
Concept explainers
(a)
Interpretation:
The moles of
Concept Introduction:
Mole ratio:
A mole ratio is a ratio between the numbers of moles of any two species involved in a
Example,
In the reaction,
(a)

Answer to Problem 11PE
The mole of
Explanation of Solution
The balanced reaction is,
In the mole ratio, the coefficients of the balanced equation are used. Therefore the mole ratio is
The number of moles can be calculated as,
The mole of
(b)
Interpretation:
The moles of
Concept Introduction:
Refer to part (a).
(b)

Answer to Problem 11PE
The moles of
Explanation of Solution
The balanced reaction is,
In the mole ratio, the coefficients of the balanced equation are used. Therefore the mole ratio is
The number of moles can be calculated as,
The moles of
(c)
Interpretation:
The grams of
Concept Introduction:
Refer to part (a).
(c)

Answer to Problem 11PE
The grams of
Explanation of Solution
The balanced reaction is,
In the mole ratio, the coefficients of the balanced equation are used. Therefore the mole ratio is
The number of moles can be calculated as,
Conversion of moles to grams:
The molar mass of chlorine is
The grams of
(d)
Interpretation:
The moles of
Concept Introduction:
Refer to part (a).
(d)

Answer to Problem 11PE
The moles of
Explanation of Solution
The mass of
The molecular weight of
The mass in kilogram has to converted to gram,
The number of moles can be calculated as,
The balanced reaction is,
In the mole ratio, the coefficients of the balanced equation are used. Therefore the mole ratio is
The number of moles can be calculated as,
The moles of
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Chapter 9 Solutions
FOUND.OF COLLEGE CHEMISTRY
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- Use the reaction coordinate diagram to answer the below questions. Type your answers into the answer box for each question. (Watch your spelling) Energy A B C D Reaction coordinate E A) Is the reaction step going from D to F endothermic or exothermic? A F G B) Does point D represent a reactant, product, intermediate or transition state? A/ C) Which step (step 1 or step 2) is the rate determining step? Aarrow_forward1. Using radii from Resource section 1 (p.901) and Born-Lande equation, calculate the lattice energy for PbS, which crystallizes in the NaCl structure. Then, use the Born-Haber cycle to obtain the value of lattice energy for PbS. You will need the following data following data: AH Pb(g) = 196 kJ/mol; AHƒ PbS = −98 kJ/mol; electron affinities for S(g)→S¯(g) is -201 kJ/mol; S¯(g) (g) is 640kJ/mol. Ionization energies for Pb are listed in Resource section 2, p.903. Remember that enthalpies of formation are calculated beginning with the elements in their standard states (S8 for sulfur). The formation of S2, AHF: S2 (g) = 535 kJ/mol. Compare the two values, and explain the difference. (8 points)arrow_forwardIn the answer box, type the number of maximum stereoisomers possible for the following compound. A H H COH OH = H C Br H.C OH CHarrow_forward
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