Chemistry: An Atoms-Focused Approach
Chemistry: An Atoms-Focused Approach
14th Edition
ISBN: 9780393912340
Author: Thomas R. Gilbert, Rein V. Kirss, Natalie Foster
Publisher: W. W. Norton & Company
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Chapter 20, Problem 20.64QA
Interpretation Introduction

To Find:

a) The carbon -skeleton structure of linolenic acid.

b) What type of substitution occurs (cis or trans) around the double in the linolenic acid?

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Do not apply the calculations, based on the approximation of the stationary state, to make them perform correctly. Basta discard the 3 responses that you encounter that are obviously erroneous if you apply the formula to determine the speed of a reaction. For the decomposition reaction of N2O5(g): 2 N2O5(g) · 4 NO2(g) + O2(g), the following mechanism has been proposed: N2O5 -> NO2 + NO3_(K1) NO2 + NO3 →> N2O5 (k-1) → NO2 + NO3 → NO2 + O2 + NO (K2) NO + N2O5 → NO2 + NO2 + NO2 (K3) Give the expression for the acceptable rate. (A). d[N₂O] dt = -1 2k,k₂[N205] k₁+k₂ d[N₂O5] (B). dt =-k₁[N₂O₂] + k₁[NO2][NO3] - k₂[NO2]³ (C). d[N₂O] dt =-k₁[N₂O] + k₁[N205] - K3 [NO] [N205] (D). d[N2O5] =-k₁[NO] - K3[NO] [N₂05] dt
A 0.10 M solution of acetic acid (CH3COOH, Ka = 1.8 x 10^-5) is titrated with a 0.0250 M solution of magnesium hydroxide (Mg(OH)2). If 10.0 mL of the acid solution is titrated with 20.0 mL of the base solution, what is the pH of the resulting solution?
For the decomposition reaction of N2O5(g): 2 N2O5(g) → 4 NO2(g) + O2(g), the following mechanism has been proposed: N2O5 NO2 + NO3 (K1) | NO2 + NO3 → N2O5 (k-1) | NO2 + NO3 NO2 + O2 + NO (k2) | NO + N2O51 NO2 + NO2 + NO2 (K3) → Give the expression for the acceptable rate. → → (A). d[N205] dt == 2k,k₂[N₂O₂] k₁+k₁₂ (B). d[N2O5] =-k₁[N₂O] + k₁[NO₂] [NO3] - k₂[NO₂]³ dt (C). d[N2O5] =-k₁[N₂O] + k [NO] - k₂[NO] [NO] d[N2O5] (D). = dt = -k₁[N2O5] - k¸[NO][N₂05] dt Do not apply the calculations, based on the approximation of the stationary state, to make them perform correctly. Basta discard the 3 responses that you encounter that are obviously erroneous if you apply the formula to determine the speed of a reaction.

Chapter 20 Solutions

Chemistry: An Atoms-Focused Approach

Ch. 20 - Prob. 20.12QACh. 20 - Prob. 20.13QACh. 20 - Prob. 20.14QACh. 20 - Prob. 20.15QACh. 20 - Prob. 20.16QACh. 20 - Prob. 20.17QACh. 20 - Prob. 20.18QACh. 20 - Prob. 20.19QACh. 20 - Prob. 20.20QACh. 20 - Prob. 20.21QACh. 20 - Prob. 20.22QACh. 20 - Prob. 20.23QACh. 20 - Prob. 20.24QACh. 20 - Prob. 20.25QACh. 20 - Prob. 20.26QACh. 20 - Prob. 20.27QACh. 20 - Prob. 20.28QACh. 20 - Prob. 20.29QACh. 20 - Prob. 20.30QACh. 20 - Prob. 20.31QACh. 20 - Prob. 20.32QACh. 20 - Prob. 20.33QACh. 20 - Prob. 20.34QACh. 20 - Prob. 20.35QACh. 20 - Prob. 20.36QACh. 20 - Prob. 20.37QACh. 20 - Prob. 20.38QACh. 20 - Prob. 20.39QACh. 20 - Prob. 20.40QACh. 20 - Prob. 20.41QACh. 20 - Prob. 20.42QACh. 20 - Prob. 20.43QACh. 20 - Prob. 20.44QACh. 20 - Prob. 20.45QACh. 20 - Prob. 20.46QACh. 20 - Prob. 20.47QACh. 20 - Prob. 20.48QACh. 20 - Prob. 20.49QACh. 20 - Prob. 20.50QACh. 20 - Prob. 20.51QACh. 20 - Prob. 20.52QACh. 20 - Prob. 20.53QACh. 20 - Prob. 20.54QACh. 20 - Prob. 20.55QACh. 20 - Prob. 20.56QACh. 20 - Prob. 20.57QACh. 20 - Prob. 20.58QACh. 20 - Prob. 20.59QACh. 20 - Prob. 20.60QACh. 20 - Prob. 20.61QACh. 20 - Prob. 20.62QACh. 20 - Prob. 20.63QACh. 20 - Prob. 20.64QACh. 20 - Prob. 20.65QACh. 20 - Prob. 20.66QACh. 20 - Prob. 20.67QACh. 20 - Prob. 20.68QACh. 20 - Prob. 20.69QACh. 20 - Prob. 20.70QACh. 20 - Prob. 20.71QACh. 20 - Prob. 20.72QACh. 20 - Prob. 20.73QACh. 20 - Prob. 20.74QACh. 20 - Prob. 20.75QACh. 20 - Prob. 20.76QACh. 20 - Prob. 20.77QACh. 20 - Prob. 20.78QACh. 20 - Prob. 20.79QACh. 20 - Prob. 20.80QACh. 20 - Prob. 20.81QACh. 20 - Prob. 20.82QACh. 20 - Prob. 20.83QACh. 20 - Prob. 20.84QA
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