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Particle in the box
Particle in the box

... Φ(x) = Asinkx + Bcoskx and k=(8π2mE/h2 )1/2 (k is determined by inserting φ to the Schrödinger equation) ...
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... 1. A positively charged particle is moving horizontally when it enters the region between the plates of a capacitor, as the drawing illustrates. (a) Draw the trajectory that the particle follows in moving through the capacitor. (b) When the particle is within the capacitor, which of the following fo ...
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"Wave Optics" Lecture 21

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“We choose to examine a phenomenon which is impossible

... Midterm Exam Monday, Feb. 14. It will cover lectures 1-10 and some aspects of lectures 11-12. Practice exams: Old exams are linked from the course web page. ...
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Lecture 9: Macroscopic Quantum Model

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Multi-Electron Atoms Helium Schrödinger Equation

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Conservation of Energy Discussion (from 16.3) Here is a brief

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Electrons in Atoms - Duplin County Schools

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powerpoint - University of Illinois Urbana

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Quantum Model Worksheet

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May 1999

... A solid ball of radius r and mass m is rolling without slipping inside a long hollow vertical cylinder of radius R > r under the influence of gravity. Initially the velocity v(t = 0) is in the horizontal direction and there is no spin perpendicular to the wall about the point of contact. (Though lat ...
< 1 ... 1019 1020 1021 1022 1023 1024 1025 1026 1027 ... 1073 >

Theoretical and experimental justification for the Schrödinger equation

The theoretical and experimental justification for the Schrödinger equation motivates the discovery of the Schrödinger equation, the equation that describes the dynamics of nonrelativistic particles. The motivation uses photons, which are relativistic particles with dynamics determined by Maxwell's equations, as an analogue for all types of particles.This article is at a postgraduate level. For a more general introduction to the topic see Introduction to quantum mechanics.
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