Exploration 3.1.a: A block is pulled at constant speed a distance of 2.50m with a 4.5N horizontal force. Calculate the work done by the pulling force. Show your work below. Exploration 3.1.b: Calculate the work done by the frictional force for the case in Exploration 3.1.a. Show your work and explain below. Exploration 3.1.c: Calculate the network (sum of work done by all forces) for the case in Exploration 3.1.a. Show your work and explain below. Exploration 3.1.d: Calculate the work done by the normal force and the gravitational force for the case in Exploration 3.1.a. Show your work and explain below. Exploration 3.2.a: A block is pulled at constant speed a distance of 2.50m with a 4.5N force tilted 30° from the horizontal. Calculate the work done by the pulling force. Show your work below. Exploration 3.2.b: How does the magnitude of the work done by the frictional force in this case compare to the magnitude of the work done by the frictional force in Exploration 3.1.b? Show your work and explain.
Exploration 3.1.a: A block is pulled at constant speed a distance of 2.50m with a 4.5N horizontal force. Calculate the work done by the pulling force. Show your work below.
Exploration 3.1.b: Calculate the work done by the frictional force for the case in Exploration 3.1.a. Show your work and explain below.
Exploration 3.1.c: Calculate the network (sum of work done by all forces) for the case in Exploration 3.1.a. Show your work and explain below.
Exploration 3.1.d: Calculate the work done by the normal force and the gravitational force for the case in Exploration 3.1.a. Show your work and explain below.
Exploration 3.2.a: A block is pulled at constant speed a distance of 2.50m with a 4.5N force tilted 30° from the horizontal. Calculate the work done by the pulling force. Show your work below.
Exploration 3.2.b: How does the magnitude of the work done by the frictional force in this case compare to the magnitude of the work done by the frictional force in Exploration 3.1.b? Show your work and explain.
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