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Calculate the mass loss in the following...

Calculate the mass loss in the following:
`._(1)^(2)H + ._(1)^(3)H to ._(2)^(4)He + ._(0)^(1)n`
given the masses: `._(1)^(2)H = 2.014` amu, `._(1)^(3)H = 3.016` amu: `._(2)^(4)He = 4.004` amu, `._(0)^(1)n = 008` amu

A

0.018amu

B

0.18 amu

C

18 amu

D

1.8 amu

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The correct Answer is:
a
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._(1)^(3)H and ._(2)^(4)He are:

Calculate the energy released in the following: ._(1)H^(2) + ._(1)H^(3) rarr ._(2)He^(4) + ._(0)n^(1) (Given masses : H^(2) = 2.014, H^(3) = 3.016, He = 4.003, n = 1.009 m_(u))

Calculate the energy of the following nuclear reaction: ._(1)H^(2)+._(1)H^(3) to ._(2)He^(4) + ._(0)n^(1)+Q Given: m(._(1)H^(2))=2.014102u, m(._(1)H^(3))=3.016049u, m(._(2)He^(4))=4.002603u, m(._(0)n^(1))=1.008665u

Energy released in the nuclear fusion reaction is : ""_(1)^(2)H + ""_(1)^(3)H rarr ""_(2)^(4)He + ""_(0)^(1)n Atomic mass of ""_(1)^(2)H=2.014 , ""_(1)^(3)H=3.016 ""_(2)^(4)He=4.303, ""_(0)^(1)n=1.009 (all in a.m.u.)

Calculate the energy released in the following reaction ._3Li^6 + ._0n^1 to ._2He^4 + ._1H^3

calculate the energy released in the nuclear fusion of isotopes of hydrogen (i) ._(1)^(2)H + ._(1)^(2)H rarr ._(2)^(3)He + ._(0)^(1)n (ii) ._(1)^(2)H + ._(1)^(3)H rarr ._(2)^(4)He + ._(0)^(1)n Given that mass of neutron = 1.00867 amu {:("mass of",._(1)^(2)H = 2.01410,am u,),("mas of",._(1)^(3)H = 3.01603,am u,),("mass of ",._(2)^(3)H = 3.0160,am u,),("mass of ",._(2)^(4)He = 4.00260,am u,):}

Calculate the Q - value of the reaction ._(1)H^(2)+._(1)H^(2) rarr ._(1)H^(3)+._(1)H^(1) m(._(1)H^(2))=2.014103 "amu" m(._(1)H^(3))=3.016049 "amu" m(._(1H^(1))=1.007825 amu

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