and its qualities of beauty and creation restored to integral life from which they were stolen by work. It's a sobering thought that the grecian urns we write odes about and showcase in museums were used in their own time to store olive oil. I doubt our everyday artifacts will fare as well in the future, if there is one. The point is that there's no such thing as progress in the world of work; if anything it's just the opposite. We shouldn't hesitate to pilfer the past for what it has to offer, the ancients lose nothing yet we are enriched.

The reinvention of daily life means marching off the edge of our maps. There is, it is true, more suggestive speculation than most people suspect. Besides Fourier and Morris -- and even a hint, here and there, in Marx -- there are the writings of Kropotkin, the syndicalists Pataud and Pouget, anarcho-communists old (Berkman) and new (Bookchin). The Goodman brothers' *Communitas* is exemplary for illustrating what forms follow from given functions (purposes), and there is something to be gleaned from the often hazy heralds of alternative/appropriate/intermediate/convivial technology, like Schumacher and especially Illich, once you disconnect their fog machines. The situationists -- as represented by Vaneigem's *Revolution* *of* *Daily* *Life* and in the *Situationist* *International* *Anthology* -- are so ruthlessly lucid as to be exhilarating, even if they never did quite square the endorsement of the rule of the worker's councils with the abolition of work. Better their incongruity, though than any extant version of leftism, whose devotees look to be the last champions of work, for if there were no work there would be no workers, and without workers, who would the left have to organize?

So the abolitionists would be largely on their own. No one can say what would result from unleashing the creative power stultified by work. Anything can happen. The tiresome debater's problem of freedom vs. necessity, with its theological overtones, resolves itself practically once the production of use-values is coextensive with the consumption of delightful play-activity.

Life will become a game, or rather many games, but not -- as it is now - -- a zero/sum game. An optimal sexual encounter is the paradigm of productive play, The participants potentiate each other's pleasures, nobody keeps score, and everybody wins. The more you give, the more you get. In the ludic life, the best of sex will diffuse into the better part of daily life. Generalized play leads to the libidinization of life. Sex, in turn, can become less urgent and desperate, more playful. If we play our cards right, we can all get more out of life than we put into it; but only if we play for keeps.

No one should ever work. Workers of the world... *relax*!

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The Abolition of Work--Bob Black - Primitivism

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Empowering Women – Self Empowerment, Personal & Spiritual …

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Empowering Women aims to inspire women with the courage to break free from the chains of limiting belief patterns and societal or religious conditioning that have tradiitonally kept women suppressed and unable to see their true beauty and power.

This section offers self help tools, information, encouragement and inspirational quotes and sayings for and by women to use as a guide on the journey of Reclaiming Their Power. Women are encouraged to see and bring forth the beauty and strength within themselves, to be inspired to be the best they can be, and to let their Spirit (Goddess Selves) shine through.

For those of you who are in challenging circumstances, the words here-in can help you find some peace and some strength to begin to turn your life around. The Change Starts With You. You only need to take small steps at a time. And remember that you are not alone.

If you have come to this section of the site first, please take some time to browse through the rest of the site, where you will find many more inspirations to help you on your journey of spiritual growth.

May you gain inspiration and helpful tools to guide you on your journey towards wholeness. Embrace and enjoy the journey!

This section extensively uses a font called Papyrus. For greater viewing pleasure, download the font here

"Our deepest fear is not that we are inadequate. Our deepest fear is that we are powerful beyond measure. It is our light, not our darkness, that most frightens us.

We ask ourselves, who am I to be brilliant, gorgeous, talented, fabulous? Actually, who are you not to be?

You are a child of God. Your playing small does not serve the world. There is nothing enlightened about shrinking so that other people won't feel insecure around you.

We are all meant to shine, as children do. We were born to make manifest the glory of God that is within us. It's not just in some of us; it is in everyone.

And as we let our own light shine, we unconsciously give other people permission to do the same. As we are liberated from our own fear, our presence automatically liberates others."

~ Marianne Williamson - from "A Return To Love" ~

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Empowering Women - Self Empowerment, Personal & Spiritual ...

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Technology | Definition of Technology by Merriam-Webster

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One by one, the pieces take flight: a parachute, the stowed Martian balloona Montgolfiere hot-air type, named for the French brothers who pioneered the technology in 1782and a sensor package with guidance system, radio transmitter, and video camera. Joe Pappalardo, Air & Space, June/July 2006

There's no question the industry has been subjected to a great deal of competitive pressure over the past decade or so, with promises of more to come as the Internet and wireless technology transform the way Americans receive news and information. Wall Street Journal, 14 Mar. 2006

The rapid shift in technology over the last 10 years has created an entirely new world in which viruses can replicate. While in 1989, viruses were primarily spread by sneakernet, as users walked diskettes from machine to machine, modern viruses are capable of spreading around the world in the blink of a digital eye. Sarah Gordon, Information Security, November 1999

all technology and energy revving up for the greatest clash of arms in history. William Styron, This Quiet Dust And Other Writings, (1953) 1982

Recent advances in medical technology have saved countless lives.

The company is on the cutting edge of technology.

The government is developing innovative technologies to improve the safety of its soldiers.

How can we apply this new technology to our everyday lives?

The car has the latest in fuel-saving technology.

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Technology | Definition of Technology by Merriam-Webster

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Technology | Define Technology at Dictionary.com

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Contemporary Examples

And it finishes second, behind New York, for technology Innovation.

But Shawn and Craig, 47, are accused of being interested in technology as well.

Her reveals the sometimes blind, unsettling way love and technology merge.

Yet equal access to education and technology still remains a challenge.

The second feature is how to translate the technology efficiently: how to harness the power of this device for practical use.

British Dictionary definitions for technology Expand

the application of practical sciences to industry or commerce

the methods, theory, and practices governing such application: a highly developed technology

the total knowledge and skills available to any human society for industry, art, science, etc

Derived Forms

technological (tknldkl) adjectivetechnologically, adverbtechnologist, noun

Word Origin

C17: from Greek tekhnologia systematic treatment, from tekhn art, skill

Word Origin and History for technology Expand

1610s, "discourse or treatise on an art or the arts," from Greek tekhnologia "systematic treatment of an art, craft, or technique," originally referring to grammar, from tekhno- (see techno-) + -logy. The meaning "science of the mechanical and industrial arts" is first recorded 1859. High technology attested from 1964; short form high-tech is from 1972.

technology in Science Expand

The use of scientific knowledge to solve practical problems, especially in industry and commerce.

The specific methods, materials, and devices used to solve practical problems.

technology in Technology Expand

jargon Marketroid jargon for "software", "hardware", "protocol" or something else too technical to name. The most flagrant abuse of this word has to be "Windows NT" (New Technology) - Microsoft's attempt to make the incorporation of some ancient concepts into their OS sound like real progress. The irony, and even the meaning, of this seems to be utterly lost on Microsoft whose Windows 2000 start-up screen proclaims "Based on NT Technology", (meaning yet another version of NT, including some Windows 95 features at last). See also: solution. (2001-06-28)

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Technology | Define Technology at Dictionary.com

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Progress Lighting – Home

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Select Category... Accessories Chandeliers Bath & Vanity Bath Fans Ceiling Fans Close-to-Ceiling Commercial Outdoor Directionals Exit Signs Flex Track System Hall & Foyer Landscape Modular Fluorescent Outdoor Pendants Recessed-Accessory Recessed-Housing Recessed-Trim Sconces Step Lights Track Undercabinet Wall Bracket

Select Style... Contemporary/Modern Contemporary/Soft Traditional/Casual Traditional/Classic Traditional/Formal Utilitarian/Commodity Utility/Landscape

Select Family ... 4 inch Pro-Optic LED Housing 6 inch Pro-Optic Fluorescent Housing 6 inch Pro-Optic LED Housing 8 inch Pro-Optic Fluorescent Housing 8 inch Pro-Optic LED Housing Academy Acrylic Globe Acrylic Round Acrylic Square Addison Address Light Adjustable Adjustable Bar Hangers Adorn AirPro AirPro Hugger Airtight Gasket Kit Alabaster Alabaster Glass Albalite Glass Trim Alexa Alpha Trak Kits Aluminum Cylinder Accessories Aluminum Squares Accessories Americana Andover Anson Appeal Applause Arch Archie Archives Arise Arrive Arts and Crafts Ashbury Ashmore Avalon Baffle Trim Balance Bath Fans Bay Court Bay Court Outdoor Bedford Beveled Glass Beyond Bingo Bliss Bollard Bound Beveled Glass Bounty BrassGUARD Lantern Bravo Broadway Brookside Builder Bath Cadence Cantata Caress Cast Aluminum Cast Lantern Ceiling Gasket Ceiling Mount Chain Chanelle Channel Glass Chloe Clayton Clich Clips for Complete Fixtures Close-to-Ceiling Club Compact Fluorescent Acrylic Wall Sconce Compact Fluorescent Glass Wall Sconce Compass Compel Complete Round Housing & Trim Complete Square Housing & Trim Cone Trim Copper CounterBrite Coventry Cranbrook Crawford Crestwood Cross Louver Trim Cuddle Cylinder Dazzle Deck Lighting Decorative Glass Deep Cone Trim Derby Dibs Outdoor Directional Dome Dome Shower Trim Door Chimes Draper Drop Opal Shower Trim Eclipse Economy Fluted Glass Edition Elina Emergency Battery Pack Enchant Endorse Energy Efficient Glass Sconces Engage Entice Equinox Essential Etched Glass Exit Signs Eyeball Trim Fairfield Fairview Fan Control Fan Downrod Fiorentino Fitter Five Light Flair Flat Glass Flat Glass Lantern Flatback Flood Light Flourish Fluorescent Format Fortune Free Form Fresnel Lens Furring Channel Gather Gimbal Glass Globes Glass Pendants Glendale Glenmont Goof Ring Greetings Greyson Hard-Nox Harmony Haven Heart Helium Helm Hide-a-Lite Hide-a-Lite 4 Hide-a-Lite II Hide-a-Lite III High Tech Home Theater Sconce IC Box Identity Illuma-Flex Incandescent Acrylic Wall Sconces Incandescent Glass Wall Sconces Indulge Inspire Invite Jack Janos Joy Kensington Kiss Lahara Lamps Landscape Accessory Le Jardin LED Deck Light LED Landscape LED Path Light LED Pro-Optic LED Recessed LED Spot Light LED Step Lights LED Track LED Undercabinet LED Well Light Legend Linear Linear Fluorescent Linear Fluorescent Bath Long Neck Baffle Trim Loop & Chain Loyal Lucky Lynzie Mac Madison Maier Mansard Markor Meadowlark Melbourne Melon Melon Glass Merge Meridian Merit Metal Shade Millford Mingle Miniature Halogen Mission Modular Fluorescent Motion Sensor Mounting Clips MR-16 line voltage Newport Nightsaver Niss Noir Non-Metallic Non-Metallic Incandescent North Park Nottington Oasis Onion Lantern Opal Glass Opal Globes Open Shower Trim Open Splay Trim Open Trim Orbitz Outdoor Posts Pagoda Par Lampholder Parker Pavilion Pedigree Peek-A-Boo Penfield Penn Piedmont Pinhole Trim Polycarbonate Outdoor Prairie Prestwick Prismatic Glass Promenade Random Rave Recessed Recessed Accessory Regatta Regressed Prismatic Trim Reign Remodel Clips Renovations Replay Residence Resort Revive Ribbed Linear Bath Ridge Riverside Rizu Roman Coach Round Clouds Round Glass Roundback Roxbury Salute Santiago Savannah School House Pendant Schoolhouse Sconce Scope Seeded Glass Semi-flush Shade Shallow Profile Shelton Shower Trim Sloped Ceiling Trim Slotted Trim Socket Tool Spirit Spot Light Spread Square Square Glass Squares Status Stem Kit Step Baffle Trim Step Lights Stroll Swing Swirled Glass Sync The Pointe Tiffany Torino Track Accessories Transformer Transformer Accessories Transit Trevina Trinity Undercabinet Accessory Universal Utility Lantern Valera Via Victorian Wall Pack Wall Pocket Wall Washer Trim Welbourne Well Lights Westport White Glass Wisten

Select Finish... Aged Copper Antique Brass Antique Bronze Antique Nickel Architectural Bronze Autumn Haze Beige Beige Linen Beige Silk Black Black Alzak Black Chiffon Black Parchment Black/Silver Blue-green Bright White Brushed Nickel Burnished Chestnut Burnished Silver Cherry Classic Silver Clear Clear Alzak Cognac Copper Copper Bronze Creme Creme Chiffon Dark Green Espresso Faux Alabaster Fieldstone Forged Black Forged Bronze Frosted Gilded Iron Gold Alzak Green Heirloom Kraft Metallic Gray Metallic Grey Natural Brass Natural Decking No Finish Off White Oil Rubbed Bronze Pebbles Polished Brass Polished Chrome Polished Nickel Red Roasted Java Satin Aluminum Seabrook Silver Ridge Solid Copper Stainless Steel Textured Black Textured Graphite Textured White Unfinished Urban Bronze Venetian Bronze Verde Verde Green Weathered Bronze White White Floral Pattern

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Progress Lighting - Home

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