363746 Calculate the energy which can be obtained from 1 \(kg\) of \({H_2}O\) through the fusion reaction \(_1^2H + _1^2H \to _1^3H + p.\) Assume \(1.5 \times {10^{ - 2}}\% \) of the water contains deuterium. The whole deuterium is consumed in the fusion reaction. (Mass of \({}_1{H^2} = 2.01410,\,{}_1{H^3} = 3.01605,\,P = 1.008\) in \(amu\))
363746 Calculate the energy which can be obtained from 1 \(kg\) of \({H_2}O\) through the fusion reaction \(_1^2H + _1^2H \to _1^3H + p.\) Assume \(1.5 \times {10^{ - 2}}\% \) of the water contains deuterium. The whole deuterium is consumed in the fusion reaction. (Mass of \({}_1{H^2} = 2.01410,\,{}_1{H^3} = 3.01605,\,P = 1.008\) in \(amu\))
363746 Calculate the energy which can be obtained from 1 \(kg\) of \({H_2}O\) through the fusion reaction \(_1^2H + _1^2H \to _1^3H + p.\) Assume \(1.5 \times {10^{ - 2}}\% \) of the water contains deuterium. The whole deuterium is consumed in the fusion reaction. (Mass of \({}_1{H^2} = 2.01410,\,{}_1{H^3} = 3.01605,\,P = 1.008\) in \(amu\))
363746 Calculate the energy which can be obtained from 1 \(kg\) of \({H_2}O\) through the fusion reaction \(_1^2H + _1^2H \to _1^3H + p.\) Assume \(1.5 \times {10^{ - 2}}\% \) of the water contains deuterium. The whole deuterium is consumed in the fusion reaction. (Mass of \({}_1{H^2} = 2.01410,\,{}_1{H^3} = 3.01605,\,P = 1.008\) in \(amu\))
363746 Calculate the energy which can be obtained from 1 \(kg\) of \({H_2}O\) through the fusion reaction \(_1^2H + _1^2H \to _1^3H + p.\) Assume \(1.5 \times {10^{ - 2}}\% \) of the water contains deuterium. The whole deuterium is consumed in the fusion reaction. (Mass of \({}_1{H^2} = 2.01410,\,{}_1{H^3} = 3.01605,\,P = 1.008\) in \(amu\))