Incredible Growth of On-line Total Organic Carbon (TOC) Analyzer Market 2020 Growing with Major Eminent Key Player LAR Process Analyzers, Zhejiang…

Latest Research Report: On-line Total Organic Carbon (TOC) Analyzer industry

On-line Total Organic Carbon (TOC) Analyzer Market report is to provide accurate and strategic analysis of the Profile Projectors industry. The report closely examines each segment and its sub-segment futures before looking at the 360-degree view of the market mentioned above. Market forecasts will provide deep insight into industry parameters by accessing growth, consumption, upcoming market trends and various price fluctuations.

This has brought along several changes in This report also covers the impact of COVID-19 on the global market.

Total organic carbon (TOC) is the amount of carbon found in an organic compound and is often used as a non-specific indicator of water quality or cleanliness of pharmaceutical manufacturing equipment. TOC may also refer to the amount of organic carbon in soil, or in a geological formation, particularly the source rock for a petroleum play; 2% is a rough minimum. For marine surface sediments, average TOC content is 0.5% in the deep ocean, and 2% along the eastern margins.Virtually all TOC analyzers measure the CO2 formed when organic carbon is oxidized and/or when inorganic carbon is acidified. Oxidation is performed either through Pt-catalyzed combustion, by heated persulfate, or with a UV/persulfate reactor. Once the CO2 is formed, it is measured by a detector: either a conductivity cell (if the CO2 is aqueous) or a non-dispersive infrared cell (after purging the aqueous CO2 into the gaseous phase). Conductivity detection is only desirable in the lower TOC ranges in deionized waters, whereas NDIR detection excels in all TOC ranges.

On-line Total Organic Carbon (TOC) Analyzer Market competition by top manufacturers as follow: , Xylem, SUEZ, Hach Company, Shimadzu Corporation, Mettler-Toledo International, Metrohm, Elementar Analysensysteme, LAR Process Analyzers, Zhejiang Tailin BioEngineering, Comet Analytics, Analytik Jena

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Global On-line Total Organic Carbon (TOC) Analyzer Market research reports growth rates and market value based on market dynamics, growth factors. Complete knowledge is based on the latest innovations in the industry, opportunities and trends. In addition to SWOT analysis by key suppliers, the report contains a comprehensive market analysis and major players landscape.The Type Coverage in the Market are: Ultraviolet oxidationUV persulfate oxidationHigh-temperature combustion

Market Segment by Applications, covers:River WaterPharmaceuticalFood & BeveragesChemicalsSemiconductorRain Water

Market segment by Regions/Countries, this report coversNorth AmericaEuropeChinaRest of Asia PacificCentral & South AmericaMiddle East & Africa

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Incredible Growth of On-line Total Organic Carbon (TOC) Analyzer Market 2020 Growing with Major Eminent Key Player LAR Process Analyzers, Zhejiang...

NIH to leverage AI and medical imaging for open-source COVID-19 database – DOTmed HealthCare Business News

The National Institutes of Health (NIH) has established the Medical Imaging and Data Resource Center (MIDRC), an initiative seeking to leverage the power of AI and medical imaging for early detection of COVID-19.

The plan is to create an open-source database in which COVID-19 related medical images can be collected, annotated, stored and shared to answer questions researchers have worldwide about the disease. The NIHs National Institute of Biomedical Imaging and Bioengineering (NIBIB) will fund the project, while the American College of Radiology, the Radiological Society of North America and the American Association of Physicists in Medicine will co-lead its development, which includes the creation and implementation of machine-learning algorithms.

This major initiative responds to the international imaging communitys expressed unmet need for a secure technological network to enable the development and ethical application of artificial intelligence to make the best medical decisions for COVID-19 patients, said Dr. Krishna Kandarpa, director of research sciences and strategic directions at NIBIB, in a statement. Eventually, the approaches developed could benefit other conditions as well.

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ACR, RSNA and AAPM will collect and annotate thousands of images, and will recruit engineers, physicians and scientists to collect and organize the data. They plan to soon upload more than 10,000 COVID-19 thoracic radiographs and CT images, including from the ACR COVID-19 Imaging Research Registry and the RSNA International COVID-19 Open Radiology Database (RICORD). The information conveyed by the images will be used to train the algorithms so they can answer clinical and logistical questions to help researchers worldwide diagnose and personalize treatments for COVID-19 patients.

The development and implementation of the algorithms is expected to help physicians quickly and accurately assess the signs of COVID-19 and correlate them with other clinical symptoms and tests. The MIDRC will consist of five infrastructure development projects and oversee twelve research projects, including approximately 20 university labs, as part of efforts to find solutions for the COVID-19 pandemic. Its services will later be expanded to provide imaging data and AI technologies to help assess and diagnose other diseases.

Access to this unprecedented resource will soon fuel expedited AI research to provide better diagnosis, new treatments and more-effective monitoring to guard against COVID-19 resurgence, said Maryellen Giger, PhD, of the University of Chicago, principal investigator of the NIBIB MIDRC contract and chair of the AAPM Data Science Committee, in a statement. This is a significant step in the effort against COVID-19.

The MIDRC is funded under the National Institutes of Healths special emergency COVID-19 process.

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NIH to leverage AI and medical imaging for open-source COVID-19 database - DOTmed HealthCare Business News

Oakland University Launches Department of Bioengineering – Patch.com

With a focus on promoting interdisciplinary collaboration, Oakland University has elevated its bioengineering program to a department. The move is intended to strengthen the university's academic profile and help students succeed in a rapidly evolving job market.

The department is the first in the university's history to be under the shared governance of core academic units, the College of Arts and Sciences and the School of Engineering and Computer Science. Its origins trace back to when the engineering biology program was founded in 2007.

The name was eventually changed to bioengineering and the curriculum was retooled to maximize faculty expertise across academic disciplines. The transition to a department was finalized in 2019, the result of extensive collaboration between faculty and administrative leaders from both CAS and SECS.

"The Department of Bioengineering would not have come to fruition without the dedication and commitment of numerous individuals," said Shailesh Lal, professor of biological sciences and chair of the Department of Bioengineering. "We are especially grateful for the efforts of CAS Dean Kevin Corcoran and SECS Dean Louay Chamra who helped navigate a comprehensive approval process and establish a sound foundation for the department for years to come."

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Department leaders are preparing to seek accreditation from the Accreditation Board for Engineering and Technology (ABET), an important step in the long-term success of the department. To be ABET-accredited, programs must meet objectives related to students, student outcomes, program educational objectives, facilities, institutional support, curriculum, faculty and continuous improvement.

According to Lal, housing the program within a department will help ensure it has the support and resources required to meet the ongoing demands of accreditation, which comes up for renewal every three years. Moreover, department status will also help the university continue to recruit and retain high-quality faculty and students, and also establish collaborations with industry for student design projects, internships and employment opportunities.Along with learning in the classroom and in the lab, students can also join the Oakland University chapter of the Engineering in Medicine and Biology Society. EMBS provides a forum for all students to learn about the field of biomedical engineering, including careers, internships, lab positions and academic conferences.

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Currently, Oakland offers a Bachelor of Science in Bioengineering, a program which has more than 80 students who are declared majors. An additional number of students are working toward fulfilling the prerequisites needed to declare the major. Once the program is accredited, expected in winter 2021, these students and future students will be covered under the accreditation. They'll be prepared to enter advanced degree programs and pursue a wide range of careers in engineering, technology, health care and more.

"There's no shortage of jobs that combine the principles of biology and engineering," said Gerard Madlambayan, associate professor of biological sciences and a co-founding faculty member affiliated with the Department of Bioengineering. "The field is incredibly diverse, including everything from gene editing, to medical imaging, pharmaceuticals, tissue engineering and prosthetics. The possibilities are endless and the benefits to society can be life-changing."

Senior bioengineering major Eric Seidel has spent more than two years at Oakland University's Eye Research Institute (ERI) working on research that applies bioengineering concepts to the study of potential amyloid fibrillar protein aggregates found in cataractous lenses which could benefit the study of other protein aggregation diseases such as Alzheimer's and Parkinson's disease.

"I learned a great deal about what it means to be a researcher and work on a project," said Seidel, who worked closely with ERI Director Frank Giblin, the project's principal investigator. "There were many opportunities to problem solve and troubleshoot, which is the heart of the research process. It's a lot of work, but when you find solutions, it's very gratifying."

Jia Li, professor of engineering and co-founding faculty member affiliated with the Department of Bioengineering, calls bioengineering an "interdisciplinary and collaborative research field that promotes mutual learning to overcome human challenges."

She added, "Microscope nuclear imaging, computer-aided diagnosis, remote sensing just to name a few have become indispensable engineering tools in the study of biology and environment monitoring."

More broadly, the focus on interdisciplinary collaboration is part of an overarching effort to equip students with the knowledge and skills to make transformative impacts in their communities and throughout the world.

"This is a unique collaborative initiative between the School of Engineering and Computer Science and Department of Biological Sciences," said Louay Chamra, dean of the School of Engineering and Computer Science. "I strongly believe that graduates of this program will develop solutions to health-related problems, and techniques that improve quality of life."

Kevin Corcoran, dean of the College of Arts and Sciences, echoed those sentiments."OU is unique in this full collaboration between Biology and Engineering," said Corcoran. "We believe this deep connection will result in graduates whose knowledge in each of these areas will serve them and society very well."

For more information on OU's Department of Bioengineering, visit oakland.edu/bioengineering or contact Shailesh Lal at lal@oakland.edu.

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Oakland University Launches Department of Bioengineering - Patch.com

TEDxCharleston: Pandemic in the Lowcountry What Lies Ahead? – Daniel Island News

There is still much uncertainty about coronavirus growing impact in our community. Have we reached our peak? What is the state of a vaccine? Is a second wave coming? What does the future hold for school, work, travel and public gatherings?

To help provide some clarity, TEDxCharleston will present a free virtual event, Pandemic in the Lowcountry What Lies Ahead? Hosted by award winning Post and Courier journalist, Tony Bartelme and two distinguished experts on infectious disease, Michael Schmidt and Satish Nadig, this interactive discussion will present timely information and insights into where we stand and what we can expect as a community as the COVID-19 pandemic continues to evolve. The entire Charleston community is encouraged to join the discussion on Tuesday, June 30 at 6:30 p.m. (details of how to register and join via zoom at end of the article).

Michael Schmidt is a microbiologist and infection control solutionist. He serves as Professor of Microbiology and Immunology at MUSC and focuses on translating microbiological results from the lab into practical solutions. Michael was a speaker at the 2013 TEDxCharleston.

Satish Nadig is an adult and pediatric multi-organ transplant surgeon at MUSC whose research is centered around immunology, bioengineering and targeted drug delivery in the setting of solid organ transplantation. He also led the statewide taskforce to develop antibody testing against COVID-19. Satish was a speaker at the 2016 TEDxCharleston.

Tony Bartelme is an investigative journalist for the Post and Courier. A three-time Pulitzer Prize finalist and author, Tony is fueled by uncovering complex stories that strike a chord within his local community and beyond. Tony was a speaker at the 2019 TEDxCharleston.

This event is free and open to the public!

Details on How to Register

REGISTER HERE: https://us02web.zoom.us/webinar/register/WN_R4Bq6jo7SBy67ukC-LbQog?fbclid=IwAR0dvWZ02vBCOF4FAYnG-YB5U8in_c0ZTCeGlMU6Nv-BOFijTRpedcnfGUg

Webinar Link: discovery.zoom.us/j/97257055513?pwd=VlFwUzdJQTlGdDJPNURJeTN4bXlyUT09

Webinar ID: 972 5705 5513

Password: 013084

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TEDxCharleston: Pandemic in the Lowcountry What Lies Ahead? - Daniel Island News

Trending News 2020 Covid-19 impact on Feed Additive Nosiheptide Premix Key Manufacturers, Demand, Application Forecasts And Opportunities, Market…

Trending Feed Additive Nosiheptide Premix Market 2020: COVID-19 Outbreak Impact Analysis

Chicago, United States ,The report entitled Global Feed Additive Nosiheptide Premix Market 2020 by Manufacturers, Regions, Type and Application, Forecast to 2025 released byReport Hive Researchcomprises an assessment of the market which provides the real-time market scenario and its projections during 2020 to 2025 time-period. The report offers an understanding of the demographic changes that took place in recent years. The report presents an analysis of market size, share, growth, trends, statistical and comprehensive facts of the global Feed Additive Nosiheptide Premix market. This research study presents informative information and in-depth evaluation of the market and its segments based totally on technology, geography, region, and applications.

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Drivers And Risks:The report covers the basic dynamics of the global Feed Additive Nosiheptide Premix market. It scrutinizes several data and figures, and numerous volume trends. A number of potential growth factors, risks, restraints, challenges, market developments, opportunities, strengths, and weaknesses have been highlighted. Another factor affecting market growth has also been included in the report.

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Regional coverage:North America (United States, Canada and Mexico), Europe (Germany, France, UK, Russia and Italy), Asia-Pacific (China, Japan, Korea, India and Southeast Asia), South America (Brazil, Argentina, Colombia etc.), Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)

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Chapter 1: Introduction, market driving force product scope, market risk, market overview, and market opportunities of the global Feed Additive Nosiheptide Premix market.

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In this report, Leading players of the global Feed Additive Nosiheptide Premix Market are analyzed taking into account their market share, recent developments, new product launches, partnerships, mergers or acquisitions, and markets served. We also provide an exhaustive analysis of their product portfolios to explore the products and applications they concentrate on when operating in the global Feed Additive Nosiheptide Premix Market. Furthermore, the report offers two separate market forecasts one for the production side and another for the consumption side of the global Feed Additive Nosiheptide Premix Market. It also provides useful recommendations for new as well as established players of the global Feed Additive Nosiheptide Premix Market.

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Trending News 2020 Covid-19 impact on Feed Additive Nosiheptide Premix Key Manufacturers, Demand, Application Forecasts And Opportunities, Market...

Gibberellic Acid Market Provides in-depth analysis of the Gibberellic Acid Industry, with current trends and future estimations to elucidate the…

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Gibberellic Acid Market Provides in-depth analysis of the Gibberellic Acid Industry, with current trends and future estimations to elucidate the...

Global Fumaric Acid Market with COVID-19 After Effects Analysis by Key Players | Yantai Hengyuan Bioengineering, Bartek Ingredients, Polynt,…

Fumaric Acid Industry Overview Competitive Analysis, Regional and Global Analysis, Segment Analysis, Market Forecasts 2026

Owing to these harsh conditions, major market players have started to change their business strategies in order to retain their stand in the global platform. The research study on the globalFumaric Acid marketdeals with the updated status of the Fumaric Acid market. Some of the major market players operating in the Fumaric Acid market includeYantai Hengyuan Bioengineering, Bartek Ingredients, Polynt, Thirumalai Chemical, Isegen, Fuso Chemicals, Jiangsu Jiecheng Bioengineering, Changzhou Yabang Chemical, NIPPON SHOKUBAI, Sealong Biotechnology, Changmao Biochemical Engineering, Suzhou Youhe Science and Technology, XST Biological. The dossier includes detailed profiling of all the industry players in the Fumaric Acid market. The research analysts have conducted primary research and have included all the recent developments that the organizations are trying to work out in this COVID-19 situation.

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The global markets have undergone huge change in the last few months. These changes were due to the outbreak of the pandemic which was first detected in the Wuhan city of China.COVID-19which has occurred due to the coronavirus has taken many lives of people around the world. As the disease is spreading at a rapid rate many of the countries have ordered lockdown for maintaining social distancing. Due to the lockdown, many of the industries have halted their manufacturing units. There have been restrictions for cross border trading within the countries and also within the states. Owing to these conditions, trading conditions in various regions have been affected badly. The overall countries in the world are facing economic crisis thus affecting some of the major markets in the world.

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Global Fumaric Acid Market with COVID-19 After Effects Analysis by Key Players | Yantai Hengyuan Bioengineering, Bartek Ingredients, Polynt,...

Global Bio Decontamination Marke (COVID-19 Impact Analysis) Latest Industry Research and Future Growth Outlook – Flagler Times

Zion Market Researchanalysts forecasts the latest report onGlobal Bio Decontamination Marke (COVID-19 Impact Analysis) Latest Industry Research and Future Growth Outlook, according to their latest report. The Bio Decontamination Marke report covers the overall and all-inclusive analysis of the Bio Decontamination Marke with all its factors that have an impact on market growth. This report is anchored on the thorough qualitative and quantitative assessment of the globalBio Decontamination Marke. The study provides details such as the market share of companies in order to present a broader overview of the key playersin the Bio Decontamination Marke.

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Promising Regions & Countries Mentioned In The Bio Decontamination Marke Report:

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2. Manufacturing Cost Structure Analysis of Bio Decontamination Marke market.

3. Technical Data and Manufacturing Plants Analysis of Bio Decontamination Marke.

4. Capacity, Production and Revenue Analysis.

5. Price, Cost, Gross and Gross Margin Analysis of Bio Decontamination Marke by Regions, Types and Manufacturers.

6. Consumption Volume, Consumption Value and Sale Price Analysis of Bio Decontamination Marke industry by Regions, Types and Applications.

7. Supply, Import, Export and Consumption Analysis of Bio Decontamination Marke Market.

8. Major Manufacturers Analysis of Bio Decontamination Marke industry.

9. Marketing Trader or Distributor Analysis of Bio Decontamination Marke.

10. Industry Chain Analysis of Bio Decontamination Marke.

11. Development Trend Analysis of Bio Decontamination Marke Market.

12. New Project Investment Feasibility Analysis of Bio Decontamination Marke.

13. Conclusion of the Bio Decontamination Marke Industry.

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Global Bio Decontamination Marke (COVID-19 Impact Analysis) Latest Industry Research and Future Growth Outlook - Flagler Times

Mini Bioreactor Market Report 2020: Acute Analysis of Global Demand and Supply 2026 with Major Key Player: Thermo Fisher, Merck KGaA, Danaher (Pall),…

Due to the pandemic, we have included a special section on the Impact of COVID 19 on the Mini BioreactorMarket which would mention How the Covid-19 is Affecting the Industry, Market Trends and Potential Opportunities in the COVID-19 Landscape, Key Regions and Proposal for Mini Bioreactor Market Players to battle Covid-19 Impact.

The Mini BioreactorMarket report is one of the most comprehensive and important data about business strategies, qualitative and quantitative analysis of Global Market. It offers detailed research and analysis of key aspects of the Mini Bioreactor market. The market analysts authoring this report have provided in-depth information on leading growth drivers, restraints, challenges, trends, and opportunities to offer a complete analysis of the Mini Bioreactor market.

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Years Considered to Estimate the Mini Bioreactor Market Size:History Year: 2015-2019Base Year: 2019Estimated Year: 2020Forecast Year: 2020-2026

Highlights of the Report: Accurate market size and CAGR forecasts for the period 2019-2026 Identification and in-depth assessment of growth opportunities in key segments and regions Detailed company profiling of top players of the global Mini Bioreactor market Exhaustive research on innovation and other trends of the global Mini Bioreactor market Reliable industry value chain and supply chain analysis Comprehensive analysis of important growth drivers, restraints, challenges, and growth prospects

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Mini Bioreactor Market Report 2020: Acute Analysis of Global Demand and Supply 2026 with Major Key Player: Thermo Fisher, Merck KGaA, Danaher (Pall),...

Fatty Alcohol Polyoxyethylene Ether Market Growth, Projections, Analysis, Trends and Forecast 2026 – Cole of Duty

Los Angeles, United State: Complete study of the global Fatty Alcohol Polyoxyethylene Ether market is carried out by the analysts in this report, taking into consideration key factors like drivers, challenges, recent trends, opportunities, advancements, and competitive landscape. This report offers a clear understanding of the present as well as future scenario of the global Fatty Alcohol Polyoxyethylene Ether industry. Research techniques like PESTLE and Porters Five Forces analysis have been deployed by the researchers. They have also provided accurate data on Fatty Alcohol Polyoxyethylene Ether production, capacity, price, cost, margin, and revenue to help the players gain a clear understanding into the overall existing and future market situation.

The research study includes great insights about critical market dynamics, including drivers, restraints, trends, and opportunities. It also includes various types of market analysis such as competitive analysis, manufacturing cost analysis, manufacturing process analysis, price analysis, and analysis of market influence factors. It is a complete study on the global Fatty Alcohol Polyoxyethylene Ether market that can be used as a set of effective guidelines for ensuring strong growth in the coming years. It caters to all types of interested parties, viz. stakeholders, market participants, investors, market researchers, and other individuals associated with the Fatty Alcohol Polyoxyethylene Ether business.

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It is important for every market participant to be familiar with the competitive scenario in the global Fatty Alcohol Polyoxyethylene Ether industry. In order to fulfil the requirements, the industry analysts have evaluated the strategic activities of the competitors to help the key players strengthen their foothold in the market and increase their competitiveness.

Key Players Mentioned in the Global Fatty Alcohol Polyoxyethylene Ether Market Research Report: Horizon Chemical, Dongming Jujin Chemical, Jingzhou Pengfeng Chemical, Hangzhou Gopher Chem-Tech, Nantong Gaokai Chemical, Shandong Tiandao Bioengineering, Guangzhou Qi Sheng Chemical, Suzhou Huayuan Chemical, Maoming Yunlong, Wenzhou Qingming Chemical, Nantong Fengyuan Chemical, Jiangsu HSINTAI Chemical

Global Fatty Alcohol Polyoxyethylene Ether Market Segmentation by Product:Paste, Liquid

Global Fatty Alcohol Polyoxyethylene Ether Market Segmentation by Application: Cosmetics & Personal Care, Textile Industry, Printing and Dyeing, Leather Industry, Others

The report has classified the global Fatty Alcohol Polyoxyethylene Ether industry into segments including product type and application. Every segment is evaluated based on growth rate and share. Besides, the analysts have studied the potential regions that may prove rewarding for the Fatty Alcohol Polyoxyethylene Ether manufcaturers in the coming years. The regional analysis includes reliable predictions on value and volume, thereby helping market players to gain deep insights into the overall Fatty Alcohol Polyoxyethylene Ether industry.

Additionally, the industry analysts have studied key regions including North America, Europe, Asia Pacific, Latin America, and Middle East and Africa, along with their respective countries. Here, they have given a clear-cut understanding of the present and future situations of the global Fatty Alcohol Polyoxyethylene Ether industry in key regions. This will help the key players to focus on the lucrative regional markets.

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Table of Content

1.1 Research Scope1.2 Market Segmentation1.3 Research Objectives1.4 Research Methodology1.4.1 Research Process1.4.2 Data Triangulation1.4.3 Research Approach1.4.4 Base Year1.5 Coronavirus Disease 2019 (Covid-19) Impact Will Have a Severe Impact on Global Growth1.5.1 Covid-19 Impact: Global GDP Growth, 2019, 2020 and 2021 Projections1.5.2 Covid-19 Impact: Commodity Prices Indices1.5.3 Covid-19 Impact: Global Major Government Policy1.6 The Covid-19 Impact on Fatty Alcohol Polyoxyethylene Ether Industry1.7 COVID-19 Impact: Fatty Alcohol Polyoxyethylene Ether Market Trends

2 Global Fatty Alcohol Polyoxyethylene Ether Quarterly Market Size Analysis2.1 Fatty Alcohol Polyoxyethylene Ether Business Impact Assessment COVID-192.1.1 Global Fatty Alcohol Polyoxyethylene Ether Market Size, Pre-COVID-19 and Post- COVID-19 Comparison, 2015-20262.1.2 Global Fatty Alcohol Polyoxyethylene Ether Price, Pre-COVID-19 and Post- COVID-19 Comparison, 2015-20262.2 Global Fatty Alcohol Polyoxyethylene Ether Quarterly Market Size 2020-20212.3 COVID-19-Driven Market Dynamics and Factor Analysis2.3.1 Drivers2.3.2 Restraints2.3.3 Opportunities2.3.4 Challenges

3 Quarterly Competitive Assessment, 20203.1 Global Fatty Alcohol Polyoxyethylene Ether Quarterly Market Size by Manufacturers, 2019 VS 20203.2 Global Fatty Alcohol Polyoxyethylene Ether Factory Price by Manufacturers3.3 Location of Key Manufacturers Fatty Alcohol Polyoxyethylene Ether Manufacturing Factories and Area Served3.4 Date of Key Manufacturers Enter into Fatty Alcohol Polyoxyethylene Ether Market3.5 Key Manufacturers Fatty Alcohol Polyoxyethylene Ether Product Offered3.6 Mergers & Acquisitions, Expansion Plans

4 Impact of Covid-19 on Fatty Alcohol Polyoxyethylene Ether Segments, By Type4.1 Introduction1.4.1 Paste1.4.2 Liquid4.2 By Type, Global Fatty Alcohol Polyoxyethylene Ether Market Size, 2019-20214.2.1 By Type, Global Fatty Alcohol Polyoxyethylene Ether Market Size by Type, 2020-20214.2.2 By Type, Global Fatty Alcohol Polyoxyethylene Ether Price, 2020-2021

5 Impact of Covid-19 on Fatty Alcohol Polyoxyethylene Ether Segments, By Application5.1 Overview5.5.1 Cosmetics & Personal Care5.5.2 Textile Industry5.5.3 Printing and Dyeing5.5.4 Leather Industry5.5.5 Others5.2 By Application, Global Fatty Alcohol Polyoxyethylene Ether Market Size, 2019-20215.2.1 By Application, Global Fatty Alcohol Polyoxyethylene Ether Market Size by Application, 2019-20215.2.2 By Application, Global Fatty Alcohol Polyoxyethylene Ether Price, 2020-2021

6 Geographic Analysis6.1 Introduction6.2 North America6.2.1 Macroeconomic Indicators of US6.2.2 US6.2.3 Canada6.3 Europe6.3.1 Macroeconomic Indicators of Europe6.3.2 Germany6.3.3 France6.3.4 UK6.3.5 Italy6.4 Asia-Pacific6.4.1 Macroeconomic Indicators of Asia-Pacific6.4.2 China6.4.3 Japan6.4.4 South Korea6.4.5 India6.4.6 ASEAN6.5 Rest of World6.5.1 Latin America6.5.2 Middle East and Africa

7 Company Profiles7.1 Horizon Chemical7.1.1 Horizon Chemical Business Overview7.1.2 Horizon Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.1.3 Horizon Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.1.4 Horizon Chemical Response to COVID-19 and Related Developments7.2 Dongming Jujin Chemical7.2.1 Dongming Jujin Chemical Business Overview7.2.2 Dongming Jujin Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.2.3 Dongming Jujin Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.2.4 Dongming Jujin Chemical Response to COVID-19 and Related Developments7.3 Jingzhou Pengfeng Chemical7.3.1 Jingzhou Pengfeng Chemical Business Overview7.3.2 Jingzhou Pengfeng Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.3.3 Jingzhou Pengfeng Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.3.4 Jingzhou Pengfeng Chemical Response to COVID-19 and Related Developments7.4 Hangzhou Gopher Chem-Tech7.4.1 Hangzhou Gopher Chem-Tech Business Overview7.4.2 Hangzhou Gopher Chem-Tech Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.4.3 Hangzhou Gopher Chem-Tech Fatty Alcohol Polyoxyethylene Ether Product Introduction7.4.4 Hangzhou Gopher Chem-Tech Response to COVID-19 and Related Developments7.5 Nantong Gaokai Chemical7.5.1 Nantong Gaokai Chemical Business Overview7.5.2 Nantong Gaokai Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.5.3 Nantong Gaokai Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.5.4 Nantong Gaokai Chemical Response to COVID-19 and Related Developments7.6 Shandong Tiandao Bioengineering7.6.1 Shandong Tiandao Bioengineering Business Overview7.6.2 Shandong Tiandao Bioengineering Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.6.3 Shandong Tiandao Bioengineering Fatty Alcohol Polyoxyethylene Ether Product Introduction7.6.4 Shandong Tiandao Bioengineering Response to COVID-19 and Related Developments7.7 Guangzhou Qi Sheng Chemical7.7.1 Guangzhou Qi Sheng Chemical Business Overview7.7.2 Guangzhou Qi Sheng Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.7.3 Guangzhou Qi Sheng Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.7.4 Guangzhou Qi Sheng Chemical Response to COVID-19 and Related Developments7.8 Suzhou Huayuan Chemical7.8.1 Suzhou Huayuan Chemical Business Overview7.8.2 Suzhou Huayuan Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.8.3 Suzhou Huayuan Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.8.4 Suzhou Huayuan Chemical Response to COVID-19 and Related Developments7.9 Maoming Yunlong7.9.1 Maoming Yunlong Business Overview7.9.2 Maoming Yunlong Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.9.3 Maoming Yunlong Fatty Alcohol Polyoxyethylene Ether Product Introduction7.9.4 Maoming Yunlong Response to COVID-19 and Related Developments7.10 Wenzhou Qingming Chemical7.10.1 Wenzhou Qingming Chemical Business Overview7.10.2 Wenzhou Qingming Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.10.3 Wenzhou Qingming Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.10.4 Wenzhou Qingming Chemical Response to COVID-19 and Related Developments7.11 Nantong Fengyuan Chemical7.11.1 Nantong Fengyuan Chemical Business Overview7.11.2 Nantong Fengyuan Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.11.3 Nantong Fengyuan Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.11.4 Nantong Fengyuan Chemical Response to COVID-19 and Related Developments7.12 Jiangsu HSINTAI Chemical7.12.1 Jiangsu HSINTAI Chemical Business Overview7.12.2 Jiangsu HSINTAI Chemical Fatty Alcohol Polyoxyethylene Ether Quarterly Production and Revenue, 20207.12.3 Jiangsu HSINTAI Chemical Fatty Alcohol Polyoxyethylene Ether Product Introduction7.12.4 Jiangsu HSINTAI Chemical Response to COVID-19 and Related Developments

8 Supply Chain and Sales Channels Analysis8.1 Fatty Alcohol Polyoxyethylene Ether Supply Chain Analysis8.1.1 Fatty Alcohol Polyoxyethylene Ether Supply Chain Analysis8.1.2 Covid-19 Impact on Fatty Alcohol Polyoxyethylene Ether Supply Chain8.2 Distribution Channels Analysis8.2.1 Fatty Alcohol Polyoxyethylene Ether Distribution Channels8.2.2 Covid-19 Impact on Fatty Alcohol Polyoxyethylene Ether Distribution Channels8.2.3 Fatty Alcohol Polyoxyethylene Ether Distributors8.3 Fatty Alcohol Polyoxyethylene Ether Customers

9 Key Findings

10 Appendix10.1 About Us10.2 Disclaimer

About Us:

QY Research established in 2007, focus on custom research, management consulting, IPO consulting, industry chain research, data base and seminar services. The company owned a large basic data base (such as National Bureau of statistics database, Customs import and export database, Industry Association Database etc), experts resources (included energy automotive chemical medical ICT consumer goods etc.

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Fatty Alcohol Polyoxyethylene Ether Market Growth, Projections, Analysis, Trends and Forecast 2026 - Cole of Duty

SwRI Awarded $1.9 Million Contract to Develop Treatment for COVID-19 in Collaboration with DOD – Business Wire

SAN ANTONIO--(BUSINESS WIRE)--Using Department of Defense supercomputers, Southwest Research Institute is virtually screening millions of drug compounds to search for and test possible treatment options for the novel coronavirus 2019. The Henry M. Jackson Foundation for the Advancement of Military Medicine Inc. (HJF) has awarded SwRI a $1.9 million, one-year contract to support these efforts to identify potential COVID-19 treatments. HJF supports COVID-19 countermeasure development at the Walter Reed Army Institute of Research.

SwRI is working with the DOD High Performance Computing Modernization Program to rapidly screen potential drug compounds using SwRIs 3D drug screening software tool, Rhodium. Using supercomputers speeds up the screening process allowing evaluation of possible therapeutic compounds to increase from 250,000 compounds a day to more than 40 million compounds in just one week.

This grant will enable SwRI to collaborate to develop safe antiviral drug therapy treatment options for COVID in record time, said Dr. Joe McDonough, director of SwRIs Pharmaceutical and Bioengineering Department. SwRI is using its Rhodium modeling technology to continue the search for an effective drug and has already screened more than 40 million compounds.

As a drug development tool, Rhodium helps scientists rapidly predict how protein structures in infectious diseases will bind with drug compounds to find viable candidates for development into therapies.

Rhodium is helping us quickly identify highly probable compounds from databases with existing drug candidates to narrow down our focus, said Dr. Jonathan Bohmann, an SwRI principal scientist leading COVID-19 drug screening work. As we identify potential candidates, we have moved them on to testing.

SwRI is also conducting laboratory screening of compounds, assessing toxicity to help filter potential treatment options. Once compounds are tested and meet the criteria set for safety and efficacy, SwRI will be involved in formulation development and production scale-up for the compounds. The Institute has previously used this process to develop drug treatment therapies for Ebola virus, malaria and other infectious diseases.

This is definitely a priority project, and we understand the urgency, said Nadean Gutierrez, project manager and SwRI research scientist. We are utilizing Rhodium and other screening tools to expeditiously screen existing compounds as well as identify novel drug candidates against COVID-19. Right now, we are working toward testing up to 500 compounds in laboratory toxicity testing. Once these compounds have been identified by Rhodium and then passed toxicity testing, they move to the Texas Biomedical Research Institute (Texas Biomed) for the next steps in testing.

When news began to emerge about COVID-19, SwRI immediately began the search for a treatment, teaming with other scientists and tapping into SwRI internal research funding.

SwRI began looking for a treatment to stop COVID-19 as soon as the virus protein was published in February, McDonough said. Working with existing collaborators at Texas Biomed, U.S. Army Medical Research Institute of Infectious Diseases (USAMRIID) and Walter Reed Army Institute of Research (WRAIR), SwRI scientists identified 60 compounds from a library of more than 6 million compounds. These are already being tested at USAMRIID and Texas Biomed. SwRI continues to fund the development of a treatment internally along with collaborators.

This work may also help find future treatment options for severe acute respiratory syndrome (SARS) and Middle East Respiratory Syndrome (MERS), which show similar binding domains as the COVID-19 protein.

Under this program, SwRI will identify drug candidates that will be tested at USAMRIID, WRAIR and TBRI with the goal of demonstrating efficacy as early as next year, McDonough said.

The U.S. Army Medical Research Acquisition Activity, 820 Chandler Street, Fort Detrick, Maryland 21702-5014 is the awarding and administering acquisition office.

This work was supported by the U.S. Army Medical Research Acquisition Activity, under Award No. W81XWH1820040. Opinions, interpretations, conclusions and recommendations are those of the author and are not necessarily endorsed by the U.S. Army Medical Research Acquisition Activity.

For more information, visit https://www.swri.org/industry/drug-discovery/structure-based-virtual-screening.

https://www.swri.org/press-release/dod-contract-covid-19-treatment-rhodium-virtually-screen-drug-compounds

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SwRI Awarded $1.9 Million Contract to Develop Treatment for COVID-19 in Collaboration with DOD - Business Wire

Ultrasonic Cell Disrupter Market To Witness Growth Acceleration During 2020 to 2027 – Express Journal

The Ultrasonic Cell Disrupter market report is an in-depth analysis of this business space. The major trends that defines the Ultrasonic Cell Disrupter market over the analysis timeframe are stated in the report, along with additional pointers such as industry policies and regional industry layout. Also, the report elaborates on the impact of existing market trends on investors.

Latest Growth Report on Ultrasonic Cell Disrupter Market size | Industry Segment by Applications (Pharmaceuticals,Bioengineering andOthers), by Type (Conventional Ultrasonic Cell Disrupter andIntelligent Ultrasonic Cell Disrupter), Regional Outlook, Market Demand, Latest Trends, Ultrasonic Cell Disrupter Growth Industry Share & Revenue by Manufacturers, Company Profiles, Growth Forecasts 2027. Analyzes current market size and upcoming seven years growth of this industry.

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Ultrasonic Cell Disrupter Market To Witness Growth Acceleration During 2020 to 2027 - Express Journal

We need an enabling ecosystem for development of vaccines, studies on new diseases – The Indian Express

Written by Balram Bhargava | Updated: June 4, 2020 7:45:11 am While the pandemic has highlighted their importance, vaccines have always been the frontrunners in saving lives: With their help, we are able to prevent the death of two to three million children globally every year. (File Photo)

Before the COVID-19 pandemic hit the world, we would often refer to science-fiction for cutting edge research such as brain transplants or bioengineering. But in my three decades of work in clinical medicine and medical research, never have I come across something that has transformed the global health landscape as much as the humble vaccine.

While the pandemic has highlighted their importance, vaccines have always been the frontrunners in saving lives: With their help, we are able to prevent the death of two to three million children globally every year. It is because of vaccines that we managed to eradicate highly contagious diseases such as smallpox, which used to kill millions only a few decades ago. In India, vaccines have helped us defeat polio the country was certified polio-free by the World Health Organisation (WHO) in 2014. In 2015, the country also eliminated maternal and neonatal tetanus. While we might not be certain about the timeline for the elimination of COVID-19, an effective vaccine is the worlds best shot at reducing the transmission of this highly contagious disease.

Opinion | How to read the numbers from Indias Covid-19 testing

While developing a vaccine for COVID-19 is a global health priority, a comprehensive approach is also required towards fast-tracking the development of vaccines to tackle emerging diseases. India is one of the largest producers and exporters of vaccines in the world. In fact, many vaccines in the national immunisation programme are produced in India and manufactured by Indian companies. This has been made possible through regular investments in ramping up our manufacturing capacity through programmes like Make In India. However, innovation and research in vaccines have not been adequately prioritised. India needs early-stage financial investment to propel a research and innovation ecosystem for the development of new vaccines.

The Indian Council of Medical Research (ICMR) has made great strides in that direction it has developed effective vaccines against Japanese encephalitis (JENVAC), shigella (technology transfer to Hillman Labs) and the Kyasanur forest disease. ICMR has also provided research funding for initial and validation studies for the rotavirus and polio vaccines.

ICMR is collaborating with Bharat Biotech International Limited (BBIL) to develop a fully indigenous vaccine for COVID-19 using the virus strain isolated at the National Institute of Virology in Pune. The strain has been successfully transferred from ICMR to BBIL. We will now seek fast-tracked approvals to expedite vaccine development, subsequent animal studies, and clinical evaluation of the candidate vaccine.

Opinion | We must give highest priority to strengthening the public health system

ICMR has also collaborated with the Serum Institute of India and Oxford University to fast-track clinical trials of the live attenuated recombinant vaccine for COVID-19 developed by the Oxford Group. These trials and developments will pave the way for a future where we could live without the fear of the contagion that is currently raging in the world.

These trials are steps in the right direction. But to make India a global leader, there should be concerted efforts to activate the triple-helix model of innovation that involves intensifying collaboration between research institutes, industry, and the government. We need to approach research and innovation from the bottom-up this means increasing research in biotechnology, medical innovation, and public health at the university level. The ICMR is in the process of setting up the National Institute of One Health to study zoonotic diseases, enabled by the Rs 20-lakh-crore package recently announced by the government. But more work needs to be done. One lesson from the COVID-19 pandemic is that we need more than one research institute to study zoonotic diseases.

The government and academia must come together to prioritise the development of cost-effective tools of public health importance like vaccines. The country needs a comprehensive approach to mobilise resources for this purpose. Indian researchers, and the countrys public health community at large, have stood up to the various public health challenges faced by the country. It is time the government, technical experts and private companies ensure that these researchers have access to the resources and tools that can make India truly atmanirbhar.

This article first appeared in the print edition on June 4, 2020 under the title Making Research Atmanirbhar.

The writer is Director General of ICMR and Secretary, Department of Health Research

Editorial | Corona crisis provides an opportunity to address inadequacies in healthcare system, and lack of safety nets for urban poor

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We need an enabling ecosystem for development of vaccines, studies on new diseases - The Indian Express

North student receives Luddy Scholarship from IU – The Republic

Staff Reports

Anna Kim, a student at Columbus North High School, has been named one of the first recipients of the Luddy Scholarship, the most prestigious scholarship awarded by the Luddy School of Informatics, Computing, and Engineering at Indiana University.

Luddy Scholars are afforded exclusive opportunities to interact with tech leaders, faculty, and alumni who will help students build their networks while enabling the next generation of STEM leaders create transformative solutions who will change the world. Luddy Scholars also enjoy programs featuring tech visionaries from strategic locations around the United States.

Kim was selected for the award based on his academic excellence and community service, as well as her passion for programming and the use of computing to solve societal issues. She plans to major in computer science at Luddy.

The program was established in 2019 as part of a gift from IU alumnus and founder and chairman of the board of ServiceNow Fred Luddy. Luddys $60 million giftthe second-largest private donation in the history of Indiana Universitysought to invest in the people of the Luddy School and the students of the state of Indiana. The Luddy Scholars program supports high-achieving Hoosier students who earn a minimum GPA of 3.8 and a Scholastic Aptitude Test score of at least 1,410 or an ACT score of at least 32.

Were tremendously excited to welcome the first recipients of the Luddy Scholarship, said Dennis Groth, interim dean of the Luddy School. Our students will be the technology innovators of tomorrow, and the Luddy Scholars will take on a leadership role at our school as an example of what can be accomplished through determination and a willingness to discover new solutions to the problems that impact our daily lives. They will showcase the best that the Hoosier state has to offer in technology.

Established in 2000, the Luddy School of Informatics, Computing, and Engineering is one of the broadest of its kind. Blending the fields of computer science, informatics, intelligent systems engineering, information and library science, and data science, the Luddy School is home to more than 3,000 students from the United States and around the world.

The schools faculty are world-renowned experts in their respective fields and lead the way in critical areas such as artificial intelligence, bioinformatics, high performance computing, programming languages, security, healthcare, human-computer interaction, computer engineering, bioengineering, and AI-driven-engineering. Computer and information sciences research expenditures are ranked 12th in the country.

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North student receives Luddy Scholarship from IU - The Republic

Coveting yeast? It’s much more than a loaf of bread – UC Riverside

UC Riverside engineers are transforming yeast, both the domesticated kind used to make bread and beer and lesser-known wild species, so it can be used in a variety of new ways including fighting cancer.

Yanran Li, a UC Riverside assistant professor of chemical and environmental engineering, is working with the yeast species Saccharomyces cerevisiae in an effort to turn it into a bioproduction platform for hormones, such as plant steroids, or phytosteroids, with anticancer properties.

Her approach, known as synthetic biology, involves transferring the biosynthetic machinery responsible for producing the desired steroids in plants to the engineered yeast strains so the yeast will robustly produce them, too. Plants cannot produce enough of these steroids for pharmaceutical use because doing so would interfere with their own growth.

S. cerevisiae has been used to make beer for about 13,000 years, and its what you still get today, in dried, purified form, when you open a packet of yeast if you can find one at the store as hordes of amateur bakers have turned to making loaves of crusty sourdough bread to pass the time while sheltering at home.

Of the manywild yeast species present in ancient breweries, the best alcohol producer was Saccharomyces cerevisiae. Though that wouldnt be known until the 1800s, people around the world nonetheless understood its power and cultivated it for use in baking and brewing, making S. cerevisiae one of the oldest domesticated organisms.

S. cerevisiae and its close relatives have, through careful breeding or genetic editing, been made into industrial-scale producers of ethanol fuel, flavorings, vitamins, proteins, and drugs such as insulin and interferon.

Lisaid she expects that one day her research group will know enough about how phytosteroids fight cancer to build a custom phytosteroid that delivers maximum tumor inhibiting or killing properties without hurting normal cells along the way.

Its a pity we cant get enough of these natural products from the original sources, she said. We are using yeast as a cell factory to produce these valuable compounds.

As any baker knows, S. cerevisiae thrives best in environments that are warm but not too hot. Keeping industrial facilities cool enough, especially in hot or tropical climates, has high environmental and financial costs. This makes it unsuitable and less sustainable for some industrial processes and limits what it can produce even with genetic manipulation.

We have fancy genetic engineering techniques for S. cerevisiae and can make it do a lot. But when were looking at industrial uses at a higher temperature we cant use it, said Ian Wheeldon, an associate professor of chemical and environmental engineering at UC Riverside, who uses synthetic biology to modify the genomes of wild yeasts. We take yeast that already grows in heat and tune it to produce more of what we want.

Wheeldon is working on ways to make Kluyveromyces marxianus, a heat tolerant wild yeast that reproduces more quickly than domesticated yeast, produce fruity esters for scents and flavorings. Hes also developing new multipurpose tools to rapidly make new strains of Yarrowia lipolytica, a wild yeast that consumes hydrocarbons, such as petroleum, and produces fats.

Because less is known about wild yeasts, engineering them is more difficult than S. cerevisiae, whose genome was first sequenced 24 years ago.

Theres huge variation between wild and domesticated yeasts, and the wild ones are often unpredictable, said Justin Chartron, a UC Riverside assistant professor of bioengineering, who studies how proteins are made in yeast. Theres a lot to making proteins. They need to be moved around, folded up, and modified. Theres a whole network of cellular machines to do this, but were trying to get them to produce more than they normally would so we hit a bottleneck.

Chartrons group uses high throughput sequencing to find what machines, or parts of the organisms metabolism, are in use at any given time in order to locate the proteins that take up the most space and remove them. This makes it easier for the yeast to produce the desired proteins.

If we ask the cell to make something it doesnt usually make, it destroys it. So we have to turn off those pathways, but we need to be clever about how we do it because the cell needs it to grow, Chartron said. Shining a blue light a technique known as optogenetics on an especially engineered cell is one way we can switch those pathways off.

The researchers said their work isnt that different from what amateur sourdough bakers are doing at home.

Were looking at nature to find properties of microbes and finding tools to develop those properties, Wheeldon said. These sourdoughs are exactly the kind of process were talking about you find an organism that produces acids and cultivate it to give your bread that sour taste.

Chartron, who also bakes sourdough bread, noted the baking process involves some of the same things as their own work: temperature, feeding the yeast, and fine-tuning the breads flavor.

We just use different instruments, he said.

Header photo: Stan Lim/UC Riverside

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Coveting yeast? It's much more than a loaf of bread - UC Riverside

Food Grade L-Alanine Market: Know More about the Years ahead – Latest Herald

A new market study is released on Food Grade L-Alanine Market with data Tables for historical and forecast years represented with Chats & Graphs spread through 45 Pages with easy to understand detailed analysis. The study highlights detailed assessment of the Market and display market sizing trend by revenue & volume (if applicable), current growth factors, expert opinions, facts, and industry validated market development data. The research study provides estimates for Food Grade L-Alanine Forecast till 2025*. Some are the players that are considered in the coverage of this study are Anhui Huaheng, Sinogel Amino Acid, Hebei Huayang, Jiangsu Jiecheng Bioengineering, Wuxi Jinghai Amino Acid, Shandong Kaison Biochemical, Changzhou Yabang Chemical & Zhangjiagang Huachang Pharmaceutical.

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2) Which companies are profiled in current version of the report? Can list of players be customize based on regional geographies we are targetingConsidering heat map analysis and based on market buzz or voice the profiled list of companies in the the report are Anhui Huaheng, Sinogel Amino Acid, Hebei Huayang, Jiangsu Jiecheng Bioengineering, Wuxi Jinghai Amino Acid, Shandong Kaison Biochemical, Changzhou Yabang Chemical & Zhangjiagang Huachang Pharmaceutical. Yes, further list of players can also be customized as per your requirement keeping in mind your areas of interest and adding local emerging players and leaders from targeted geography.

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To comprehend Food Grade L-Alanine market dynamics in the global market, the worldwide Food Grade L-Alanine market is analyzed across major geographical regions. HTF Market Intelligence also provides customized specific regional and country-level reports, see below break-ups.

North America: United States, Canada, and Mexico. South & Central America: Argentina, ,Chile, LATAM, and Brazil. Middle East & Africa: Saudi Arabia, UAE, Israel, Turkey, Egypt and South Africa. Europe: UK, France, Italy, Germany, Spain, BeNeLux, and Russia. Asia-Pacific: India, China, Japan, South Korea, Indonesia, Thailand, Singapore, and Australia.

2-Page company profiles for 10+ leading players is included with 3 years financial history to illustrate the recent performance of the market. Latest and updated discussion for 2019 major macro and micro elements influencing market and impacting the sector are also provided with a thought-provoking qualitative remarks on future opportunities and likely threats. The study is a mix of both statistically relevant quantitative data from the industry, coupled with insightful qualitative comment and analysis from Industry experts and consultants.

Food Grade L-Alanine Product Types In-Depth: , Purity: ?98.5% & Purity: ?99%

Food Grade L-Alanine Major Applications/End users: Food and Beverages, Health Supplements & Others

Market Sizing by Geographical Break-down: Asia Pacific, North America, Europe, South America & Middle East & Africa

To ascertain a deeper view of Market Size, competitive landscape is provided i.e. Comparative Market Share Revenue Analysis (Million USD) by Players (2018-2019) & Segment Market Share (%) by Players (2018-2019) and further a qualitative analysis of all players is made to understand market concentration rate.

Competitive Landscape & Analysis:Major players of Food Grade L-Alanine Market are focusing highly on innovation in new technologies to improve production efficiency and re-arrange product lifecycle. Long-term growth opportunities for this sector are captured by ensuring ongoing process improvements of related players following NAICS standard by understanding their financial flexibility to invest in the optimal strategies. Company profile section of players such as Anhui Huaheng, Sinogel Amino Acid, Hebei Huayang, Jiangsu Jiecheng Bioengineering, Wuxi Jinghai Amino Acid, Shandong Kaison Biochemical, Changzhou Yabang Chemical & Zhangjiagang Huachang Pharmaceutical includes vital information like legal name, website, headquarter, its market position, distribution and marketing channels, historical background and top 4 closest competitors by Market capitalization / turnover along with sales contact information. Each company / manufacturers revenue figures, growth rate, net profit and gross profit margin is provided in easy to understand tabular format for past 3 years and a separate section on market entropy covering recent development activities like mergers &acquisition, new product/service launch, funding activity etc.

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In this study, the years considered to estimate the market size of Food Grade L-Alanine are as follows:History Year: 2014-2018, Base Year: 2019, Forecast Year 2019 to 2025

Key Stakeholders / Target Audience Covered:In order to better analyze value chain/ supply chain of the Industry, a lot of attention given to backward & forward Integration Food Grade L-Alanine Manufacturers Food Grade L-Alanine Distributors/Traders/Wholesalers Food Grade L-Alanine Sub-component Manufacturers Industry Association Downstream Vendors

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Food Grade L-Alanine Market: Know More about the Years ahead - Latest Herald

North Charleston native on her way to dream career as surgeon – charlestonchronicle.net

Kala Drayton is graduating from the College of Medicine and headed to a general surgery residency in Connecticut. Photo by Sarah Pack

By Leslie Cantu

Gathered together for a common purpose around the operating table, with nurses, techs and the experienced surgeons she hoped to emulate, Kala Drayton felt a certain familiarity.

Being in surgery and having everyone at the table, it almost made me feel like a child back home with my grandmother, Carrie Drayton. We would always have Sunday dinner together and come together at the table, she said.

Her grandmothers death after her second heart surgery, when Drayton was 11 years old, inspired Drayton to pursue a medical career. The young girl sneaked into the ICU, despite her mother, Kim Drayton, telling her to stay in the waiting room with her younger brother, Abraham Doctor IV. She listened as the surgeon explained what was happening to their grandmother.

At that moment, I knew I wanted to be the person on the other side of it, trying to do everything I could to prevent this from happening.

The path to a medical degree was far from clear for the daughter of a single mother in a family where no one had attended college. But Drayton was determined.

Today, she is a graduate of the Medical University of South Carolina College of Medicine headed to a general surgery residency at the University of Connecticut.

Faculty and staff who worked with her have been impressed with her drive and determination (I cant see myself doing or being simply average. If Im not going to give my all, then what have I accomplished? she says) but more so by how the values instilled in her by her grandmother continue to imbue her work.

Myra Haney Singleton, Ed.D., associate dean for student affairs, recounted just a few examples of Draytons contributions and leadership. She was named aDr. Raymond S. Greenberg Presidential Scholar, and through the program worked on getting free HPV vaccines to low-income residents of North Charleston, her hometown. She was selected to be a member of the Paul B. Underwood Jr. Chapter of the Gold Humanism Honor Society, for students and faculty who demonstrate excellence in clinical care, leadership, compassion, dedication to service, and are advocates for patient-centered, humanistic care. She served two years as director of Student Mentors for Minorities in Medicine, worked in the College of Medicines summer prep program for minority and rural students seeking medical school admission and volunteered at local churches, schools and health clinics.

Singleton remembers one moment in particular. Drayton was in the habit of stopping by her office to chat, and one day when she came by, Singleton was in conversation with a student who was struggling. The student recognized Drayton and said hello, and something sparked in Drayton.

Kala said, I know what youre dealing with. I know what youre going through, Singleton recalled. She said, I will help you. Kala started tutoring, she started mentoring, coaching, advising.

Another time when Drayton stopped in, Singleton was talking to a prospective student seeking advice for admission. Singleton asked Drayton to offer advice from her perspective, and Drayton immediately dropped what she was doing and printed an entire study plan for the MCAT, the notoriously difficult medical school admissions test.

Shes also, Singleton said, the only student to receive the Dr. Thaddeus John Bell M.D. Endowed Scholarship, a scholarship for African American students in any of MUSCs six colleges, for two years in a row. In fact, in a rare move for a scholarship namesake, Bell himself called Singleton to talk about how impressed he was with Draytons work.

Drayton has excelled academically as well. Between her first and second year, she worked in the lab ofRussell Norris, Ph.D., on a team that investigated how genetic variations in the heart valve cells of a developing fetus could later lead to mitral valve prolapse. She earned an author credit on theresulting journal articlethat was the cover story in Science Translational Medicine in May 2019.

During her fourth year, she worked withMichael Yost, Ph.D., in the Department of Surgerys Human Centered Design program. When she first showed up in Yosts office to talk about how she might participate, Yost said, he realized, This person is absolutely perfect for surgery and research.

Shes a self-starter a crucial quality for someone in this program staffed by busy people who have no time for coddling and a team player, Yost said.

The program put out a call to the surgery department for problems needing solutions. Submissions ranged from difficulty seeing well during certain surgical cases to how to help low-income patients who need expensive surgeries. The team then selected problems that members thought would have a significant impact if they could develop a solution.

Through the process, Yost said, Drayton learned a systematic method of identifying opportunities, evaluating what solutions already exist or could be adapted and then looking at possible solutions. She also got a taste of working in a multidisciplinary team. Academic medicine, Yost said, is or should be about innovation. Doctors working in academic medical centers are expected to lead the way in developing new techniques and solutions rather than simply relying on methods they learned in residency.

I would love to see every medical student go through this exercise, Yost said. Shes well-positioned to be a leader.

Not only is she a great student and collaborator, but shes also a genuinely nice, good person, he said.

Draytons journey began in North Charleston. Although she had decided she wanted to be a doctor, she had no idea how a person might go about doing that. Luckily, two of her teachers at Alice Birney Middle School now Northwoods Middle School saw her potential and pushed her to apply to Academic Magnet High School. There, surrounded by similarly ambitious and high-achieving students, Draytons world opened up.

She devoured every opportunity that arose, including shadowing friends parents who were doctors. She kept in contact with those people through her studies at the University of South Carolina, where she graduated cum laude with a degree in biological sciences.

After college, she decided to pursue a Master of Health Information Technology degree at UofSC. She had always enjoyed computers and building apps, and she loved learning about data collection and technologies that she might one day incorporate into a medical practice, as well as getting an introduction to bioengineering and artificial intelligence. That program along with a job she held as a medical scribe turned out to be great segues into medical school.

And always, she had her family in her corner as her biggest supporters. Singleton remembers that the first she heard of Drayton was when she got a call one day from a woman who said, My daughter wants to be a doctor. Can someone help her? From that first cold call, Singleton reached out to Drayton and outlined recommendations to follow prior to applying.

Later, while reviewing applications, Singleton was floored by Draytons.

It was amazing. She did everything. She went above and beyond the recommendations, Singleton said.

That drive to succeed continued throughout her time at MUSC, Singleton said. Drayton said she came in expecting medical school to be difficult and it was. But her expectations meant she was prepared to work hard and then push herself to work even harder. She never wanted people to assume she was capable of merely average work just because of where she came from, she said.

When it came time to choose a specialty, Drayton considered both surgery and pediatrics. Ultimately, she knew surgery was her passion. She likes the hands-on aspect and that she must face a specific problem and figure out how to fix it.

As soon Im inside the OR, Im focused on exactly what the problem is, and we cant stop until we fix it, she said.

She decided on a general surgery residency so she can experience all types of surgeries before deciding if shed like to specialize further.

She is both nervous and excited as she prepares to leave her home state and begin her career. Because of the coronavirus pandemic, she wont get the chance to walk across a stage in full graduation regalia, shake the university presidents hand and accept her diploma. She had hoped her mother, brother and grandfather would be there for that moment. Nonetheless, she knows how proud they are of her. Her grandfather, William Drayton, is a man of few words, she said, but she can see the pride in his eyes.

Drayton is thankful for her family and friends who have supported her and for the MUSC faculty and staff who have guided her.

Its been nothing but love from everyone Ive met, she said.

She also has advice for students following in her footsteps.

Always keep the faith. Never let disadvantage or roadblocks hold you back from your true potential. Everyone is put on this earth to do great things, and I know for a fact everyone is going to achieve those things. It may not be in the time frame you wanted, but you dont set those times. You just stay the course and do what you feel is right, and eventually, its going to happen, she said.

Singleton said she has no doubt that Drayton will succeed wherever she is.

She has a light that illuminates every area she walks in.

SOURCE:MUSC Catalyst News

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North Charleston native on her way to dream career as surgeon - charlestonchronicle.net

COVID-19: Responding to the business impacts of Isothermal Boxes for Vaccines Market Outlook With Industry Review and Forecasts – Cole of Duty

The global Isothermal Boxes for Vaccines market study presents an all in all compilation of the historical, current and future outlook of the market as well as the factors responsible for such a growth. With SWOT analysis, the business study highlights the strengths, weaknesses, opportunities and threats of each Isothermal Boxes for Vaccines market player in a comprehensive way. Further, the Isothermal Boxes for Vaccines market report emphasizes the adoption pattern of the Isothermal Boxes for Vaccines across various industries.

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COVID-19: Responding to the business impacts of Isothermal Boxes for Vaccines Market Outlook With Industry Review and Forecasts - Cole of Duty

U. Forward Fest to engage community on research and development for the future – The Daily Princetonian

On Oct. 23 and 24, the University will kick off its first monthly Forward Fest event, featuring high-level administrators and accomplished faculty members who work in innovation, as well as alumni hosts and moderators.

According to a press release, the online series, which will continue throughout the year, aims to spark dialogue across the global University community to engage with and explore big ideas and their infinite possibilities for shaping the future.

The Forward Fest speakers, or Forward Thinkers, are drawn from a variety of disciplines. Their presentations will discuss how their research and approaches have pivoted to analyze and address urgent contemporary issues.

The first half of the inaugural Forward Fest will take place on Friday, Oct. 23, at 8:00 p.m. EDT. President Christopher Eisgruber 83, Provost Deborah Prentice, and a number of other administrators are slated to speak on what is to come in A Year of Forward Thinking and how the University community can engage with topics such as public health and bioengineering with an orientation towards the future.

One of the featured administrators, Dean of Engineering and Applied Science Andrea Goldsmith, wrote in an email to the The Daily Princetonian that she will discuss plans to significantly grow our engineering faculty and to build a new neighborhood for the school that will foster collaboration within engineering and across all of Princeton.

I also plan to discuss our vision to launch interdisciplinary initiatives in bioengineering, quantum computing, robotics, smart cities, and data science, Goldsmith wrote. Advances in these topics will enhance health and medicine, spur new computing paradigms, improve the efficiency and robustness of our infrastructure, and mitigate climate change and energy shortages.

The second day of the event will take place on Saturday at 1:00 p.m. EDT and feature three panels of faculty members on the subjects of public health, social justice, and the U.S. election, respectively.

History professor Kevin Kruse, who will participate in the election panel, said the discussions aim to serve community members in an email to the Prince.

Forward Fest was designed to focus attention on the in service part of the Universitys mission, and the webinar on the 2020 election is designed to be a service to students, faculty, alumni and others who have questions and concerns about this pivotal moment, Kruse wrote.

Kruse added that hell be providing context about a few key issues people have been talking about these past few months voting rights and voter suppression, possible reforms to the Electoral College, Congress, and the Supreme Court, and generally how this election compares to past ones.

Professor of computer science Andrew Appel 81, another faculty member on the election panel, plans to focus on the technology of how we vote, and how its inaccuracy, insecurity, and outright hackability can alter the outcome of elections, he wrote in an email to the Prince.

[M]ost (but not all) jurisdictions vote on technology that is accurate and is securable though not for the reasons you might think and now we should pay attention to the audits and procedures that would make our voting systems truly secure and trustworthy, Appel added.

Forward Fest is part of A Year of Forward Thinking, the Universitys recently-announced community engagement campaign.

Forward Fest events are free and open to the public. All programming will be livestreamed on the Forward Fest website and the Universitys YouTube channel.

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U. Forward Fest to engage community on research and development for the future - The Daily Princetonian

LED Lighting for Horticulture Application Market Report 2020: Acute Analysis of Global Demand and Supply 2026 with Major Key Player: Cree, LumiGrow,…

Due to the pandemic, we have included a special section on the Impact of COVID 19 on the LED Lighting for Horticulture ApplicationMarket which would mention How the Covid-19 is Affecting the Industry, Market Trends and Potential Opportunities in the COVID-19 Landscape, Key Regions and Proposal for LED Lighting for Horticulture Application Market Players to battle Covid-19 Impact.

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LED Lighting for Horticulture Application Market Report 2020: Acute Analysis of Global Demand and Supply 2026 with Major Key Player: Cree, LumiGrow,...