4. 3. A block of mass m, = 5.00 kg is put on top of a block of mass m, = 6.00 kg. To cause the top block to slip on the bottom one while the bottom one is held fixed, a horizontal force of at least 25 N must be applied to the top block. The assembly of blocks is now placed on a horizontal, frictionless table (Fig. 6-14). Find the magnitudes of (a) the maximum horizontal force F that can be applied to the lower block so that the blocks will move together and (b) the resulting acceleration of the blocks.. (a) ① N(取兩位有效位數) (b) m/s²(1912) m₂ m Figure 6-14 Problem 3..

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Chapter1: Units, Trigonometry. And Vectors
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4.
3. A block of mass m, = 5.00 kg is put on top of a block of mass m, 6.00 kg. To cause the top
block to slip on the bottom one while the bottom one is held fixed, a horizontal force of at least
25 N must be applied to the top block. The assembly of blocks is now placed on a horizontal,
frictionless table (Fig. 6-14). Find the magnitudes of (a) the maximum horizontal force F
that can be applied to the lower block so that the blocks will move together and (b) the
resulting acceleration of the blocks..
(a)
(b)
0
N(取兩位有效位數)
m/s² (1312)
(6.3)
填空 (20 分) (請依照題目中的填空位置依次填寫答案)
m₂
Figure 6-14 Problem 3..
Transcribed Image Text:4. 3. A block of mass m, = 5.00 kg is put on top of a block of mass m, 6.00 kg. To cause the top block to slip on the bottom one while the bottom one is held fixed, a horizontal force of at least 25 N must be applied to the top block. The assembly of blocks is now placed on a horizontal, frictionless table (Fig. 6-14). Find the magnitudes of (a) the maximum horizontal force F that can be applied to the lower block so that the blocks will move together and (b) the resulting acceleration of the blocks.. (a) (b) 0 N(取兩位有效位數) m/s² (1312) (6.3) 填空 (20 分) (請依照題目中的填空位置依次填寫答案) m₂ Figure 6-14 Problem 3..
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