Use Table 8.3 to obtain Δ H ° for the following chemical equations: (a) Zn ( s ) + 2 H + ( a q ) → Zn 2 + ( a q ) + H 2 ( g ) (b) 2H 2 S ( g ) + 3 O 2 ( g ) → 2 SO 2 ( g ) + 2 H 2 O ( g ) (c) 3Ni ( s ) + 2 NO 3 − ( a q ) + 8H + ( a q ) → 3 Ni 2 + ( a q ) + 2 NO ( g ) + 4 H 2 O ( l )
Use Table 8.3 to obtain Δ H ° for the following chemical equations: (a) Zn ( s ) + 2 H + ( a q ) → Zn 2 + ( a q ) + H 2 ( g ) (b) 2H 2 S ( g ) + 3 O 2 ( g ) → 2 SO 2 ( g ) + 2 H 2 O ( g ) (c) 3Ni ( s ) + 2 NO 3 − ( a q ) + 8H + ( a q ) → 3 Ni 2 + ( a q ) + 2 NO ( g ) + 4 H 2 O ( l )
Use Table 8.3 to obtain ΔH° for the following chemical equations:
(a)
Zn
(
s
)
+
2
H
+
(
a
q
)
→
Zn
2
+
(
a
q
)
+
H
2
(
g
)
(b)
2H
2
S
(
g
)
+
3
O
2
(
g
)
→
2
SO
2
(
g
)
+
2
H
2
O
(
g
)
(c)
3Ni
(
s
)
+
2
NO
3
−
(
a
q
)
+
8H
+
(
a
q
)
→
3
Ni
2
+
(
a
q
)
+
2
NO
(
g
)
+
4
H
2
O
(
l
)
Expert Solution
Interpretation Introduction
(a)
Interpretation:
The value of ΔH° for the given chemical equation needs to be calculated.
Zn (s) + 2H+(aq)→Zn2+(aq) + H2(g)
Concept introduction:
The change in standard enthalpy for a reaction, ΔH0 is given in terms of the difference in the standard enthalpy of formation of the products and that of reactants.
The value of ΔH° for the given chemical equation needs to be calculated.
2H2S(g) + 3O2(g)→2SO2(g) + 2H2O(g)
Concept introduction:
The change in standard enthalpy for a reaction, ΔH0 is given in terms of the difference in the standard enthalpy of formation of the products and that of reactants.
The change in standard enthalpy for a reaction, ΔH0 is given in terms of the difference in the standard enthalpy of formation of the products and that of reactants.
In each case (more ductile, more brittle, more tough or resistant), indicate which parameter has a larger value.
parameter Elastic limit Tensile strength
more ductile
Strain at break Strength Elastic modulus
more fragile
more tough or resistant
4) A typical bottle of pop holds carbon dioxide at a pressure of 5 atm. What is the concentration of carbon dioxide in th
solution?
5) A stream flowing over rocks and such is exposed to the atmosphere and well aerated. What would be the nitrogen
concentration in the water at 25°C? (Air pressure is 1.000 bar.)
Chapter 8 Solutions
Student Solutions Manual For Masterton/hurley's Chemistry: Principles And Reactions, 8th
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