9) What is a second order reactant? (For example, [A]*) a) changing the concentration of A will have no effect on the reaction rate. (If concentration of A doubles or triples, reaction time does not change.) b) increasing the concentration of A will increase the reaction rate by the same amount. (If concentration of A doubles, reaction time halves, if concentration of A triples, new reaction time = 1/3 old reaction time.) c) changing the concentration of A will change the reaction rate to the power of that increase. (If concentration doubles, original reaction rate = new reaction rate to the power of 2, if concentration triples, original reaction rate = new reaction rate to the power of 3) %3D d) there are two reactants in the reaction 10) What is a rate law equation for the reaction? (For example, rate = k[A]°[B]*[C]°) %3D a) a reaction mechanism b) equilibrium expression for the reaction c) a relationship between reactant concentrations and reaction rate. (In this example, concentration of C will have no effect on the reaction rate, concentration of B is proportional to the reaction rate, and changes to the concentration of A affect the reaction rate by to the power of the change, k is a constant) d) order of the reaction steps

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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9) What is a second order reactant? (For example, [A]?)
a) changing the concentration of A will have no effect on the reaction rate. (If concentration of A
doubles or triples, reaction time does not change.)
b) increasing the concentration of A will increase the reaction rate by the same amount. (If
concentration of A doubles, reaction time halves, if concentration of A triples, new reaction time
= 1/3 old reaction time.)
c) changing the concentration of A will change the reaction rate to the power of that increase. (If
concentration doubles, original reaction rate = new reaction rate to the power of 2, if
concentration triples, original reaction rate = new reaction rate to the power of 3)
d) there are two reactants in the reaction
10) What is a rate law equation for the reaction? (For example, rate = k[A]°[B]'[C]°)
a)
a reaction mechanism
b) equilibrium expression for the reaction
a relationship between reactant concentrations and reaction rate. (In this example,
concentration of C will have no effect on the reaction rate, concentration of B is proportional to
the reaction rate, and changes to the concentration of A affect the reaction rate by to the power
c)
of the change, k is a constant)
d) order of the reaction steps
D Focus
* Accessibility. Investigate
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IA
W
ASUS ZenBook
3.
4.
8.
H.
V
B.
N.
M.
Alt
Alt
Transcribed Image Text:Paragraph Styles Editing Voi 9) What is a second order reactant? (For example, [A]?) a) changing the concentration of A will have no effect on the reaction rate. (If concentration of A doubles or triples, reaction time does not change.) b) increasing the concentration of A will increase the reaction rate by the same amount. (If concentration of A doubles, reaction time halves, if concentration of A triples, new reaction time = 1/3 old reaction time.) c) changing the concentration of A will change the reaction rate to the power of that increase. (If concentration doubles, original reaction rate = new reaction rate to the power of 2, if concentration triples, original reaction rate = new reaction rate to the power of 3) d) there are two reactants in the reaction 10) What is a rate law equation for the reaction? (For example, rate = k[A]°[B]'[C]°) a) a reaction mechanism b) equilibrium expression for the reaction a relationship between reactant concentrations and reaction rate. (In this example, concentration of C will have no effect on the reaction rate, concentration of B is proportional to the reaction rate, and changes to the concentration of A affect the reaction rate by to the power c) of the change, k is a constant) d) order of the reaction steps D Focus * Accessibility. Investigate to search IA W ASUS ZenBook 3. 4. 8. H. V B. N. M. Alt Alt
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