How long can an electric lamp of 100 W be kept glowing by fusion of 2 kg of deuterium? Take the fusion reaction as
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Last updated at Dec. 14, 2024 by Teachoo
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How long can an electric lamp of 100 W be kept glowing by fusion of 2 kg of deuterium? Take the fusion reaction as โ 8(2@1)๐ป+โ 8(2@1)๐ปโโ 8(3@2)๐ป๐+๐+3.27 ๐๐๐ Question 6 How long can an electric lamp of 100 W be kept glowing by fusion of 2 kg of deuterium? Take the fusion reaction as โ 8(2@1)๐ป+โ 8(2@1)๐ปโโ 8(3@2)๐ป๐+๐+3.27 ๐๐๐ Number of atoms present in 2g of deuterium = 6 x 1023 Number of moles = ๐/๐_4 =(๐๐๐ ๐ ๐๐๐ฃ๐๐)/(๐๐๐๐๐ ๐๐๐ ๐ ) ๐/๐_4 =2๐๐/2๐ N = 10^3ร6ร10^23 N = 6ร10^26 Number of atoms present in 2kg of deuterium = 6 x 1026 Energy released in fusion by 2 deuterium atoms = 3.27 MeV (given) Energy released by 6 ร 1026 atoms = 3.27/2ร6ร10^26 ๐๐๐ = 9.81ร10^26 ๐๐๐ = 15.696ร10^13 ๐ฝ It is given that the bulb consumes 100J of energy per second. Hence, the bulb will be able to glow for = (15.696ร10^13)/100 ๐ = ๐.๐๐รใ๐๐ใ^๐ years
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