The decomposition of NH 3 : 2 NH 3 → N 2 + 3 H 2 is a zeroth-order reaction that, at elevated temperatures, has a rate constant of 1.04 × 10 − 1 M / s . If the initial concentration of NH 3 is 1.00 M , how long will it take for the concentration to drop to (a) 0.75 M ; (b) 0.50 M ; (c) 0.00 M ?
The decomposition of NH 3 : 2 NH 3 → N 2 + 3 H 2 is a zeroth-order reaction that, at elevated temperatures, has a rate constant of 1.04 × 10 − 1 M / s . If the initial concentration of NH 3 is 1.00 M , how long will it take for the concentration to drop to (a) 0.75 M ; (b) 0.50 M ; (c) 0.00 M ?
Solution Summary: The author explains that the rate of a reaction depends on several factors such as the concentration of reactant and temperature. The integrated rate law for zeroth-order kinetics is represented as, t=left
is a zeroth-order reaction that, at elevated temperatures, has a rate constant of
1.04
×
10
−
1
M
/
s
. If the initial concentration of
NH
3
is
1.00
M
, how long will it take for the concentration to drop to (a)
0.75
M
; (b)
0.50
M
; (c)
0.00
M
?
Use curved arrows to generate a second resonance form for the allylic radical formed from 2-methyl-2-pentene.
1
Draw the curved arrows that would generate a second resonance form for this radical.
D 2
H
S
F
A
Бг
I
Draw the resulting product(s) from the coupling of the given radicals. Inlcude all applicable electrons and non-zero formal charges.
H.C
öö-
CH3
2nd attempt
+1 :
招
H₂C
CH
CH₂
See Periodic Table See H
H
C
S
F
P
Br
CH₂
I
Please, help me out with the calculation, step by step on how to find what's blank with the given information.
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