12. Explain your answer 4.00 kg T A woman pulls on a 6.00-kg crate, which in turn is connected to a 4.00-kg crate by a light rope. The light rope remains taut. If the two crates are accelerating to the right, which is greater: the force that the 6.00- kg crate exerts on the 4.00-kg crate, or the force that the 4.00-kg crate exerts on the 6.00-kg crate? A. The force of the 6.00-kg crate on the 4.00-kg crate is greater. B. The force of the 4.00-kg crate on the 6.00-kg crate is greater. C. Both forces have the same magnitude. D. The answer depends on the magnitude F of the pull. E. The answer depends on the magnitude F of the pull and the strength of the friction force on each crate.

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12. Explain your answer
A woman pulls on a
6.00-kg crate, which in
turn is connected to a
4.00-kg crate by a light
rope. The light rope remains taut. If the two crates are
accelerating to the right, which is greater: the force that the 6.00-
kg crate exerts on the 4.00-kg crate, or the force that the 4.00-kg
crate exerts on the 6.00-kg crate?
4.00 kg
Ž
T
6.00 kg
A. The force of the 6.00-kg crate on the 4.00-kg crate is greater.
B. The force of the 4.00-kg crate on the 6.00-kg crate is greater.
C. Both forces have the same magnitude.
D. The answer depends on the magnitude F of the pull.
E. The answer depends on the magnitude F of the pull and the strength
of the friction force on each crate.
Transcribed Image Text:12. Explain your answer A woman pulls on a 6.00-kg crate, which in turn is connected to a 4.00-kg crate by a light rope. The light rope remains taut. If the two crates are accelerating to the right, which is greater: the force that the 6.00- kg crate exerts on the 4.00-kg crate, or the force that the 4.00-kg crate exerts on the 6.00-kg crate? 4.00 kg Ž T 6.00 kg A. The force of the 6.00-kg crate on the 4.00-kg crate is greater. B. The force of the 4.00-kg crate on the 6.00-kg crate is greater. C. Both forces have the same magnitude. D. The answer depends on the magnitude F of the pull. E. The answer depends on the magnitude F of the pull and the strength of the friction force on each crate.
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