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A father racing his son has 1/3 the kinetic energy of the ...
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A father racing his son has 1/3 the kinetic energy of the son, who has 1/3 the mass of the father. The father speeds up by 1.4 m/s and then has the same kinetic energy as the son. What are the original speeds of (a) the father and (b) the son? 👍 👎 👁 ℹ️ 🚩 nan Oct 3, 2011 M = father's mass m = son's mass = M/3 V = father's initial speed
A father racing his son has 1/3 the kinetic energy of the ...
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03/09/2020 Physics College answered • expert verified A father racing his son has 1/3 the kinetic energy of the son, who has 1/2 the mass of the father. The father speeds up by 1.4 m/s and then has the same kinetic energy as the son. What are the original speeds of (a) the father and (b) the son Advertisement Expert-verified answer 1.0 /5 1
A father racing his son - YouTube
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63.1K subscribers Subscribe A father racing his son has 1/4 the kinetic energy of the son, who has 1/3 the mass of the father. The father speeds up by 1.5 m/s and then has the same kinetic energy...
A father racing his son has 1/3 the kinetic energy of the ...
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A father racing his son has 1/3 the kinetic energy of the son, who has 1/3 the mass of the father. The father speeds up by 1.4 m/s and then has the same kinetic energy as the son. What are the original speeds of (a) the father and Maths ( …
Solved A father racing his son has 1/3 the kinetic energy ...
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Question: A father racing his son has 1/3 the kinetic energy of the son, who has 1/4 the mass of the father. The father speeds up by 1.6 m/s and then has the same kinetic energy as the son. What are the original speeds of (a) the father and (b) the son? (a) Number Units (b) Number Units This problem has been solved! See the answer
Solved A father racing his son has 1/3 the kinetic energy ...
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A father racing his son has 1/3 the kinetic energy of the son, who has 1/2 the mass of the father. The father speeds up by 1.8 m/s and then has the same kinetic energy as the son. What are the original speeds of (a) the father and (b) the son? (a) Number Units (b) Number Units
Answered: A father racing his son has 1/3 the… | bartleby
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Question Transcribed Image Text: A father racing his son has 1/3 the kinetic energy of the son, who has 1/3 the mass of the father. The father speeds up by 1.4 m/s and then has the same kinetic energy as the son. What are the original speeds of (a) the father and (b) the son? Expert Solution Want to see the full answer? Check out a sample Q&A here
Kinetic Energy in Racing Question | Physics Forums
https://www.physicsforums.com/threads/kinetic-energy-in-racing-question.136185/
All right, here is the question A father racing his son has 1/3 the kinetic energy of the son, who has 1/3 the mass of the father. The father speeds up by 1.6 m/s and then has the same kinetic energy as the son. So to being with, I set up two equations equal to each other, since the only unknown is initial velocity. I set it up as
View question - Kinetic Energy
https://web2.0calc.com/questions/kinetic-energy_3
Son's starting speed = 1/3 m/s Father's starting speed = 2/3 m/s I have no idea why the answers are different because I can't follow your logic well, but atleast this part of mine was wrong MathDude Mar 15, 2017 #7 +2329 +8 Solution …
A father racing his son has half the kinetic energy of the ...
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Solution Verified by Toppr We denote the mass of the father as m and his initial speed v i . The initial kinetic energy of the father is K i = 21 K son and his final kinetic energy (when his speed is v f =v i +1.0m/s) is K f =K son . (a) We see from the above that K i = 21 K f , which (with SI units understood) leads to 21 mv i2 = 21 [21 m(v i
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