Determine the identity of the daughter nuclide from the beta decay of C-14. A) N-14 B) B-9 e figure below shows an example of: C) N-16 56 144 Ba on on on 233U 92 236U 89 36 Kr D) C-12 A) a fusion reaction B) beta-particle emission C) a fission reaction D) an electron capture reaction E) alpha-particle emission _. The graph below shows the change in concentration of reactant and product as a reaction proceeds. At what point has equilibrium been reached? A) I B) || C) III D) IV Concentration (mol/L) 0.4 IV Products 0.3 0.2 0.1 Reactants 10 12 8 10 Time (hours)

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Determine the identity of the daughter nuclide from the beta decay of C-14.
A) N-14
B) B-9
e figure below shows an example of:
C) N-16
56
144 Ba
on
on
on
233U
92
236U
89
36
Kr
D) C-12
A) a fusion reaction
B) beta-particle emission
C) a fission reaction
D) an electron capture reaction
E) alpha-particle emission
Transcribed Image Text:Determine the identity of the daughter nuclide from the beta decay of C-14. A) N-14 B) B-9 e figure below shows an example of: C) N-16 56 144 Ba on on on 233U 92 236U 89 36 Kr D) C-12 A) a fusion reaction B) beta-particle emission C) a fission reaction D) an electron capture reaction E) alpha-particle emission
_. The graph below shows the change in concentration of reactant and product as a reaction proceeds. At what
point has equilibrium been reached?
A) I
B) ||
C) III
D) IV
Concentration (mol/L)
0.4
IV
Products
0.3
0.2
0.1
Reactants
10 12
8 10
Time (hours)
Transcribed Image Text:_. The graph below shows the change in concentration of reactant and product as a reaction proceeds. At what point has equilibrium been reached? A) I B) || C) III D) IV Concentration (mol/L) 0.4 IV Products 0.3 0.2 0.1 Reactants 10 12 8 10 Time (hours)
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