The reaction of thioacelamidc with water is shown by the equation below: CH 3 C ( S ) NH 2 ( a q ) + H 2 O → H 2 S ( a q ) + CH 3 C ( O ) NH 2 ( a q ) The rate of reaction is given by the rate law: Rate = k [ H 3 O + ] [ CH 3 C ( S ) NH 2 ] Consider one liter of solution that is 0.20 M in CH 3 C(S) NH 2 and 0.15 M in HCl at 25°C. a For each of the changes listed below, state whether the rate of reaction increases, decreases, or remains the same. Why? i. A 4-g sample of NaOH is added to the solution. ii. 500 mL of water is added to the solution b For each of the changes listed below, state whether the value of k will increase, decrease, or remain the same. Why? i. A catalyst is added to the solution. ii. The reaction is carried out at 15 o C instead of 25°C.
The reaction of thioacelamidc with water is shown by the equation below: CH 3 C ( S ) NH 2 ( a q ) + H 2 O → H 2 S ( a q ) + CH 3 C ( O ) NH 2 ( a q ) The rate of reaction is given by the rate law: Rate = k [ H 3 O + ] [ CH 3 C ( S ) NH 2 ] Consider one liter of solution that is 0.20 M in CH 3 C(S) NH 2 and 0.15 M in HCl at 25°C. a For each of the changes listed below, state whether the rate of reaction increases, decreases, or remains the same. Why? i. A 4-g sample of NaOH is added to the solution. ii. 500 mL of water is added to the solution b For each of the changes listed below, state whether the value of k will increase, decrease, or remain the same. Why? i. A catalyst is added to the solution. ii. The reaction is carried out at 15 o C instead of 25°C.
Solution Summary: The author explains the change in rate constant for the list of changes given.
The reaction of thioacelamidc with water is shown by the equation below:
CH
3
C
(
S
)
NH
2
(
a
q
)
+
H
2
O
→
H
2
S
(
a
q
)
+
CH
3
C
(
O
)
NH
2
(
a
q
)
The rate of reaction is given by the rate law:
Rate
=
k
[
H
3
O
+
]
[
CH
3
C
(
S
)
NH
2
]
Consider one liter of solution that is 0.20 M in CH3C(S) NH2 and 0.15 M in HCl at 25°C.
a For each of the changes listed below, state whether the rate of reaction increases, decreases, or remains the same. Why?
i. A 4-g sample of NaOH is added to the solution.
ii. 500 mL of water is added to the solution
b For each of the changes listed below, state whether the value of k will increase, decrease, or remain the same. Why?
i. A catalyst is added to the solution.
ii. The reaction is carried out at 15oC instead of 25°C.
Definition Definition Study of the speed of chemical reactions and other factors that affect the rate of reaction. It also extends toward the mechanism involved in the reaction.
Balance the following equations
Synthesis
Ca
1.
Mg
+
Cl₂ →
MgCl2Syn
2. Al
+
302
->
2A1203Com
3.
P4
+
502
4.
Bi
+
+
Cl₂
5.
H2 +
N2
↑
6.
Zn +
02
7.
Cu
+
02
8.
Sn
+
9.
Na
10.
11.
AR
Ag
+
Cl₂
S8
I2
↑
↑
↑
↑
Pb
+
12.
Al
+
Br₂
13.
Fe
+
F2
↑
14.
Sn
+
15.
Sb
+
16.
Ca
+
17.
Ba
+
02
↑
↑
↑
P4010 Com
BiCl, Syn
NH3 Syn
Zno Com
Cu2O com
SnCl4 Syn
Na2S Syn
Agl Syn
Pbo Com
AlBr, yn
FeF3 Syn
Sno com
Sb₂Ss Syn
Cao cơm
Bao cơm
18.
Mg +
P4 ->
Mg3P2 Syn
19.
K
+
K&N Syn
ZnS
Syn
20.
Zn
None
Considering the important roles of biothiols in lysosomes of live organisms, and unique photophysical / photochemical properties of ruthenium(II) complexes, a novel ruthenium(II) complex, Ru-2, has been developed as a molecular probe for phosphorescence and time-gated luminescence assay of biothiols in human sera, live cells, and in vivo. Ru-2 is weakly luminescent due to the effective photoinduced electron transfer (PET) from Ru(II) luminophore to electron acceptor, 2,4-dinitrobenzene-sulfonyl (DNBS). In the presence of biothiols, such as glutathione (GSH), cysteine (Cys), and homocysteine (Hcy), the emission of Ru-2 solution was switched ON, as a result of the cleavage of quencher to form the product, Ru-1. Ru-2 showed high selectivity and sensitivity for the detection of biothiols under physiological conditions, with detection limits of 62 nM, 146 nM, and 115 nM for GSH, Cys, and Hcy, respectively. The emission lifetimes of Ru-1 and Ru-2 were measured to be 405 and 474 ns,…
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