Home
Class 12
PHYSICS
The energy released by the fission of a ...

The energy released by the fission of a single uranium nucleus is 200 MeV. The number of fission of uranium nucleus per second required to produce 16 MW of power is (Assume efficiency of the reactor is 50%)

Promotional Banner

Similar Questions

Explore conceptually related problems

The energy released by the fission of one uranium atom is 200 MeV. The number of fissions per second required to produce 3.2 W of power is (Take leV = 1.6xx10^(-19)J)

The energy released by the fission of one uranium atom is 200 MeV. The number of fissions per second required to produce 3.2 MW of power is :

The energy released by the fission of one uranium atom is 200 MeV. The number of fission per second required to produce 6.4 W power is_____.

The energy released by the fission of one uranium atom is 200 MeV. The number of fission per second required to prodice 6.4W power is

The energy released by the fission of one uranium atom is 200 MeV. The number of fission per second required to prodice 6.4W power is

Assuming that energy released by the fission of a single ""_(92)^(235)U nucleus is 200MeV, calculate the number of fissions per second required to produce 1 kilowatt power.

If the energy released in the fission of the nucleus is 200 MeV . Then the number of nuclei required per second in a power plant of 16 kW will be.