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Solid State Physics

Solid state physics is the branch of physics that is primarily devoted to the study of matter in its solid phase, especially at the atomic level. This prestigious serial presents timely and state-of-the-art reviews pertaining to all aspects of solid state physics.

This prestigious serial presents timely and state-of-the-art reviews pertaining to all aspects of solid state physics.

Solid State

Nuclear Methods

Solid State

PREFACE The application of nuclear methods in solid state physics is far too
large a topic for one volume. We have therefore limited this volume to some
aspects of the defect solid state. One of the main topics is the formation and
motion of ...

Solid State Physics

Solid state physics is the branch of physics that is primarily devoted to the study of matter in its solid phase, especially at the atomic level. This prestigious serial presents timely and state-of-the-art reviews pertaining to all aspects of solid state physics. - Continuation of prestigious serial - Covers cutting edge research and topics in solid state physics

mechanical state, taken to be a deformed state, the amount of deformation is
measured with respect to the reference state. The choice of the reference state is
in general arbitrary and for many problems it is convenient to take it as the ...

The Psychology of Learning and Motivation

The Psychology of Learning and Motivation series publishes empirical and theoretical contributions in cognitive and experimental psychology, ranging from classical and instrumental conditioning to complex learning and problem solving. Volume 57 of the highly regarded Psychology of Learning and Motivation series An essential reference for researchers and academics in cognitive science Relevant to both applied concerns and basic research

When the actual correlation that is built into a series of observations is zero or
even opposite to the correlation suggested by the baserates,
pseudocontingencies override actually existing correlations (Fiedler, 2010a;
Fiedler & Freytag, 2004). Thus ... The category mistake (i.e., meta-cognitive
confusion of aggregate and specific information) that underlies the
pseudocontingency effect has been shown to affect judgments and performance
in such diverse domains as illusory correlations ...

Psychological Development in the Elementary Year

Psychological Development in the Elementary Years is the second in a series of reviews relating current theory and research on psychological development to educational practice. The book discusses the significance and change in psychological sex roles; peer relations; and the development and regulation of aggression in young children. The text also describes the acquisition of self-control; the developmental trends in the learning processes; and the foundations and direction of cognitive development. The theory and research on children's achievement; the family influences on language and cognitive development and the personal and social causation in the school context are also considered. The book further tackles the behavioral perspective of children with learning and behavior problems. Psychologists, psychiatrists, behavioral psychologists, and students taking related courses will find the book invaluable.

What is the likely connection between development differences in metacognitive
knowledge and the increasingly self-conscious regulation of cognitive routines by
older children? ... Suggestive is Egeland's (1974) finding that training impulsive
second graders in visual scanning, a program that devoted much attention to
checking, not only improved the accuracy of their performance on a visual
matching task but also generalized 5 months later to a test of reading
achievement.

International Review of Research in Mental Retardation

International Review of Research in Mental Retardation

In each instance, agencies provide research space, access to clients, and some
labor as part of a consultation contract. Children's Research Center provides
consultant reports, seminars, scheduled staff observations, and access to a
comprehensive library. These relationships have resulted in significant changes
in both the agencies and the research. For the agencies, changes have included
methods of evaluating clients, production design, material flow, client training,
record ...

Progress in International Research on Thermodynamic and Transport Properties

Progress in International Research on Thermodynamic and Transport Properties covers the proceedings of the 1962 Second Symposium by the same title, held at Purdue University and the Thermophysical Properties Research Center. This symposium brings together theoretical and experimental research works on the thermodynamic and transport properties of gases, liquids, and solids. This text is organized into nine parts encompassing 68 chapters that cover topics from thixotropy to molecular orbital calculations. The first three parts review papers on theoretical, experimental, and computational studies of the various aspects of thermodynamic properties. These parts discuss the principles of phase equilibria, throttling, volume heat capacity, steam, volumetric behavior, enthalpy, and density. The subsequent part highlights the theoretical evaluations of transport properties, such as viscosity, diffusion, and conductivity, as well as the transport processes. These topics are followed by surveys of the theories in intermolecular forces and their applications. Other parts consider the measurement of thermal conductivity, viscosity, and radiation. The final parts examine the properties of ionized gases and non-Newtonian fluids. This book will prove useful to mechanical and chemical engineers.

The sixty-eight papers presented here are the result of a serious attempt, on the
part of the Standing Committee on Thermophysical Properties, to gather together
a thoroughly representative body of symposium speakers on recent research in
all the areas of thermal and transport properties, and to document their findings in
a collection which would be the second of a series of triennial “milestones” in
research progress in the field. The sections of this volume are arranged to
correspond ...

Fundamentals of Nuclear Reactor Physics

Fundamentals of Nuclear Reactor Physics offers a one-semester treatment of the essentials of how the fission nuclear reactor works, the various approaches to the design of reactors, and their safe and efficient operation . It provides a clear, general overview of atomic physics from the standpoint of reactor functionality and design, including the sequence of fission reactions and their energy release. It provides in-depth discussion of neutron reactions, including neutron kinetics and the neutron energy spectrum, as well as neutron spatial distribution. It includes ample worked-out examples and over 100 end-of-chapter problems. Engineering students will find this applications-oriented approach, with many worked-out examples, more accessible and more meaningful as they aspire to become future nuclear engineers. A clear, general overview of atomic physics from the standpoint of reactor functionality and design, including the sequence of fission reactions and their energy release In-depth discussion of neutron reactions, including neutron kinetics and the neutron energy spectrum, as well as neutron spatial distribution Ample worked-out examples and over 100 end-of-chapter problems Full Solutions Manual

Fundamentals of Nuclear Reactor Physics offers a one-semester treatment of the essentials of how the fission nuclear reactor works, the various approaches to the design of reactors, and their safe and efficient operation .

Electrodynamics

Lectures on Theoretical Physics

Electrodynamics: Lectures on Theoretical Physics Volume III covers topics related to electrodynamics. The book discusses the fundamentals and basic principles of Maxwell’s electrodynamics; the derivation of the phenomena from the Maxwell equations; and the theory of relativity. The text also describes the electron theory; as well as Maxwell’s theory for moving bodies and other addenda. Physicists and people involved in the study of electrodynamics will find the book invaluable.

The text also describes the electron theory; as well as Maxwell’s theory for moving bodies and other addenda. Physicists and people involved in the study of electrodynamics will find the book invaluable.