(a)
Interpretation:
The expression for K for the given equilibrium is to be stated.
Concept introduction:
When any reaction is at equilibrium, a constant expresses a relationship between the reactant side and the product side. This constant is known as equilibrium constant. It is denoted by
The change in Gibbs free energy for a reaction when reactants and products are present in their standard states of pressure, forms and concentration is represented by
(a)

Answer to Problem 5.17E
The expression for K for the given equilibrium is,
Explanation of Solution
The given reaction is,
The expression for K for the given equilibrium is,
Where,
•
•
•
The expression for K for the given equilibrium is,
(b)
Interpretation:
The value of
Concept introduction:
When any reaction is at equilibrium, a constant expresses a relationship between the reactant side and the product side. This constant is known as equilibrium constant. It is denoted by
The change in Gibbs free energy for a reaction when reactants and products are present in their standard states of pressure, forms and concentration is represented by
(b)

Answer to Problem 5.17E
The value of
Explanation of Solution
The value of
The value of
The value of
The value of Gibbs free energy of the complete reaction is calculated by the expression,
Substitute the respective values of Gibbs free energy of the product and the reactant in the above expression.
The value of
(c)
Interpretation:
The value of K for the given equilibrium is to be calculated.
Concept introduction:
When any reaction is at equilibrium, a constant expresses a relationship between the reactant side and the product side. This constant is known as equilibrium constant. It is denoted by
The change in Gibbs free energy for a reaction when reactants and products are present in their standard states of pressure, forms and concentration is represented by
(c)

Answer to Problem 5.17E
The value of K for the given equilibrium is
Explanation of Solution
The calculated value of
The conversion of kilojoule to joule is done as,
Thus, the Gibbs free energy of the reaction becomes
The given temperature in appendix 2 at which all the
The value of gas constant, R is
The Gibbs expression is also expressed as,
Substitute the respective values of Gibbs energy, gas constant and temperature in the above expression.
The value of the value of K for the given equilibrium is
(d)
Interpretation:
The direction in which the reaction will move if
Concept introduction:
When any reaction is at equilibrium, a constant expresses a relationship between the reactant side and the product side. This constant is known as equilibrium constant. It is denoted by
The change in Gibbs free energy for a reaction when reactants and products are present in their standard states of pressure, forms and concentration is represented by
(d)

Answer to Problem 5.17E
If
Explanation of Solution
The given pressure for
The given pressure for
The given pressure for
The calculated value of equilibrium constant,
The expression for the equilibrium constant can be shown as,
Substitute the respective values of pressure of hydrogen cyanide and equilibrium constant in the above expression.
The given temperature in appendix 2 is
The value of gas constant, R is
The equilibrium constant with respect to concentration of the reaction is calculated by the expression,
Where,
•
•
•
•
Substitute all the respective values in the above expression.
Thus, the value of
If
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Chapter 5 Solutions
Student Solutions Manual for Ball's Physical Chemistry, 2nd
- How many signals do you expect in the H NMR spectrum for this molecule? Br Br Write the answer below. Also, in each of the drawing areas below is a copy of the molecule, with Hs shown. In each copy, one of the H atoms is colored red. Highlight in red all other H atoms that would contribute to the same signal as the H already highlighted red. Note for advanced students: In this question, any multiplet is counted as one signal. Number of signals in the 'H NMR spectrum. For the molecule in the top drawing area, highlight in red any other H atoms that will contribute to the same signal as the H atom already highlighted red. If no other H atoms will contribute, check the box at right. No additional Hs to color in top molecule For the molecule in the bottom drawing area, highlight in red any other H atoms that will contribute to the same signal as the H atom already highlighted red. If no other H atoms will contribute, check the box at right. No additional Hs to color in bottom moleculearrow_forwardIn the drawing area below, draw the major products of this organic reaction: 1. NaOH ? 2. CH3Br If there are no major products, because nothing much will happen to the reactant under these reaction conditions, check the box under the drawing area instead. No reaction. Click and drag to start drawing a structure. ☐ : A คarrow_forwardPredict the major products of the following organic reaction: NC Δ ? Some important Notes: • Draw the major product, or products, of the reaction in the drawing area below. • If there aren't any products, because no reaction will take place, check the box below the drawing area instead. • Be sure to draw bonds carefully to show important geometric relationships between substituents. Note: if your answer contains a complicated ring structure, you must use one of the molecular fragment stamps (available in the menu at right) to enter the ring structure. You can add any substituents using the pencil tool in the usual way. Click and drag to start drawing a structure. Х аarrow_forward
- Predict the major products of this organic reaction. Be sure you use dash and wedge bonds to show stereochemistry where it's important. + ☑ OH 1. TsCl, py .... 文 P 2. t-BuO K Click and drag to start drawing a structure.arrow_forwardConsider this organic reaction: ( Draw the major products of the reaction in the drawing area below. If there won't be any major products, because this reaction won't happen at a significant rate, check the box under the drawing area instead. Click and drag to start drawing a structure. Х : а ค 1arrow_forwardIn the drawing area below, draw the major products of this organic reaction: If there are no major products, because nothing much will happen to the reactant under these reaction conditions, check the box under the drawing area instead. 1. NaH 2. CH3Br ? Click and drag to start drawing a structure. No reaction. : ☐ Narrow_forward
- + Predict the major product of the following reaction. : ☐ + ☑ ค OH H₂SO4 Click and drag to start drawing a structure.arrow_forwardConsider this organic reaction: ... OH CI Draw the major products of the reaction in the drawing area below. If there won't be any major products, because this reaction won't happen at a significant rate, check the box under the drawing area instead. ☐ No Reaction. Click and drag to start drawing a structure. : аarrow_forwardConsider the following reactants: Br Would elimination take place at a significant rate between these reactants? Note for advanced students: by significant, we mean that the rate of elimination would be greater than the rate of competing substitution reactions. yes O no If you said elimination would take place, draw the major products in the upper drawing area. If you said elimination would take place, also draw the complete mechanism for one of the major products in the lower drawing area. If there is more than one major product, you may draw the mechanism that leads to any of them. Major Products:arrow_forward
- Draw one product of an elimination reaction between the molecules below. Note: There may be several correct answers. You only need to draw one of them. You do not need to draw any of the side products of the reaction. OH + ! : ☐ + Х Click and drag to start drawing a structure.arrow_forwardFind one pertinent analytical procedure for each of following questions relating to food safety analysis. Question 1: The presence of lead, mercury and cadmium in canned tuna Question 2: Correct use of food labellingarrow_forwardFormulate TWO key questions that are are specifically in relation to food safety. In addition to this, convert these questions into a requirement for chemical analysis.arrow_forward
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