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Concept explainers
The Ka for hydrocyanic acid (HCN) is 4.9 × 10 −l0. Determine the concentration of H+ in a solution that is 0.25 M in HCN.
(a) 1.2 × 10 −l0 M
(b) 5.0 × 10−4 M
(c) 2.2 × 10−5 M
(d) 2.5 × 10−5 M
(e) 1.1 × 10−5 M
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Interpretation:
The concentration for
Concept Introduction:
Equilibrium constant: Concentration of the products to the respective molar concentration of reactants it is called equilibrium constant. If the K value is less than one the reaction will move to the left side and the K values is higher (or) greater than one the reaction will move to the right side of reaction.
Acid dissociation constant: It is the measure which defines the strength of the acid in solution and hence it is equilibrium constant for the acid dissociation reaction represented by using
Answer to Problem 15.1KSP
The concentration of
Explanation of Solution
Reason for correct option:
The chemical equation that represents the given conditions is as follows,
Given,
The acid dissociation constant,
Considering the initial concentration for products
We set up a (ICE) equilibrium table for the given reaction as follows,
Next using the acid dissociation formula for the given reaction we drive the value for x as follows,
The acid dissociation constant is so small, the x in denominator of the equation gets neglected and solving further gives the value for x as follows,
Therefore, the above calculations clearly says that the concentration of
Hence, the correct option is option (e).
Reason for in-correct options:
Consider all options other than the correct one.
These options show us that they do not contain the correct value which is obtained from the calculation using acid dissociation constant formula and the ice table for the given chemical reaction.
Hence, the incorrect options are option (a), (b), (c) and (d).
The correct option that contains the value for the concentration of
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Chapter 15 Solutions
EBK CHEMISTRY: ATOMS FIRST
- 2. 200 LOD For an unknown compound with a molecular ion of 101 m/z: a. Use the molecular ion to propose at least two molecular formulas. (show your work) b. What is the DU for each of your possible formulas? (show your work) C. Solve the structure and assign each of the following spectra. 8 6 4 2 (ppm) 150 100 50 ō (ppm) 4000 3000 2000 1500 1000 500 HAVENUMBERI-11arrow_forwardComplete the spectroscopy with structurearrow_forwardComplete the spectroscopy with structurearrow_forward
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- Chemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage LearningChemistry for Engineering StudentsChemistryISBN:9781337398909Author:Lawrence S. Brown, Tom HolmePublisher:Cengage Learning
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