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(a)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(b)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(c)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(d)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(e)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(f)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(g)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(h)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(i)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(j)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
(k)
Interpretation:
For the given reaction mechanism, position of equilibrium, transition state,
Concept introduction:
When the heat energy was absorbed by the system from the surrounding is called endothermic reaction
When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.
General formula to calculate the Gibbs free energy is
First order reaction a first-order reaction is the rate of the reaction which depends on only one reactant concentration
Second order reaction: Second Order Reactions are characterized by the property of the rate of the reaction is depends on two reactant concentration
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Chapter 6 Solutions
ORGANIC CHEMISTRY-STD.WILEY PLUS CARD
- true or false The equilibrium constant for this reaction is 0.20. N2O4(g) ⇔ 2NO2(g) Based on the above, the equilibrium constant for the following reaction is 5. 4NO2(g) ⇔ 2N2O4(g)arrow_forwardtrue or false The equilibrium constant for this reaction is 0.20. N2O4(g) ⇔ 2NO2(g) Based on the above, the equilibrium constant for the following reaction is 0.4. 2N2O4(g) ⇔ 4NO2(g)arrow_forwardtrue or false Using the following equilibrium, if heat is added the equilibrium will shift toward the reactants. N2(g) + 3H2(g) ⇔ 2NH3(g) + heatarrow_forward
- True or False Using the following equilibrium, if heat is added the equilibrium will shift toward the products. N2O4(g) + heat ⇔ 2NO2(g)arrow_forwardtrue or false Using the following equilibrium, if solid carbon is added the equilibrium will shift toward the products. C(s) + CO2(g) ⇔ 2CO(g)arrow_forwardProvide the complete mechanism for the reaction below. You must include appropriate arrows,intermediates, and formal charges. Please also provide a reason to explain why the 1,4-adduct is preferred over the 1,3-adduct.arrow_forward
- Which of the following pairs are resonance structures of one another? I. III. || III IV + II. :0: n P !༠ IV. EN: Narrow_forwardPredict the major organic product(s) and byproducts (either organic or inorganic) for thefollowing reactions.arrow_forwardA 8.25 g sample of aluminum at 55°C released 2500 J of heat. The specific heat of aluminum is 0.900 J/g°C. The density of aluminum is 2.70 g/mL. Calculate the final temperature of the aluminum sample in °C.arrow_forward
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