Introduction to Quantum Mechanics

  • Introduction to Quantum Mechanics: Schrödinger Equation and Path Integral Second Edition
    By Harald J W Müller-Kirsten

    This solution is the Green's function or kernel K(a,a'; fl), whose calculation for specific cases is a topic of Chapter 7 (see Eq. (7.55)). (A) = Tr(p4) = (5.52) 5.5 Examples Example 5.1: Baker-Campbell—Hausdorff formula Verify that if ...

  • Introduction to Quantum Mechanics: Schrödinger Equation and Path Integral
    By Harald J W Müller-Kirsten

    This solution is the Green's function or kernel K(a, a '; 6), whose calculation for specific cases is a topic of Chapter 7 (see Eq. (7.55)). Example 5.1: Baker–Campbell–Hausdorff formula Verify that if A and B are operators, ...

  • Introduction to Quantum Mechanics
    By David J. Griffiths, Darrell F. Schroeter

    "The purpose of this book is to teach you how to do quantum mechanics."--Préface.

  • Introduction to Quantum Mechanics
    By David Jeffery Griffiths, Ishwar Singh Tyagi

    Introduction to Quantum Mechanics

  • Introduction to Quantum Mechanics: in Chemistry, Materials Science, and Biology
    By Sy M. Blinder

    Laguerre polynomials are defined by Rodrigues' formula: We reqire a generalization known as associated Laguerre polynomials, defined by Figure 8.1 ▷ Coordinates for helium atom Schrödinger equation. r. Supplement 7A.

  • Introduction to Quantum Mechanics
    By David J. Griffiths, Darrell F. Schroeter

    (d) Verify that your result satisfies Bell's inequality, Equation 12.12. ... 16 This problem is based on George Greenstein and Arthur G. Zajonc, The Quantum Challenge, 2nd edn., Jones and Bartlett, Sudbury, MA (2006), Section 5.3.

  • Introduction to Quantum Mechanics
    By S.M. Blinder

    Beginning with a solid introduction to the key principles underpinning quantum mechanics in Part 1, the book goes on to expand upon these in Part 2, where fundamental concepts such as molecular structure and chemical bonding are discussed.

  • Introduction to Quantum Mechanics: With Applications to Chemistry
    By Linus Pauling, Edgar Bright Wilson

    When this classic text was first published in 1935, it fulfilled the goal of its authors "to produce a textbook of practical quantum mechanics for the chemist, the experimental physicist, and the beginning student of theoretical physics.

  • Introduction to Quantum Mechanics
    By David J. Griffiths

    This bestselling textbook teaches students how to do quantum mechanics and provides an insightful discussion of what it actually means.

  • Introduction to Quantum Mechanics: Schrödinger Equation and Path Integral
    By Harald J. W. Müller-Kirsten

    Different from traditional texts and using a systematic perturbation method, the solution of Schrödinger equations includes also those with anharmonic oscillator potentials, periodic potentials, screened Coulomb potentials and a typical ...

  • Introduction to Quantum Mechanics
    By A. C. Phillips

    Introduction to Quantum Mechanics is an introduction to the power and elegance of quantum mechanics. Assuming little in the way of prior knowledge, quantum concepts are carefully and precisely presented,...

  • Introduction to Quantum Mechanics
    By Anthony C. Phillips

    Introduction to Quantum Mechanics

  • Introduction to Quantum Mechanics
    By Henrik Smith

    The book is an introduction to quantum mechanics at a level suitable for the second year in a European university (junior or senior year in an American college).

  • Introduction to Quantum Mechanics
    By David J. Tannor

    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.

  • Introduction to Quantum Mechanics
    By A. C. Phillips

    Undergraduates taking a first course on quantum mechanics will find this text an invaluable introduction to the field and help prepare them for more advanced courses.

  • Introduction to Quantum Mechanics
    By David Jeffery Griffiths

    本书包含了大学量子力学最主要的内容。叙述非常“物理”,强调实验基础和基本概念,改变了量子力学难于理解、难于接受的教学状况。