Concept explainers
(a)
Interpretation:
The given acids have to be ranked in the increasing order of
Concept Introduction:
Consider the following acid dissociation reaction.
Where,
The equilibrium constant for the reaction can be written as follows,
The concentration of water is taken as unity. So the new equilibrium constant, the acid dissociation constant (
For strong acids the dissociation will be more, so more
(b)
Interpretation:
The given acids are ranked in the increasing order
Concept Introduction:
Consider the following acid dissociation reaction.
Where,
The equilibrium constant for the reaction can be written as follows,
The concentration of water is taken as unity. So the new equilibrium constant, the acid dissociation constant (
For strong acids the dissociation will be more, so more
As the acid strength increases,
(c)
Interpretation:
The conjugate base of the given acids has to be ranked in the increasing order of
Concept Introduction:
Consider the following acid dissociation reaction.
Where,
There is relationship between
Sum of these two reactions is equal to the self-ionization of water. Hence equilibrium constant for the ionization of water can be written as the product of the equilibrium constant for these two reaction as follows,
From the equation it is clear that
(d)
Interpretation:
The percentage dissociation of
Concept Introduction:
Consider the following acid dissociation reaction.
Where,
The percentage dissociation of a particular acid can be calculated as follows,
(e)
Interpretation:
The highest
Concept Introduction:
Consider the following reaction of sodium salt of acid in water.
The pH of the solution depends on the strength of
The
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Chapter 18 Solutions
Chemistry The Molecular Nature Of Matter And Change 9th
- 4. Choose the best reagent for carrying out the following reactions from the list below. Place the letter of the reagent(s) in the box over the reaction arrow. Use only one letter per box. OH 0 OH CH3 CH3 0 CH3 CH3 OH 賽 OCH3 H A. NaH, then CHI B. NaOCH 3, CH3OH C. m-CIC6H4CO3H D. E. warm H2SO4/H₂O F. G. H₂/Pd H. CH3MgBr in ether, then H3O+ Hg(O2CCF3)2, CH3OH PCC, CH2Cl2 I, Cl₂, H₂O J. LiAlH4 in ether, then H3O+ CH3arrow_forwardSolve thisarrow_forwardく Predicting the pr Predict the major products of the following organic reaction: 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 use wedge and dash bonds when necessary, for example to distinguish between major products that are enantiomers. ? Click and drag to start drawing a structure.arrow_forward
- propose synthesisarrow_forwardExplanation O Conjugated Pi Systems Deducing the reactants of a Diels-Alder reaction Can the molecule on the right-hand side of this organic reaction be made in good yield from no more than two reactants, in one step, by moderately heating the reactants? ? Δ If your answer is yes, then draw the reactant or reactants in the drawing area below. You can draw the reactants in any arrangement you like. • If your answer is no, check the box under the drawing area instead. Click and drag to start drawing a structure. Xarrow_forwardDiels Alder Cycloaddition: Focus on regiochemistry (problems E-F) –> match + of thedienophile and - of the diene while also considering stereochemistry (endo).arrow_forward
- HELP! URGENT! PLEASE RESOND ASAP!arrow_forwardQuestion 4 Determine the rate order and rate constant for sucrose hydrolysis. Time (hours) [C6H12O6] 0 0.501 0.500 0.451 1.00 0.404 1.50 0.363 3.00 0.267 First-order, k = 0.210 hour 1 First-order, k = 0.0912 hour 1 O Second-order, k = 0.590 M1 hour 1 O Zero-order, k = 0.0770 M/hour O Zero-order, k = 0.4896 M/hour O Second-order, k = 1.93 M-1-hour 1 10 ptsarrow_forwardDetermine the rate order and rate constant for sucrose hydrolysis. Time (hours) [C6H12O6] 0 0.501 0.500 0.451 1.00 0.404 1.50 0.363 3.00 0.267arrow_forward
- Draw the products of the reaction shown below. Use wedge and dash bonds to indicate stereochemistry. Ignore inorganic byproducts. OSO4 (cat) (CH3)3COOH Select to Draw ઘarrow_forwardCalculate the reaction rate for selenious acid, H2SeO3, if 0.1150 M I-1 decreases to 0.0770 M in 12.0 minutes. H2SeO3(aq) + 6I-1(aq) + 4H+1(aq) ⟶ Se(s) + 2I3-1(aq) + 3H2O(l)arrow_forwardProblem 5-31 Which of the following objects are chiral? (a) A basketball (d) A golf club (b) A fork (c) A wine glass (e) A spiral staircase (f) A snowflake Problem 5-32 Which of the following compounds are chiral? Draw them, and label the chirality centers. (a) 2,4-Dimethylheptane (b) 5-Ethyl-3,3-dimethylheptane (c) cis-1,4-Dichlorocyclohexane Problem 5-33 Draw chiral molecules that meet the following descriptions: (a) A chloroalkane, C5H11Cl (c) An alkene, C6H12 (b) An alcohol, C6H140 (d) An alkane, C8H18 Problem 5-36 Erythronolide B is the biological precursor of erythromycin, a broad-spectrum antibiotic. How H3C CH3 many chirality centers does erythronolide B have? OH Identify them. H3C -CH3 OH Erythronolide B H3C. H3C. OH OH CH3arrow_forward
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