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Use the Following Information to Determine the Enthalpy for the Reaction

Question 90

Multiple Choice

Use the following information to determine the enthalpy for the reaction shown below.
CS2(l)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  3O2(g)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  CO2(g)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  2SO2(g)         ~~~~~~~~Δ\Delta H = ?
C(graphite)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  O2(g)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  CO2(g)         ~~~~~~~~        ~~~~~~~~Δ\Delta H \circ = -393.5 kJ
S(s)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  O2(g)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  SO2(g)         ~~~~~~~~        ~~~~~~~~        ~~~~~~~~ Δ\Delta H \circ = -296.8 kJ
C(graphite) + 2S(s)  Use the following information to determine the enthalpy for the reaction shown below.  CS<sub>2</sub>(l)    3O<sub>2</sub>(g)    CO<sub>2</sub>(g)    2SO<sub>2</sub>(g)   ~~~~~~~~\Delta H =  ? C(graphite)    O<sub>2</sub>(g)    CO<sub>2</sub>(g)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = -393.5 kJ S(s)    O<sub>2</sub>(g)    SO<sub>2</sub>(g)  ~~~~~~~~~~~~~~~~~~~~~~~~   \Delta H<sup> \circ </sup> = -296.8 kJ C(graphite)  + 2S(s)    CS<sub>2</sub>(l)   ~~~~~~~~~~~~~~~~\Delta H<sup> \circ </sup> = 87.9 kJ A) (-1075 kJ)  B) (+1075 kJ)  C) (-778 kJ)  D) (+778 kJ)  E) (-602 kJ)  CS2(l)         ~~~~~~~~        ~~~~~~~~Δ\Delta H \circ = 87.9 kJ


A) (-1075 kJ)
B) (+1075 kJ)
C) (-778 kJ)
D) (+778 kJ)
E) (-602 kJ)

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