For the reaction below, Δ t G ° = 27.07 kJ mol − 1 at 298 K. CH 3 CO 2 ( aq ) + H 2 O ( l ) ⇌ CH 3 CO 2 − ( aq ) + H 3 O + ( aq ) Use this thermodynamic quantity to decide in which direction the reaction is spontaneous when the concentrations of CH 2 CO 2 H ( aq ) CH 3 CO 2 - ( aq ) and H 2 O + ( aq ) are 0.10M, 1.0 × 10 − 2 M , 1.0 × 10 − 1 M , respectively.
For the reaction below, Δ t G ° = 27.07 kJ mol − 1 at 298 K. CH 3 CO 2 ( aq ) + H 2 O ( l ) ⇌ CH 3 CO 2 − ( aq ) + H 3 O + ( aq ) Use this thermodynamic quantity to decide in which direction the reaction is spontaneous when the concentrations of CH 2 CO 2 H ( aq ) CH 3 CO 2 - ( aq ) and H 2 O + ( aq ) are 0.10M, 1.0 × 10 − 2 M , 1.0 × 10 − 1 M , respectively.
Solution Summary: The author explains that the reaction is non-spontaneous in forward direction whereas spontaneous in backward direction at the given conditions of concentration.
For the reaction below,
Δ
t
G
°
=
27.07
kJ
mol
−
1
at 298 K.
CH
3
CO
2
(
aq
)
+
H
2
O
(
l
)
⇌
CH
3
CO
2
−
(
aq
)
+
H
3
O
+
(
aq
)
Use this thermodynamic quantity to decide in which direction the reaction is spontaneous when the concentrations of
CH
2
CO
2
H
(
aq
)
CH
3
CO
2
-
(
aq
)
and
H
2
O
+
(
aq
)
are 0.10M,
1.0
×
10
−
2
M
,
1.0
×
10
−
1
M
, respectively.
Science that deals with the amount of energy transferred from one equilibrium state to another equilibrium state.
You have started a patient on a new drug. Each dose introduces 40 pg/mL of drug after redistribution and prior to elimination. This drug is administered at 24 h intervals and has a half life of 24 h. What will the concentration of drug be after each of the first six doses? Show your work
a. What is the concentration after the first dose? in pg/mL
b. What is the concentration after the second dose? in pg/mL
c. What is the concentration after the third dose? in pg/mL
How many different molecules are drawn below?
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