6. Two masses are connected by a cord and there is a force of 55 N applied to 12.0 kg) The coefficient of kinetic mass B as shown. (mA = 8.0 kg and mB friction between the masses and the surface is 0.25. B F Calculate the acceleration of the masses and the tension in the string between the masses.

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Chapter1: Units, Trigonometry. And Vectors
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6. Two masses are connected by a cord and there is a force of 55 N applied to
mass B as shown. (mA = 8.0 kg and mg = 12.0 kg) The coefficient of kinetic
friction between the masses and the surface is 0.25.
B
Calculate the acceleration of the masses and the tension in the string between the
masses.
for the
Transcribed Image Text:6. Two masses are connected by a cord and there is a force of 55 N applied to mass B as shown. (mA = 8.0 kg and mg = 12.0 kg) The coefficient of kinetic friction between the masses and the surface is 0.25. B Calculate the acceleration of the masses and the tension in the string between the masses. for the
7. Below is a diagram of a Newton's second Law experiment you did this term.
The coefficient of kinetic friction, uk, between the cart (meart = 400.0g) and
the table is 0.115. The hanging mass is 60.00 grams.
(a) Draw two free body diagrams one for the hanging mass and the other for the
cart.
(b) Determine the acceleration of the cart and the tension in the string.
Transcribed Image Text:7. Below is a diagram of a Newton's second Law experiment you did this term. The coefficient of kinetic friction, uk, between the cart (meart = 400.0g) and the table is 0.115. The hanging mass is 60.00 grams. (a) Draw two free body diagrams one for the hanging mass and the other for the cart. (b) Determine the acceleration of the cart and the tension in the string.
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