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kramer
4 years ago
9

A block is given a short push and then slides with constant friction across a horizontal floor. Which statement best explains th

e direction of the force that friction applies on the moving block?a. Friction will be in the same direction as the block's motion because molecular interactions between the block and the floor will deform the block in the direction of motion.
b. Friction will be in the same direction as the block's motion because thermal energy generated at the interface between the block and the floor adds kinetic energy to the block.

c. Friction will be in the opposite direction of the block's motion because molecular interactions between the block and the floor will deform the block in the opposite direction of motion.

d. Friction will be in the opposite direction of the block's motion because thermal energy generated at the interface between the block and the floor converts some of the block's kinetic energy to potential energy.
Physics
1 answer:
puteri [66]4 years ago
7 0

Answer:

c. Friction will be in the opposite direction of the block's motion because molecular interactions between the block and the floor will deform the block in the opposite direction of motion.

Explanation:

When a block is put on the floor , there is interaction at molecular level between the molecules of block and floor . This mutual interaction

( attraction ) pulls them together. When the body is pushed forward, the distance between molecules is increased . Due to mutual attraction , block is deformed at the interface in the opposite direction of motion . This strain causes restoring stress which is also called friction . This elastic  stress creates force on the block in backward direction and force on the floor in forward direction .

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