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CHEM 5 (13)

01- Basic arithmetic, Using Functions, Plotting Functions of one variable.pdf Premium

3 Pages
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School
University of California - Irvine
Department
Chemistry
Course
CHEM 5
Professor
Douglas Tobias
Semester
Fall

Description
Total Score 30/30 Name Section No points deduced this time Homework Assignment 1 #1: Calculating Exponents H2^3L^4 4096 2^H3^4L 2417851639229258349412352 Problem 1 H2ê2L #2: Calculating a complex output exactly and to 10 sig. figs. [email protected] - H3 ê 5L^2L ê [email protected]^3L + [email protected], 10D 0.01101107698 Problem 2 H5ê5L #3: London’s quantum-mechanical treatment of the interaction between two induced dipoles. Expression for the energy of interactions due to dispersion forces between two identical atoms. Na = Avogadro’s number (units: mol^-1) h = Planck’s constant (units: Js) r = separation (units: m) a = atomic polarizability (units: m^3) u= frequency of oscillation of the dipoles (units: s^-1) Ne atoms: Na = 6.022 * 10^23; h = 6.626 * 10^-34; r = 5.0 * 10^-10; a = 0.396 * 10^-30; u = 5.21 * 10^15; [email protected] * Na * h * u * Ha^2LL ê H4 * Hr^6LLD -15.6481 Ar atoms: Printed by Wolfram Mathematica Student Edition 2 sclugo_Homework 1.nb Na = 6.022 * 10^23; h = 6.626 * 10^-34; r = 5.0 * 10^-10; a = 1.63 * 10^-30; u = 3.39 * 10^15; [email protected] * Na * h * u * Ha^2LL ê H4 * Hr^6LLD -172.508 Kr atoms: Na = 6.022 * 10^23; h = 6.626 * 10^-34; r = 5.0 * 10^-10; a = 2.48 * 10^-30; u = 2.94 * 10^15; [email protected] * Na * h * u * Ha^2LL ê H4 * Hr^6LLD -346.325 Problem 3 H5ê5L #4: The Zimm-Bragg Theory of the helix-coil transit
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