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  • Plasma Science and Technology : Lectures in Physics, Chemistry, Biology, and Engineering
    Plasma Science and Technology : Lectures in Physics, Chemistry, Biology, and Engineering

    Plasma Science and Technology An accessible introduction to the fundamentals of plasma science and its applications In Plasma Science and Technology: Lectures in Physics, Chemistry, Biology, and Engineering, distinguished researcher Dr. Alexander Fridman delivers a comprehensive introduction to plasma technology, including fulsome descriptions of the fundamentals of plasmas and discharges.The author discusses a wide variety of practical applications of the technology to medicine, energy, catalysis, coatings, and more, emphasizing engineering and science fundamentals.Offering readers illuminating problems and concept questions to support understanding and self-study, the book also details organic and inorganic applications of plasma technologies, demonstrating its use in nature, in the lab, and in both novel and well-known applications.Readers will also find: A thorough introduction to the kinetics of excited atoms and molecules Comprehensive explorations of non-equilibrium atmospheric pressure cold discharges Practical discussions of plasma processing in microelectronics and other micro-technologies Expert treatments of plasma in environmental control technologies, including the cleaning of air, exhaust gases, water, and soil Perfect for students of chemical engineering, physics, and chemistry, Plasma Science and Technology will also benefit professionals working in these fields who seek a contemporary refresher in the fundamentals of plasma science and its applications.

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  • Physics in Biology and Medicine
    Physics in Biology and Medicine

    **Selected for Doody’s Core Titles® 2024 in Medical Physics** Physics in Biology and Medicine, Sixth Edition includes new, revised material, and corresponding exercises on many exciting developments in the field.New sections cover biomechanics, biotribology, frictional properties of biological materials, 3-D printing and its use in medicine, new materials in dentistry, microfluidics, bioelectronic medicine, microsensors, and microscopy.This revised edition delivers helpful and engaging additions to the role and importance of physics in biology and medicine, including new coverage on metamaterials, metabolism, and environmental science.It is ideal for courses in biophysics, medical physics, and related subjects.

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  • 'Unicellular species'

    Unicellular species are organisms that consist of only a single cell. These organisms carry out all of the necessary functions for life within this single cell, including obtaining nutrients, reproducing, and responding to their environment. Examples of unicellular species include bacteria, archaea, and protists. Despite being simple in structure, unicellular species can be highly diverse and have adapted to thrive in a wide range of environments.

  • Unicellular species

    Unicellular species are organisms that consist of a single cell, as opposed to multicellular organisms that are made up of multiple cells. These single-celled organisms can carry out all the necessary functions for life within that one cell, including obtaining nutrients, reproducing, and responding to their environment. Examples of unicellular species include bacteria, archaea, protists, and some types of algae. Despite their simple structure, unicellular species play important roles in various ecosystems and can have significant impacts on the environment.

  • Are plants unicellular or multicellular?

    Plants are multicellular organisms.

  • What are eukaryotic unicellular organisms?

    Eukaryotic unicellular organisms are single-celled organisms that have a true nucleus enclosed within a membrane. They belong to the domain Eukarya and can be found in various environments such as water, soil, and even inside other organisms. Examples of eukaryotic unicellular organisms include protists like amoebas, paramecia, and algae. These organisms can carry out all the necessary functions for life within a single cell.

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  • What are unicellular and multicellular organisms?

    Unicellular organisms are living things that are made up of only one cell. This means that all of their life processes, such as obtaining nutrients, reproducing, and responding to their environment, occur within a single cell. Examples of unicellular organisms include bacteria, protozoa, and some types of algae. On the other hand, multicellular organisms are made up of more than one cell. These cells are specialized to perform different functions within the organism, such as muscle cells for movement, nerve cells for communication, and skin cells for protection. Multicellular organisms include plants, animals, and fungi. The cells in multicellular organisms work together to support the overall function and survival of the organism.

  • What were the non-organic first living organisms - unicellular organisms, if we consider paramecia and amoebas as the first unicellular organisms?

    The non-organic first living organisms were likely simple organic molecules that formed through chemical reactions in the early Earth's environment. These molecules eventually combined to form the first unicellular organisms, such as paramecia and amoebas. These unicellular organisms were likely the result of a gradual process of chemical evolution, where simple organic molecules organized themselves into more complex structures capable of exhibiting life-like properties. This process eventually led to the emergence of the first living organisms on Earth.

  • What is the best natural science: Math, Physics, Biology, Chemistry, or Computer Science?

    It is subjective to determine the "best" natural science as each field has its own unique contributions to our understanding of the natural world. Math provides the foundation for understanding and solving problems in all the other sciences. Physics explores the fundamental laws of nature and the behavior of matter and energy. Biology studies living organisms and their interactions with the environment. Chemistry focuses on the composition, structure, and properties of matter. Computer Science deals with the theory and practice of computation and information. Each of these sciences is valuable in its own right and contributes to our understanding of the world around us.

  • What are the differences between unicellular and multicellular organisms?

    Unicellular organisms are made up of a single cell, while multicellular organisms are made up of multiple cells. Unicellular organisms carry out all life processes within a single cell, while multicellular organisms have specialized cells that perform specific functions. Multicellular organisms have a higher level of organization and complexity compared to unicellular organisms. Additionally, multicellular organisms have a division of labor among cells, allowing for more efficient functioning and larger size.

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