Passage # 1 (Q.46 & 47) An artificial radioactive battery consists of No number of atoms of a radioactive element emitting a - particles with a disintegration constant λ = 1 per sec. Half of the fraction of 'a' particles emitted are captures at the anode A. Rest remains in the surrounding of radioactive substance kept on the cathode B. A capacitor C and a resistance R are connected across the battery. Charge on a particle is denoted by qo (Given C=10 F, R= 500 2 and at t=0, number of atoms are No) A 10 F 500 2 B Q.46 Current through a battery as a function of time. (A) Nogo- (B) Noчo (1-e) (C) Nogoet (D) D) Nogo 1-e 2 2 2 Q.47 The charge on the capacitor as function of time is given as -t (A) No (1-e) (B) 90 No (1-0-21) 9 2 2 (C) No (1-e) (D) No (1-c-21) 2
Passage # 1 (Q.46 & 47) An artificial radioactive battery consists of No number of atoms of a radioactive element emitting a - particles with a disintegration constant λ = 1 per sec. Half of the fraction of 'a' particles emitted are captures at the anode A. Rest remains in the surrounding of radioactive substance kept on the cathode B. A capacitor C and a resistance R are connected across the battery. Charge on a particle is denoted by qo (Given C=10 F, R= 500 2 and at t=0, number of atoms are No) A 10 F 500 2 B Q.46 Current through a battery as a function of time. (A) Nogo- (B) Noчo (1-e) (C) Nogoet (D) D) Nogo 1-e 2 2 2 Q.47 The charge on the capacitor as function of time is given as -t (A) No (1-e) (B) 90 No (1-0-21) 9 2 2 (C) No (1-e) (D) No (1-c-21) 2
College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![Passage # 1 (Q.46 & 47)
An artificial radioactive battery consists of No number of atoms of a radioactive element emitting
a - particles with a disintegration constant λ = 1 per sec. Half of the fraction of 'a' particles emitted are
captures at the anode A. Rest remains in the surrounding of radioactive substance kept on the cathode B. A
capacitor C and a resistance R are connected across the battery. Charge on a particle is denoted by qo (Given
C=10 F, R= 500 2 and at t=0, number of atoms are No)
A
10 F 500 2
B
Q.46 Current through a battery as a function of time.
(A)
Nogo-
(B)
Noчo (1-e)
(C)
Nogoet
(D)
D)
Nogo 1-e
2
2
2
Q.47
The charge on the capacitor as function of time is given as
-t
(A) No (1-e) (B)
90 No (1-0-21)
9
2
2
(C) No (1-e)
(D) No (1-c-21)
2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffe7aa90c-76db-4ed4-a667-7e3cae5b2f9f%2Fb1530cd7-f79c-469b-b630-8dfd263d1302%2F77vzcv8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Passage # 1 (Q.46 & 47)
An artificial radioactive battery consists of No number of atoms of a radioactive element emitting
a - particles with a disintegration constant λ = 1 per sec. Half of the fraction of 'a' particles emitted are
captures at the anode A. Rest remains in the surrounding of radioactive substance kept on the cathode B. A
capacitor C and a resistance R are connected across the battery. Charge on a particle is denoted by qo (Given
C=10 F, R= 500 2 and at t=0, number of atoms are No)
A
10 F 500 2
B
Q.46 Current through a battery as a function of time.
(A)
Nogo-
(B)
Noчo (1-e)
(C)
Nogoet
(D)
D)
Nogo 1-e
2
2
2
Q.47
The charge on the capacitor as function of time is given as
-t
(A) No (1-e) (B)
90 No (1-0-21)
9
2
2
(C) No (1-e)
(D) No (1-c-21)
2
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