CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE
CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE
5th Edition
ISBN: 9780393628173
Author: Gilbert
Publisher: NORTON
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Chapter 10, Problem 10.28QP
Interpretation Introduction

Interpretation: The reason corresponding to the fact that the boiling point of CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE, Chapter 10, Problem 10.28QP , additional homework tip  1 is lower than that of iodine monochloride, CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE, Chapter 10, Problem 10.28QP , additional homework tip  2 even though they have nearly same molar mass are to be stated.

Concept introduction: The intermolecular interaction between non-polar or least polar molecules is known as dispersion force. This is also known as, London force in honor of the Fritz London’s great work on it. Boiling point of a compound is defined as the temperature at which the compounds start boiling. At this temperature the bonds present within the molecules start weakens and hence, liquid converts to the gaseous form.

To determine: The reason corresponding to the fact that the boiling point of CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE, Chapter 10, Problem 10.28QP , additional homework tip  3 is lower than that of iodine monochloride, CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE, Chapter 10, Problem 10.28QP , additional homework tip  4 even though they have nearly same molar mass.

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Using reaction free energy to predict equilibrium composition Consider the following equilibrium: 2NO(g) +Cl₂ (g) = 2NOC1 (g) AGº = -41. kJ Now suppose a reaction vessel is filled with 8.90 atm of chlorine (C12) and 5.71 atm of nitrosyl chloride (NOC1) at 1075. °C. Answer the following questions about this system: rise Under these conditions, will the pressure of NOCI tend to rise or fall? x10 fall Is it possible to reverse this tendency by adding NO? In other words, if you said the pressure of NOCI will tend to rise, can that be changed to a tendency to fall by adding NO? Similarly, if you said the pressure of NOCI will tend to fall, can that be changed to a tendency to rise by adding NO? yes no If you said the tendency can be reversed in the second question, calculate the minimum pressure of NO needed to reverse it. Round your answer to 2 significant digits. atm ☑ 18 Ar
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Chapter 10 Solutions

CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE

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