Question 4.5a: The figure shows two blocks of wood connected by a light string. The first block has mass m, = 5.80 kg and the second block has mass m, = 2.20 kg. A constant horizontal force of magnitude P = 24.0 N acts on the first block and both blocks are sliding to the right. The coefficient of kinetic friction between each block and the horizontal surface is u, = 0.100. Determine the magnitude of the tension T in the string connecting the blocks. Question 4 5h:

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Chapter1: Units, Trigonometry. And Vectors
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Question 4.5a:
The figure shows two blocks of wood connected by a light string. The first block has mass m,
= 5.80 kg and the second block has mass m,
= 2.20 kg. A constant
horizontal force of magnitude P = 24.0 N acts on the first block and both blocks are sliding to the right. The coefficient of kinetic friction between each block and
the horizontal surface is
HK
= 0.100.
m2
Determine the magnitude of the tension T in the string connecting the blocks.
Question 4.5b:
Two blocks with masses m,
= 5.50 kg and m,
7.60 kg are connected by a light string, as in the figure. Mass m, is descending and mass m, is moving to the
right across a horizontal surface with a coefficient of kinetic friction given by µ,
= 0.170.
m,
m2
Determine the acceleration a of m, and the magnitude T of the tension in the string.
m/s²
a =
T =
Transcribed Image Text:Question 4.5a: The figure shows two blocks of wood connected by a light string. The first block has mass m, = 5.80 kg and the second block has mass m, = 2.20 kg. A constant horizontal force of magnitude P = 24.0 N acts on the first block and both blocks are sliding to the right. The coefficient of kinetic friction between each block and the horizontal surface is HK = 0.100. m2 Determine the magnitude of the tension T in the string connecting the blocks. Question 4.5b: Two blocks with masses m, = 5.50 kg and m, 7.60 kg are connected by a light string, as in the figure. Mass m, is descending and mass m, is moving to the right across a horizontal surface with a coefficient of kinetic friction given by µ, = 0.170. m, m2 Determine the acceleration a of m, and the magnitude T of the tension in the string. m/s² a = T =
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