Determine the missing A's and Z's of the nuclides (X) in the following decays: (a) X→ Ni + y (b) 2Po →X + a (c) X→Fe +et+ v (a) A) A = 65, Z=28; B) A = 65, Z-27; C) A = 55, Z-26; (D) A = 55, Z-26. (b) (A) A=215, Z-81; (B) A = 211, Z-82; (C) A=213, Z-82; (D) A=215, Z=26. c) (A) A = 65, Z-28; (B) A = 55, Z=26; (C) A-65, Z=26; (D) A-55, Z-27; O (a) B; (b) B; (C) D O (a) A; (b) B; (C) C O (a) A; (b) B; (C) D O (a) C; (b) A; (C) D 4

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Determine the missing A's and Z's of the nuclides (X) in the following
decays:
(a) X→ Ni + y (b) Po→X + a (c) X→Fe +et+ v
(a) A) A = 65, Z=28; B) A = 65, Z-27; C) A = 55, Z-26; (D) A = 55, Z-26.
(b) (A) A=215, Z-81; (B) A = 211, Z-82; (C) A=213, Z-82; (D) A=215, Z=26.
c) (A) A = 65, Z-28; (B) A = 55, Z=26; (C) A-65, Z=26; (D) A-55, Z-27;
O (a) B; (b) B; (C) D
O (a) A; (b) B; (C) C
O (a) A; (b) B; (C) D
O (a) C; (b) A; (C) D
27
Transcribed Image Text:Determine the missing A's and Z's of the nuclides (X) in the following decays: (a) X→ Ni + y (b) Po→X + a (c) X→Fe +et+ v (a) A) A = 65, Z=28; B) A = 65, Z-27; C) A = 55, Z-26; (D) A = 55, Z-26. (b) (A) A=215, Z-81; (B) A = 211, Z-82; (C) A=213, Z-82; (D) A=215, Z=26. c) (A) A = 65, Z-28; (B) A = 55, Z=26; (C) A-65, Z=26; (D) A-55, Z-27; O (a) B; (b) B; (C) D O (a) A; (b) B; (C) C O (a) A; (b) B; (C) D O (a) C; (b) A; (C) D 27
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