Iodomethane (CH 3 I) is a commonly used reagent in organic chemistry . When used properly, this reagent allows chemists to introduce methyl groups in many different useful applications. The chemical does pose a risk as a carcinogen, possibly owing to iodomethane’s ability to react with portions of the DNA strand (if they were to come in contact). Consider the following hypothetical initial rates data: [DNA] 0 ( μ mol/L) [CH 3 I] 0 ( μ mol/L) Initial Rate ( μ mol/L·s) 0.100 0.100 3.20 × 10 −4 0.100 0.200 6.40 × 10 −4 0.200 0.200 1.28 × 10 −3 Which of the following could be a possible mechanism to explain the initial rate data? Mechanism I DNA+CH 3 I → DNA — CH 3 + + I − Mechanism II CH 3 I → CH 3 + + I − S l o w DNA+CH 3 + → DNA — CH 3 + F a s t
Iodomethane (CH 3 I) is a commonly used reagent in organic chemistry . When used properly, this reagent allows chemists to introduce methyl groups in many different useful applications. The chemical does pose a risk as a carcinogen, possibly owing to iodomethane’s ability to react with portions of the DNA strand (if they were to come in contact). Consider the following hypothetical initial rates data: [DNA] 0 ( μ mol/L) [CH 3 I] 0 ( μ mol/L) Initial Rate ( μ mol/L·s) 0.100 0.100 3.20 × 10 −4 0.100 0.200 6.40 × 10 −4 0.200 0.200 1.28 × 10 −3 Which of the following could be a possible mechanism to explain the initial rate data? Mechanism I DNA+CH 3 I → DNA — CH 3 + + I − Mechanism II CH 3 I → CH 3 + + I − S l o w DNA+CH 3 + → DNA — CH 3 + F a s t
Solution Summary: The author explains how the rate of a chemical reaction depends on the concentration of reactants.
Iodomethane (CH3I) is a commonly used reagent in organic chemistry. When used properly, this reagent allows chemists to introduce methyl groups in many different useful applications. The chemical does pose a risk as a carcinogen, possibly owing to iodomethane’s ability to react with portions of the DNA strand (if they were to come in contact). Consider the following hypothetical initial rates data:
[DNA]0
(μ mol/L)
[CH3I]0
(μ mol/L)
Initial Rate (μmol/L·s)
0.100
0.100
3.20 × 10−4
0.100
0.200
6.40 × 10−4
0.200
0.200
1.28 × 10−3
Which of the following could be a possible mechanism to explain the initial rate data?
Mechanism
I
DNA+CH
3
I
→
DNA
—
CH
3
+
+
I
−
Mechanism
II
CH
3
I
→
CH
3
+
+
I
−
S
l
o
w
DNA+CH
3
+
→
DNA
—
CH
3
+
F
a
s
t
Definition Definition Transformation of a chemical species into another chemical species. A chemical reaction consists of breaking existing bonds and forming new ones by changing the position of electrons. These reactions are best explained using a chemical equation.
Vnk the elements or compounds in the table below in decreasing order of their boiling points. That is, choose 1 next to the substance with the highest bolling
point, choose 2 next to the substance with the next highest boiling point, and so on.
substance
C
D
chemical symbol,
chemical formula
or Lewis structure.
CH,-N-CH,
CH,
H
H 10: H
C-C-H
H H H
Cale
H 10:
H-C-C-N-CH,
Bri
CH,
boiling point
(C)
Сен
(C) B
(Choose
Please help me find the 1/Time, Log [I^-] Log [S2O8^2-], Log(time) on the data table. With calculation steps. And the average for runs 1a-1b. Please help me thanks in advance. Will up vote!
Q1: Answer the questions for the reaction below:
..!! Br
OH
a) Predict the product(s) of the reaction.
b) Is the substrate optically active? Are the product(s) optically active as a mix?
c) Draw the curved arrow mechanism for the reaction.
d) What happens to the SN1 reaction rate in each of these instances:
1. Change the substrate to
Br
"CI
2. Change the substrate to
3. Change the solvent from 100% CH3CH2OH to 10% CH3CH2OH + 90% DMF
4. Increase the substrate concentration by 3-fold.
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