Radioactivity
NUCLEAR PHYSICS

147726 Which one of the following graphs represents the graph between the instantaneous the graph between the instantaneous concentration $N$ of a radioactive element and time $t$ ?

1 a
2 b
3 c
4 d
NUCLEAR PHYSICS

147727 A radioactive substance has half-life of $60 \mathrm{~min}$ During $3 \mathrm{~h}$, the fraction of the substance that has to be decayed, will be-

1 $87.5 \%$
2 $52.5 \%$
3 $25.5 \%$
4 $8.5 \%$
NUCLEAR PHYSICS

147729 If half-life of radium is 77 days, its decay constant will be :

1 $3 \times 10^{-3} /$ day
2 $9 \times 10^{-3} /$ day
3 $1 \times 10^{-3} /$ day
4 $6 \times 10^{-3} /$ day
NUCLEAR PHYSICS

147731 Nuclear reactor in which $\mathrm{U}-235$ is used as fuel. Uses $2 \mathrm{~kg}$ of U-235 in 30 days. Then, power output of the reactor will be (given energy released per fission $=185 \mathrm{Me} \mathrm{V}$ )

1 $43.5 \mathrm{MW}$
2 $58.5 \mathrm{MW}$
3 $69.6 \mathrm{MW}$
4 $73.1 \mathrm{MW}$
NUCLEAR PHYSICS

147726 Which one of the following graphs represents the graph between the instantaneous the graph between the instantaneous concentration $N$ of a radioactive element and time $t$ ?

1 a
2 b
3 c
4 d
NUCLEAR PHYSICS

147727 A radioactive substance has half-life of $60 \mathrm{~min}$ During $3 \mathrm{~h}$, the fraction of the substance that has to be decayed, will be-

1 $87.5 \%$
2 $52.5 \%$
3 $25.5 \%$
4 $8.5 \%$
NUCLEAR PHYSICS

147729 If half-life of radium is 77 days, its decay constant will be :

1 $3 \times 10^{-3} /$ day
2 $9 \times 10^{-3} /$ day
3 $1 \times 10^{-3} /$ day
4 $6 \times 10^{-3} /$ day
NUCLEAR PHYSICS

147731 Nuclear reactor in which $\mathrm{U}-235$ is used as fuel. Uses $2 \mathrm{~kg}$ of U-235 in 30 days. Then, power output of the reactor will be (given energy released per fission $=185 \mathrm{Me} \mathrm{V}$ )

1 $43.5 \mathrm{MW}$
2 $58.5 \mathrm{MW}$
3 $69.6 \mathrm{MW}$
4 $73.1 \mathrm{MW}$
NUCLEAR PHYSICS

147726 Which one of the following graphs represents the graph between the instantaneous the graph between the instantaneous concentration $N$ of a radioactive element and time $t$ ?

1 a
2 b
3 c
4 d
NUCLEAR PHYSICS

147727 A radioactive substance has half-life of $60 \mathrm{~min}$ During $3 \mathrm{~h}$, the fraction of the substance that has to be decayed, will be-

1 $87.5 \%$
2 $52.5 \%$
3 $25.5 \%$
4 $8.5 \%$
NUCLEAR PHYSICS

147729 If half-life of radium is 77 days, its decay constant will be :

1 $3 \times 10^{-3} /$ day
2 $9 \times 10^{-3} /$ day
3 $1 \times 10^{-3} /$ day
4 $6 \times 10^{-3} /$ day
NUCLEAR PHYSICS

147731 Nuclear reactor in which $\mathrm{U}-235$ is used as fuel. Uses $2 \mathrm{~kg}$ of U-235 in 30 days. Then, power output of the reactor will be (given energy released per fission $=185 \mathrm{Me} \mathrm{V}$ )

1 $43.5 \mathrm{MW}$
2 $58.5 \mathrm{MW}$
3 $69.6 \mathrm{MW}$
4 $73.1 \mathrm{MW}$
NUCLEAR PHYSICS

147726 Which one of the following graphs represents the graph between the instantaneous the graph between the instantaneous concentration $N$ of a radioactive element and time $t$ ?

1 a
2 b
3 c
4 d
NUCLEAR PHYSICS

147727 A radioactive substance has half-life of $60 \mathrm{~min}$ During $3 \mathrm{~h}$, the fraction of the substance that has to be decayed, will be-

1 $87.5 \%$
2 $52.5 \%$
3 $25.5 \%$
4 $8.5 \%$
NUCLEAR PHYSICS

147729 If half-life of radium is 77 days, its decay constant will be :

1 $3 \times 10^{-3} /$ day
2 $9 \times 10^{-3} /$ day
3 $1 \times 10^{-3} /$ day
4 $6 \times 10^{-3} /$ day
NUCLEAR PHYSICS

147731 Nuclear reactor in which $\mathrm{U}-235$ is used as fuel. Uses $2 \mathrm{~kg}$ of U-235 in 30 days. Then, power output of the reactor will be (given energy released per fission $=185 \mathrm{Me} \mathrm{V}$ )

1 $43.5 \mathrm{MW}$
2 $58.5 \mathrm{MW}$
3 $69.6 \mathrm{MW}$
4 $73.1 \mathrm{MW}$