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hollow sphere of mass ‘M’ and radius ‘R’ is rotating with angular frequency ‘ω’. It suddenly stops rotating and 75% of kinetic energy is converted to heat. If ‘S’ is the specific heat of the material in J K kg then rise in temperature of the sphere is (M.I. of hollow sphere = MR2?
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?hollow sphere of mass ‘M’ and radius ‘R’ is rotating with angular fre...
Moment of inertia of the hollow sphere, 
Initial kinetic energy,
Final kinetic energy of the sphere,
As 75 Percent of initial kinetic energy is converted into heat.

 where  s is the specific heat capacity of the sphere
⟹ Rise in temperature,
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?hollow sphere of mass ‘M’ and radius ‘R’ is rotating with angular frequency ‘ω’. It suddenly stops rotating and 75% of kinetic energy is converted to heat. If ‘S’ is the specific heat of the material in J K kg then rise in temperature of the sphere is (M.I. of hollow sphere = MR2?
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?hollow sphere of mass ‘M’ and radius ‘R’ is rotating with angular frequency ‘ω’. It suddenly stops rotating and 75% of kinetic energy is converted to heat. If ‘S’ is the specific heat of the material in J K kg then rise in temperature of the sphere is (M.I. of hollow sphere = MR2? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about ?hollow sphere of mass ‘M’ and radius ‘R’ is rotating with angular frequency ‘ω’. It suddenly stops rotating and 75% of kinetic energy is converted to heat. If ‘S’ is the specific heat of the material in J K kg then rise in temperature of the sphere is (M.I. of hollow sphere = MR2? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for ?hollow sphere of mass ‘M’ and radius ‘R’ is rotating with angular frequency ‘ω’. It suddenly stops rotating and 75% of kinetic energy is converted to heat. If ‘S’ is the specific heat of the material in J K kg then rise in temperature of the sphere is (M.I. of hollow sphere = MR2?.
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