Experimental Organic Chemistry: A Miniscale & Microscale Approach (Cengage Learning Laboratory Series for Organic Chemistry)
Experimental Organic Chemistry: A Miniscale & Microscale Approach (Cengage Learning Laboratory Series for Organic Chemistry)
6th Edition
ISBN: 9781305080461
Author: John C. Gilbert, Stephen F. Martin
Publisher: Brooks Cole
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Chapter 5.3, Problem 8E

(a)

Interpretation Introduction

Interpretation: The acid base reaction of aniline with hydrochloric acid needs to be explained.

Concept Introduction:Bronsted and Lowery purposed the Bronsted-Lowry acid-base theory. It states that acid can give H+ ions whereas a base can accept the H+ ion in its solution. Hence this theory is entirely based on the presence of H+ ion in the given substance. It purposed the concept of conjugated acid-base pair. A Bronsted acid gives H+ ion to form conjugated base whereas a Bronsted base accepts H+ ion to form its conjugated acid.

      HA   +   H2O                   A-       +     H3O+Bronsted + Bronsted                Conjugated     Conjugated   Acid           base                         base                 acid

(b)

Interpretation Introduction

Interpretation: The acid, base, conjugated acid and conjugated base in the reaction of aniline with hydrochloric acid needs to be determined.

  Experimental Organic Chemistry: A Miniscale & Microscale Approach (Cengage Learning Laboratory Series for Organic Chemistry), Chapter 5.3, Problem 8E , additional homework tip  1

Concept Introduction:Bronsted and Lowery purposed the Bronsted-Lowry acid-base theory. It states that acid can give H+ ions whereas a base can accept the H+ ion in its solution. Hence this theory is entirely based on the presence of H+ ion in the given substance. It purposed the concept of conjugated acid-base pair. A Bronsted acid gives H+ ion to form conjugated base whereas a Bronsted base accepts H+ ion to form its conjugated acid.

      HA   +   H2O                   A-       +     H3O+Bronsted + Bronsted                Conjugated     Conjugated   Acid           base                         base                 acid

(c)

Interpretation Introduction

Interpretation: The solubility of aniline and its conjugated base in diethyl ether and water needs to be explained.

  Experimental Organic Chemistry: A Miniscale & Microscale Approach (Cengage Learning Laboratory Series for Organic Chemistry), Chapter 5.3, Problem 8E , additional homework tip  2

Concept Introduction:Bronsted and Lowery purposed the Bronsted-Lowry acid-base theory. It states that acid can give H+ ions whereas a base can accept the H+ ion in its solution. Hence this theory is entirely based on the presence of H+ ion in the given substance. It purposed the concept of conjugated acid-base pair. A Bronsted acid gives H+ ion to form conjugated base whereas a Bronsted base accepts H+ ion to form its conjugated acid.

      HA   +   H2O                   A-       +     H3O+Bronsted + Bronsted                Conjugated     Conjugated   Acid           base                         base                 acid

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(a) Verify that the lattice energies of the alkali metal iodides are inversely proportional to the distances between the ions in MI (M = alkali metal) by plotting the lattice energies given below against the internuclear distances dMI. Is the correlation good? Would a better fit be obtained by plotting the lattice energies as a function of (1 — d*/d)/d, as theoretically suggested, with d* = 34.5 pm? You must use a standard graphing program to plot the graph. It generates an equation for the line and calculates a correlation coefficient. (b) From the graph obtained in (a), estimate the lattice energy of silver iodide. (c) Compare the results of (b) with the experimental value of 886 kJ/mol. If they do not agree, explain the deviation.
Can I please get help with #3 & 4? Thanks you so much!
A solution consisting of 0.200 mol methylbenzene, C,H,CH,, in 500. g of nitrobenzene, CH,NO₂, freezes at 3.2°C. Pure nitrobenzene freezes at 6.0°C. The molal freezing point constant of nitrobenzene is _ °C/m. a) 2.8 b) 3.2 c) 5.6 d) 7.0 e) 14.0
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