W = F*dAnswer: Work Done by Force F on Cylinder Mass m1: 352.2 J

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In summary, a 30 kg cylinder with a radius of 8 cm is placed on a 60 kg board on a frictionless ground with a coefficient of friction of 0.1. A force of 44.15 is applied to the center of mass of the cylinder for 2 seconds. Using the equations for maximum friction force and net forces, we can determine the work done by force F.
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aarce
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A cylinder of mass m1 = 30 kg and radius r = 8 cm lies on a board of mass m2 = 60 kg. The ground is frictionless and the coefficient of friction (both static and kinetic) between the board and the cylinder is u = 0.1. The centre of mass of the cylinder is pulled with a force of F = 44.15 for two seconds. Find the work done by force F.
Step 1: I drew a picture

Step 2: determined my knowns which is mass 1= 30 kg, radius = 8 cm, mass 2 = 60, u = 0.1, F= 44.15 for t = 2 sec.

Step 3: T.V.= F

Step 4: Equation: ?
 
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aarce said:
A cylinder of mass m1 = 30 kg and radius r = 8 cm lies on a board of mass m2 = 60 kg. The ground is frictionless and the coefficient of friction (both static and kinetic) between the board and the cylinder is u = 0.1. The centre of mass of the cylinder is pulled with a force of F = 44.15 for two seconds. Find the work done by force F.
Step 1: I drew a picture

Step 2: determined my knowns which is mass 1= 30 kg, radius = 8 cm, mass 2 = 60, u = 0.1, F= 44.15 for t = 2 sec.

Step 3: T.V.= F

Step 4: Equation: ?

Hi aarce! Welcome to MHB! ;)

Let's start with the applicable equations.
The force of friction has a maximum of:
$$F_{f,max} = \mu F_n$$
where $F_n$ is the normal force given by:
$$F_n = m_1 \cdot g$$

The net forces on $m_1$ and $m_2$ are:
$$F_1 = F - F_f$$
$$F_2 = F_f$$

If we assume that the masses start sliding with respect to each other, we have that $F_f = F_{f,max}$.
What will be the respective accelerations then?
 

Related to W = F*dAnswer: Work Done by Force F on Cylinder Mass m1: 352.2 J

What is work?

Work is a measure of the energy transferred to or from an object by a force. It is calculated by multiplying the magnitude of the force by the distance the object moves in the direction of the force.

How is work measured?

Work is measured in joules (J) in the International System of Units (SI). One joule is equal to the work done when a force of one newton is applied to an object and moves it a distance of one meter in the direction of the force.

What is the formula for calculating work?

The formula for calculating work is W = F * d, where W is work in joules, F is the force in newtons, and d is the distance in meters.

Can work be negative?

Yes, work can be negative if the force and displacement are in opposite directions. This means that the force is doing work against the direction of motion, resulting in a decrease in the object's energy.

What is the work done by force F on cylinder mass m?

The work done by force F on cylinder mass m is 352.2 joules. This means that the force has transferred 352.2 joules of energy to the cylinder by moving it a certain distance in the direction of the force.

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