RankLab
Back to Questions
PhysicsMediumNumerical2006 ยท Unknown

Q51.If the binding energy per nucleon in 73Li and 42He nuclei are 5.60MeV and 7.06MeV respectively, then in the reaction p + 73Li โ†’242He energy of proton must be (1) 39.2MeV (2) 28.24MeV (3) 17.28MeV (4) 1.46MeV

What This Question Tests

This question tests the ability to calculate the energy released or absorbed in a nuclear reaction (Q-value) using the binding energies per nucleon of the participating nuclei.

Concepts Tested

Q-value of a nuclear reactionBinding energy per nucleonConservation of energy in nuclear reactions

Formulas Used

Q = (Total BE of products) - (Total BE of reactants)

Binding Energy = (Binding Energy per nucleon) * (Number of nucleons)

๐Ÿ“š NCERT Sections This Tests

13.2 โ€” Obtain The Binding Energy Of The Nuclei 5626Fe And 20983 Bi In Units Of

Physics Class 12 ยท Chapter 13

84% match

13.2 Obtain the binding energy of the nuclei 5626Fe and 20983 Bi in units of MeV from the following data: m ( 5626Fe ) = 55.934939 u m ( 20983 Bi ) = 208.980388 u

13.5 โ€” The Q Value Of A Nuclear Reaction A + B ยฎ C + D Is Defined By

Physics Class 12 ยท Chapter 13

84% match

13.5 The Q value of a nuclear reaction A + b ยฎ C + d is defined by Q = [ mA + mb โ€“ mC โ€“ md]c2 where the masses refer to the respective nuclei. Determine from the given data the Q-value of the following reactions and state whether the reactions are exothermic or endothermic. (i) 11 H+13 H โ†’12 H+12 H (ii) 126 C+126 C โ†’1020 Ne+ 24 He Atomic masses are given to be m ( 12 H ) = 2.014102 u m ( 13 H) = 3.016049 u m ( 126 C ) = 12.000000 u m ( 1020 Ne ) = 19.992439 u

13.3 โ€” A Given Coin Has A Mass Of 3.0 G. Calculate The Nuclear Energy That

Physics Class 12 ยท Chapter 13

80% match

13.3 A given coin has a mass of 3.0 g. Calculate the nuclear energy that would be required to separate all the neutrons and protons from each other. For simplicity assume that the coin is entirely made of 6329Cu atoms (of mass 62.92960 u).