College Physics
College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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Chapter 29, Problem 43P

(a)

To determine

The product of the reaction.

(b)

To determine

The Q-value of the reaction.

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Calculate AG. the equilibrium constant at 350 °C for the reaction between Cl₂ and Br₂ to obtain rxn, BrCl. Use the following data. Cl2(g) + Br2(g) = 2BrCl(g) Cl - Cl Br Br Br - Cl Do/ev 2.51 (¹) 2.00 (¹) 2.27 (¹) r/pm 199 228 217 v/cm-¹ 560 325 444 Use the value of the constant obtained to calculate the concentrations of the species at equilibrium if 2.65 millimoles of Cl₂, 3.1 millimoles of Br2, and 1.44 millimoles of BrCl are introduced into an empty container of 185 cm³, maintaining the temperature at 350 °C
Determine the emf and AG of the cell reaction at 298 K for the given cell. Mg(s) | Mg2+ (0.01M) || Ag*(0.0001M) | Ag(s) 2+ Given: [EM/Mg =-2.37V, + E° =+0.80V] Ag /Ag
There are three atoms: A, B, and C. The graphs of potential energy for the pairs AB and BC are shown below (the scale of the axes is the same for both graphs). Which of the following statements is correct? If there is more than one, you must select all of them. r TH U (AB) The AB bond has a smaller magnitude of binding energy than the BC bond. Breaking the AB bond releases more energy than breaking the BC bond. The reaction A + BC -> AB + C is exothermic. U (BC) None of the statements is correct. 1

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