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Today, the White House will hold a Summit on Biotechnology and Biomanufacturing. The Summit is chaired by National Security Advisor Jake Sullivan, Director of the National Economic Council Brian Deese, and Director of the Office of Science and Technology Dr. Alondra Nelson and they will be joined by the Secretary of Health and Human Services Xavier Becerra, the Secretary of Energy. Jennifer Granholm, Deputy Secretary of Defense Kathleen Hicks, Deputy Secretary of Agriculture Jewel Bronaugh, Under Secretary of Commerce for Standards and Technology and Director of the National Institute of Standards and Technology Laurie Locascio, and Director of the National Science Foundation Sethuraman Panchanathan, as well. such as Senator Mark Warner and Representative Deborah Ross. Together, they will take the following key steps – with more than $2 billion in funding – to advance President Biden’s Executive Order to launch a National Biotechnology and Biomanufacturing Initiative to lower prices, create good jobs, supply chains strengthen, improve health outcomes, and reduce carbon emissions. US departments and agencies will: Leverage biotechnology for strengthened supply chains. The Department of Health and Human Services will invest $40 million to expand the role of biomanufacturing for active pharmaceutical ingredients (API), antibiotics, and key starting materials needed to produce essential medicines and respond to pandemics. The DoD is launching the Tri-Service Biotechnology for Resilient Supply Chain program with more than $270 million in investment over five years to turn research into products faster and support advanced development of bio-based materials for defense supply chains, such as fuels, fire compounds, polymers and resins, and defense materials. Through the Sustainable Aviation Fuels Grand Challenge, the Department of Energy (DOE) will work with the Department of Transportation and USDA to leverage the estimated 1 billion tons of sustainable biome. donkeys and waste resources in the United States to supply domestic supply chains for fuels, chemicals and materials. Together, these efforts will lower prices for American households, especially during global supply chain turbulence. Expansion of domestic biomanufacturing. The Department of Defense (DoD) will invest $1 billion in domestic bioindustrial manufacturing infrastructure over 5 years to catalyze the creation of a domestic bioindustrial manufacturing base accessible to US innovators. This support will provide incentives for private and public sector partners to expand manufacturing capacity for products important to both commercial and defense supply chains, such as critical chemicals. DoD will invest an additional $200 million to support biosecurity and cybersecurity posture improvements for these facilities. The US Department of Agriculture (USDA) will provide $500 million through a new grant program in the summer of 2022 to support the production of independent, innovative and sustainable American fertilizers to supply American farmers, who can benefit from advances in biotechnology and in biomanufacturing. Fostering innovation across the United States. The National Science Foundation (NSF) recently announced a competition to fund Regional Innovation Engines across the United States. These Engines will support key areas of national interest and promise e economic, including biotechnology and biomanufacturing matters such as manufacturing life-saving medicines, reducing waste and mitigating climate change. In May 2022, USDA announced $32 million in wood innovation and community wood grants, leveraging an additional $93 million in partnership funds to develop new wood products and enable efficient use of US forest resources. DOE also plans to announce new awards of approximately $178 million to advance innovative research efforts in biotechnology, bioproducts and biomaterials. In addition, the US Economic Development Administration’s $1 billion Build Back Better Regional Challenge will invest more than $200 million to strengthen America’s bioeconomy. Investments in New Hampshire, Virginia, North Carolina, Oregon, and Alaska will help expand the bioeconomy by advancing regional biotechnology and biomanufacturing programs. These regional investments will rebuild pharmaceutical supply chains to lower drug costs, catalyze a sustainable marine industry, make better use of wood mass to accelerate the production of affordable housing and restore forest health, production and distribution of regenerative tissues and organs enhance, and develop a strong pipeline of biotech talent, expanding opportunities for underserved and historically excluded communities.

Bring bioproducts to market. The DOE will provide up to $100 million for research and development (R&D) to convert biomass into fuels and chemicals, including R&D for improved production and recycling of bio-based plastics. The DOE will also redouble efforts, adding an additional $60 million, to de-risk the scale-up of biotechnology and biomanufacturing leading to the commercialization of biorefineries that produce chemicals and renewable fuels that significantly reduce greenhouse gas emissions heat from transport, industry and agriculture. USDA’s BioPreferred Program promotes the development and expansion of markets for bio-based products with a catalog of more than 16,000 registered products. The new $10 million Bio-Products Pilot Program will support scale-up activities and studies on the benefits of bio-based products. USA Manufacturing institutes BioFabUSA and BioMADE (launched by the DoD) and NIIMBL (launched by the Department of Commerce (DOC)) will expand their industry partnerships to enable commercialization across regenerative medicine, industrial biomanufacturing, and biopharmaceuticals. For example, NIIMBL will launch a biomanufacturing initiative that will engage the institute’s 200 partners across industry, academia, nonprofit and Federal agencies to mature biomanufacturing technology needed to improve patient access to gene therapies. BioMADE will launch hubs that will support equitable regional development, create jobs across the country, and improve America’s economic competitiveness. BioFabUSA is standing for BioFab Foundry, a first-of-its-kind US facility that integrates engineering, automation and computing with biology. US innovators will have access to BioFab Foundries to preclinical and early stage clinical products can be manufactured. Training the next generation of biotechnologists. The National Institutes of Health (NIH) is expanding the I-Corps program, a biotech entrepreneurship bootcamp. NIIMBL will continue to offer a summer immersion program, the NIIMBL experience, in partnership with the National Society of Black Engineers, which connects underrepresented students with biopharmaceutical companies, and supports pathways to careers in biotechnology. In March 2022, USDA announced $68 million through the Agriculture and Food Research Initiative to train the next generation of research and education professionals. Driving regulatory innovation to increase access to biotechnology products. The Food and Drug Administration is leading efforts to support advanced manufacturing through regulatory science, technical guidance and increased engagement with industry seeking to leverage emerging technologies These efforts will increase medical supply chain resiliency and improve access patients on new medical products. The NIH Medicines Partnership’s Customized Therapy Consortium will support up to six new clinical trials, each focused on a different rare disease, to streamline manufacturing and regulatory frameworks. For agricultural biotechnologies, USDA is building new regulatory processes to promote safe innovation in agriculture and alternative foods, allowing USDA to review more diverse products. Forecasts and standards for the bioeconomy. DOC plans to invest an additional $14 million next year at the National Institute of Standards and Technology for bite research programs technology to develop measurement technologies, standards and data for the US bioeconomy. This support will contribute to the development of capabilities for engineering biology, advance biomanufacturing processes and technologies, and support the use of artificial intelligence to analyze biological data. Investing in biosecurity innovations will reduce risk. DOE’s National Nuclear Security Administration plans to initiate a new $20 million biocertification program that will advance U.S. capabilities to anticipate, assess, detect and mitigate biotechnology and biomanufacturing risks, and integrate securities biosecurity into biotechnology development . Facilitate data sharing to advance the bioeconomy. Through the Cancer Moonshot, NIH is expanding the Cancer Research Data Ecosystem, a national data infrastructure that encourages data sharing to support cancer care for individual patients and enables the discovery of new treatments. USDA is working with NIH to ensure that data on persistent poverty can be integrated with cancer surveillance. NSF recently announced a competition for a new $20 million biosciences data center to increase our understanding of small-scale living systems, which will yield new biotechnology designs for making products in agriculture, medicine and health, and materials.

It sets out a number of recommended standards that public and private sector organizations can follow to boost their cyber security profile. The framework has five main functions, namely identification, protection, detection, response and recovery.

What are the NIST security standards?

Some NIST data security standards include NIST 800-53, which offers security controls and privacy controls in the areas of application security, mobile computing and cloud computing, and supply chain security, NIST 800-53/FI, which establishes standards for implementing FISMA , NIST 800-30, which provides guidelines for conducting …

What are the 5 areas of NIST? 5 Domains of the NIST Security Framework. The five areas in the NIST framework are the pillars that support the creation of a holistic and successful cybersecurity plan. This may interest you : Adair Boroughs, United States Attorney, Justice Department Leads to Participate in National Night Outs in Charleston to Promote Community-Police Partnerships. They include identification, protection, detection, response and recovery.

What are the three parts of the NIST framework?

The Cyber ​​Security Framework consists of three main parts: the Core, the Implementation Layers, and the Profiles.

What are the NIST categories?

Categories: Identity Management, Authentication and Access Control, Awareness & Training, Data Security, Information Protection & Procedures, Maintenance, Defense Technology. Read also : Managing organization – Individual artist scholarships.

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Is NIST a reliable source?

Because UTC(NIST) is a national measurement standard and a national resource important to many users and industries, its reliability is extremely important. To see also : Welch high-tech bakeries looking for the next generation of bakery.

Is NIST a national laboratory?

What is NIST website?

National Institute of Standards and Technology | USAGov. Official websites use .gov. A .gov website belongs to an official government organization in the United States. Secure .gov websites use HTTPS.

Is NIST a private or government?

The National Institute of Standards and Technology (NIST) was founded in 1901 and is now part of the US Department of Commerce.

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What is the most common measuring system in the world?

Most countries use the metric system, which uses units of measurement such as meters and grams and adds prefixes such as kilo-, milli- and centi- to count orders of magnitude.

What is the best measurement system? The metric system is better than the imperial system so it makes sense to complete the conversion to metric as soon as possible. The metric system is a consistent and coherent system of units.

What is the most common measuring system?

This page explains the two most common measurement systems: the metric system, which is widely used in Europe and most of the world, and the Imperial or British system, a form of which is now used primarily in the US.

What is the most common system of measurement in the US?

Of these, the avoirdupois weight is the most commonly used system in the US, although the Troy weight is still used to weigh precious metals. Apothecaries’ weights once used by pharmacies have been replaced by metric measurements.

What are the common systems of measurement?

The measurement systems in use include the International System of Units or SI (the modern form of the metric system), the British imperial system, and the United States customary system.

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What are the 3 system of measurement?

The three standard systems of measurement are the International System of Units (SI) units, the British Imperial System, and the US Custom System.

What are the 2 measurement systems? The English and metric systems are the two systems used to specify units of measurement.

What are the different types of measurement?

You can see that there are four different types of measurement scales (nominal, ordinal, interval and ratio).

What are the 3 types of measurement in education?

In general, there are three types of measurement: (i) Direct; (ii) Indirect; and Relationship. Directly; To find the length and width of a table a direct measurement is involved and this is always accurate if the tool is valid.

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