QUESTIONS

Author:Kumar Mittal

Kumar Mittal Physics Solutions for Exercise - QUESTIONS

Simple step-by-step solutions to QUESTIONS questions of Nuclear Fission and Nuclear Fusion : Sources of Energy from ISC Physics Class 12, Part-2. Also get 3D topic explainers, cheat sheets, and unlimited doubts solving on EMBIBE.

Questions from QUESTIONS with Hints & Solutions

HARD
12th ICSE
IMPORTANT

In nuclear fusion, 0.993 g helium is formed by 1 g hydrogen. If the efficiency of the generator be 5%, then calculate the energy obtained in kilowatt-hour (kWh).

HARD
12th ICSE
IMPORTANT

The energy released per fission of U23592 nucleus is 200 MeV. Compute the energy released in joule if 100 g of U23592 is fissioned. Avogadro’s number is 6.02×1023 mole1.

HARD
12th ICSE
IMPORTANT

Calculate the useful power produced in a reactor of 40% efficiency in which 1014 fissions are taking place per second, and the energy per fission is 250 MeV.

HARD
12th ICSE
IMPORTANT

If 200 MeV energy is released in the fission of a single nucleus of U23592, how many fissions must occur in one second to produce a power of 1 kW? Also, compute the energy released in the complete fission of 5 kg of U235. Take Avogadro's number=6.2×1026 kmol-1.

MEDIUM
12th ICSE
IMPORTANT

A U235 reactor is producing nuclear energy at a rate of 32,000 kW. How many nuclei of U235 are fissioned per second? How much U235 would be consumed in 1000 hours? Assume an average energy of 200 MeV released per fission. Take Avogadro’s number as 6×1023 mol1.

MEDIUM
12th ICSE
IMPORTANT

In a star, three α-particles (H2e4 nuclei) fuse together to form a C126 nucleus. Compute the energy evolved. The masses of H2e4atom and C126 atom are 4.002604 u and 12.000000 u respectively.

MEDIUM
12th ICSE
IMPORTANT

Four hydrogen nuclei fuse together to form a helium nucleus with emission of two positrons. Calculate the energy released in the reaction. Given : mass of H11 atom=1.007825 u, mass of H2e4 atom =4.002603 u, mass of positron =0.000549 u.

HARD
12th ICSE
IMPORTANT

The following equation represents a fusion reaction: 1H2+1H32He4+0n1+Q; where Q is the energy released. Given: mass of 1H2 atom =2.014102 u, mass of H31 atom =3.0 16050 u, mass of H2e4 atom =4.002603 u and mass of neutron n10=1.008665 u. Calculate the value of Q.