Products related to Chemistry:
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Chemistry Data Book
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Quinoa : Chemistry and Technology
Quinoa: Chemistry and Technology provides an overview of the chemistry, processing, and technology of quinoa grain and its components, covering the development of quinoa grain in different parts of the world for food production, including its structure, molecular and chemical composition, milling properties, processing characteristics, and food products.Increasing demand for plant-based, gluten-free foods that are nutritious, healthy, sustainable, and affordable has caused quinoa cultivation to expand to over 70 countries due to its attractive nutritional and food security properties.This practical resource is designed to support the development of quinoa in different sectors, such as the food industry.
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Fuel Additives : Chemistry and Technology
FUEL ADDITIVES Explore a complete and insightful review of fuel additives In Fuel Additives: Chemistry and Technology, petroleum industry chemist R.D. Tack delivers a comprehensive and practical exploration of various types of fuel additives, the problems they’re meant to address, what they do, their chemistries and preparations, and a discussion of how they work.The book introduces and summarizes refinery operations to an extent that discussions of fuels in the following chapters become easier to understand.Then follow detailed descriptions of problems that occur for reasons of the ways in which liquid petroleum fuels are transported, stored, and used.In these discussions, their applications to jet fuel, heating oils, gasoline, diesel fuels, and bunker fuels are covered.Fuel Additives: Chemistry and Technology also includes: A thorough overview of fuels, including discussions of refinery operations and processes and the application of fuel additivesAids to the transportation and storage of liquid petroleum fuels: practical discussions of stabilizers against oxidative degradation, drag reducers, static dissipators, anti-foamants, demulsifiers, de-icers, and biocidesComprehensive explorations of fuel detergents, including their chemistries and proposals to their mechanisms of actionIn-depth examinations of cold flow improvers, with detailed descriptions of the waxing problems that they solveCombustion improvers that improve the efficiencies of fuel combustion in engines, burners, and particulate filters—while also reducing emissionsAdditives that protect metal surfaces against wear, by providing lubricity, and corrosion Perfect for chemists working in the petroleum industry, Fuel Additives: Chemistry and Technology will also earn a place in the libraries of professionals working in related areas and seeking a quick understanding of topics such as oxidative stability, corrosion, or wax crystallization since 1974.
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Beverages : technology, chemistry and microbiology
Beverages provides thorough and integrated coverage in a user-friendly way, and is the second of an important series dealing with major food product groups.It is an invaluable learning and teaching aid and is also of great use to the food industry and regulatory personnel.
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Why is organic chemistry called organic chemistry?
Organic chemistry is called so because it was originally believed that compounds found in living organisms could only be produced by living organisms, and were therefore called "organic" compounds. This belief was later disproven, but the name stuck. Organic chemistry is the study of carbon-containing compounds, which are abundant in living organisms, and it focuses on the structure, properties, and reactions of these compounds.
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Why chemistry?
Chemistry is a fundamental science that helps us understand the world around us at a molecular level. It explains the composition, structure, properties, and changes of matter, which is essential for advancements in fields such as medicine, materials science, and environmental science. By studying chemistry, we can develop new technologies, improve existing processes, and address global challenges such as climate change and sustainable energy. Overall, chemistry plays a crucial role in shaping our understanding of the natural world and driving innovation for a better future.
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What is the difference between technical chemistry and chemistry?
Technical chemistry is a branch of chemistry that focuses on the practical application of chemical principles in various industries such as manufacturing, pharmaceuticals, and environmental science. It involves the development of new materials, processes, and products. On the other hand, chemistry is a broader field that encompasses the study of matter, its properties, composition, and interactions. It includes various sub-disciplines such as organic chemistry, inorganic chemistry, physical chemistry, and analytical chemistry. While technical chemistry is more focused on the practical aspects of chemistry, chemistry as a whole is a more theoretical and fundamental science.
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What is the transition from chemistry to food chemistry?
The transition from chemistry to food chemistry involves applying the principles and concepts of chemistry to the study of food and its components. This includes understanding the chemical composition of food, the reactions that occur during cooking and processing, and the impact of different chemical compounds on flavor, texture, and nutritional value. Food chemists also focus on food safety, preservation, and the development of new food products using their knowledge of chemistry. Overall, the transition involves a shift in focus from general chemistry to the specific application of chemistry in the context of food.
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Data Analytics in Marketing, Entrepreneurship, and Innovation
Innovation based in data analytics is a contemporary approach to developing empirically supported advances that encourage entrepreneurial activity inspired by novel marketing inferences.Data Analytics in Marketing, Entrepreneurship, and Innovation covers techniques, processes, models, tools, and practices for creating business opportunities through data analytics.It features case studies that provide realistic examples of applications.This multifaceted examination of data analytics looks at: Business analyticsApplying predictive analytics Using discrete choice analysis for decision-making Marketing and customer analyticsDeveloping new productsTechnopreneurshipDisruptive versus incremental innovationThe book gives researchers and practitioners insight into how data analytics is used in the areas of innovation, entrepreneurship, and marketing.Innovation analytics helps identify opportunities to develop new products and services, and improve existing methods of product manufacturing and service delivery.Entrepreneurial analytics facilitates the transformation of innovative ideas into strategy and helps entrepreneurs make critical decisions based on data-driven techniques.Marketing analytics is used in collecting, managing, assessing, and analyzing marketing data to predict trends, investigate customer preferences, and launch campaigns.
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Flow and Microreactor Technology in Medicinal Chemistry
Learn to master a powerful technology to enable a faster drug discovery workflow The ultimate dream for medicinal chemists is the ability to synthesize new drug-like compounds with the push of a button.The key to synthesizing chemical compounds more quickly and accurately lies in computer-controlled technologies that can be optimized by machine learning.Recent developments in computer-controlled automated syntheses that rely on miniature flow reactors—with integrated analysis of the resulting products—provide a workable technology for synthesizing new chemical substances very quickly and with minimal effort.In Flow and Microreactor Technology in Medicinal Chemistry, early adopters of this ground-breaking technology describe its current and potential uses in medicinal chemistry.Based on successful examples of the use of flow and microreactor synthesis for drug-like compounds, the book introduces current as well as emerging uses for automated synthesis in a drug discovery context.Flow and Microreactor Technology in Medicinal Chemistry readers will also find: Numerous case studies that address the most common applications of this technology in the day-to-day work of medicinal chemistsHow to integrate flow synthesis with drug discoveryHow to perform enantioselective reactions under continuous flow conditions Flow and Microreactor Technology in Medicinal Chemistry is a valuable practical reference for medicinal chemists, organic chemists, and natural products chemists, whether they are working in academia or in the pharmaceutical industry.
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Environmental Chemistry : New Techniques and Data
This title includes a number of Open Access chapters. Environmental chemistry is an interdisciplinary field of study that involves the science of ecology as well as chemistry.Environmental chemistry covers the basic chemistry and biochemistry that occur naturally in the world around us.It focuses on the air, water, and land. Environmental science normally begins by determining the chemical reactions that are occurring in the environment when all systems are in balance and then goes on the discover how chemistry has changed when there is an imbalance caused by stress or pollution.The field is constantly changing, with new discoveries being made all the time.The availability of new and more sensitive instruments in analytical science is enabling the detection of smaller and smaller concentrations of pollutants in the environment.This new volume deals with a host of important topics in environmental chemistry, such as pesticide-related illnesses in humans and plants, the effects of litterfall in the soil of tropical forests, toxicants in various bodies of water, and much more.
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Chemistry
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Chemistry or schematics?
It ultimately depends on the context and the specific goal. Chemistry focuses on the study of matter, its properties, composition, and interactions, while schematics involve diagrams or blueprints that illustrate the components and connections of a system. If the goal is to understand the fundamental principles of matter and its transformations, chemistry would be more relevant. On the other hand, if the goal is to design or analyze a system's structure and functionality, schematics would be more appropriate. Both fields have their own importance and can be complementary in various applications.
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Chemistry or schemistry?
Chemistry is a legitimate scientific field that studies the composition, structure, properties, and reactions of matter. On the other hand, "schemistry" is not a recognized term and may be used colloquially to refer to deceptive or manipulative behavior. It is important to distinguish between the two and recognize the value of chemistry as a scientific discipline.
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Is chemistry correct?
Chemistry is a scientific discipline that seeks to understand the properties and behavior of matter. It is based on empirical evidence and rigorous experimentation, and its theories and principles are constantly tested and refined. While no scientific discipline is infallible, chemistry has provided a wealth of knowledge and practical applications that have greatly benefited society. Therefore, within the bounds of current knowledge and understanding, chemistry is considered to be a correct and reliable scientific field.
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Can I study chemistry as an industrial master of chemistry?
Yes, you can study chemistry as an industrial master of chemistry. Industrial chemistry is a specialization within the field of chemistry that focuses on the practical applications of chemistry in industrial settings. By pursuing a master's degree in industrial chemistry, you will gain specialized knowledge and skills that are relevant to working in industries such as pharmaceuticals, petrochemicals, and materials manufacturing. This program typically includes coursework in areas such as chemical engineering, process optimization, and industrial safety, preparing you for a career in industrial research and development or production.
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