friction at An isolated system co isists of a single object, initially moves velocity ux along a horizontal x-axis. After an internal explosion, the object splits into two parts, A and B. The figure shows the masses and speeds of these parts immediately after the explosion. None of these objects rotates. 1.50 m s-¹ 2.00 kg A Final kinetic energy initial kinetic energy - 3.50 m s-¹ = 3.00 kg What is the difference between the total final kinetic energy of A and B and the initial

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Chapter1: Units, Trigonometry. And Vectors
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An isolated system consists of a single object, which initially moves without friction at
velocity ux along a horizontal x-axis. After an internal explosion, the object splits into two
parts, A and B. The figure shows the masses and speeds of these parts immediately after
the explosion. None of these objects rotates.
1.50 m s-¹
2.00 kg
A
Final kinetic energy initial kinetic energy
3.50 m s-¹
-
3.00 kg
What is the difference between the total final kinetic energy of A and B and the initial
kinetic energy of whole object? Give you answer by entering a number, specified to an
appropriate number of significant figures, into the empty box.
B
J.
Transcribed Image Text:An isolated system consists of a single object, which initially moves without friction at velocity ux along a horizontal x-axis. After an internal explosion, the object splits into two parts, A and B. The figure shows the masses and speeds of these parts immediately after the explosion. None of these objects rotates. 1.50 m s-¹ 2.00 kg A Final kinetic energy initial kinetic energy 3.50 m s-¹ - 3.00 kg What is the difference between the total final kinetic energy of A and B and the initial kinetic energy of whole object? Give you answer by entering a number, specified to an appropriate number of significant figures, into the empty box. B J.
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