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A new third edition of John R. Taylor's best-selling text that features Bayesian statistics and updated new chapter-ending problems throughout.
Contains both the full statements and the complete solutions to every one of the more than 800 problems in Molecular Thermodynamics.
This vibrant book takes the reader on an exciting journey through much of physical sciences by explaining the wide ranging influence of a single equation, the Boltzmann factor.
Introduction to Quantum Mechanics covers quantum mechanics from a time-dependent perspective in a unified way from beginning to end. Intended for upper-level undergraduate and graduate courses this text will change the way people think about and teach quantum mechanics in chemistry and physics departments.
Foundations of Inorganic Chemistry by Gary Wulfsberg is our newest entry into the field of Inorganic Chemistry textbooks, designed uniquely for a one-semester stand alone course, or to be used in the first semester of a full year inorganic sequence.
The need for error analysis is captured in the book's arresting cover shot - of the 1895 Paris train disaster (also available as a wall poster). The early chapters teach elementary techniques of error propagation and statistical analysis to enable students to produce successful lab reports.
Statistical Mechanics is the extended version of McQuarrie's earlier text - Statistical Thermodynamics [USB 1984]. Statistical Mechanics [previously published by Longman Education] is a renowned accessible introduction to the subject.
AGeneral Relativity Workbook is atextbook intended to support a one-semester upper division undergraduatecourse on general relativity.
This book lays out the foundations of quantum mechanics through the physics of intrinsic spin, and is written to serve as the primary textbook for an upper-division course in quantum mechanics.
About the book An introduction to quantum mechanics and its applications with a truly innovative approach. From single-photon interference to the application of quantum mechanics to nuclear physics, Townsend's book provides a coherent picture of how the world works and how quantum mechanics can help to explain it.
This Fourth Edition of McQuarrie's classic text offers a thorough revision and a quantum-leap forward from the previous edition. Taking an atoms first approach, it promises to be another ground-breaking text in the tradition of McQuarrie's many previous works. This outstanding new text, available in a soft cover edition, offers professors a fresh choice and outstanding value.
Starting with just a few basic principles of probabilityand the distribution of energy, this book takes students (and faculty!) on anadventure into the inner workings of the molecular world like no other.
The biggest change in the years since the first edition is the proliferation of computational chemistry programs that calculate molecular properties. McQuarrie presents step-by-step SCF calculations of a helium atom and a hydrogen molecule, in addition to including the Hartree-Fock method and post-Hartree-Fock methods.
Designed for use in inorganic, physical, and quantum chemistry courses, this textbook includes numerous questions and problems at the end of each chapter and an Appendix with answers to most of the problems.
Evolved from McQuarrie and Simon's best-selling Physical Chemistry: A Molecular Approach, this text follows a similar path by first covering the principles of quantum mechanics before engaging those ideas in the subsequent development of thermodynamics.
This introductory laboratorymanual will help students design a sampling plan, understand theinstrumental and analytical techniques used for the assessment ofwater quality, learn how to interpret data and use statisticalanalyses, and apply scientific reasoning to an environmentalproblem.
Thoroughly revised and expanded throughout, the new edition is a graduate-level text and reference book on gaseous nebulae, nova and supernova remnants. Much of the new data and new images are from the Hubble Space Telescope with two wholly new chapters being added along with other new features.
Comprised of more than 2000 problems and 700 worked examples that detail every single step, this text is exceptionally well adapted for self study as well as for course use.
This modern textbook makes explicit the many connections between physical organic chemistry and critical fields such as organometallic chemistry, materials chemistry, bioorganic chemistry, and biochemistry.
The Solutions Manual provides answers to every third problem. Comprised of more than 2000 problems and 700 worked examples that detail every single step, this text is exceptionally well adapted for self study as well as for course use.
Interpretation of Mass Spectra, say the authors, "aims at correlating ion dissociation mechanisms on a much broader scale, with emphasis on basic attributes such as ionization energies, proton affinities, and bond dissociation energies".
This remarkable book charts the step-by-step evolution ofvertebrate blood coagulation. Intended for readers with a background inbiological science, it is specifically targeted for those in the field ofmolecular evolution and researchers in the area of blood clotting.
ClassicalMechanics is intended for students who have studied some mechanics in anintroductory physics course. With unusual clarity, the book covers most of the topics normally found in books at this level.
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