Calculating Force and Mass on a Lawnmower: A Gardener's Guide

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In summary, the conversation discusses a gardener pushing a lawnmower with a constant force of 0.91N at a 45 degree angle, and the resulting horizontal component of force exerted on the mower by the grass. It also touches upon calculating the mass of the mower using F=ma and F=mg, and the importance of drawing a free body diagram. The conversation concludes with discussing the acceleration of the mower and how it relates to the force and mass.
  • #1
anotherperson
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A gardener is pushing a lawnmower at constant speed across the grass, with a force of F=0.91N directed along the handle of a the mower. The handle makes an angle of 45 degrees with the ground.

Q1, calculate the magnitude of the horizontal component of the force exerted on the mower by the grass.?

Q2 If the normal force of the ground on the mower is 190 N, calculate the mass of the mower?
 
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  • #2
i tried to link if with F=ma but i have no way to work out the acceleration. i also tried to do F=mg but i got the wrong answer.
 
  • #3
Did you draw a diagram of the situation? In particular, a free body force diagram for the mower?

Since the gardener is pushing the mower at a constant speed, what does this tell you about the acceleration of the mower in the horizontal direction?
 
  • #4
ohhh so the acceleration is 0.
but the force couldn't equal the mass?

did draw a free body diagram, had Fnormal pointing up, Fweight pointing down, Ffric pointing left and Fnet pointing right.
 
  • #5
Force does not have the same units as mass, so no, force couldn't equal mass.

Perhaps you should show some of your calculations. What does your Fnet represent, and how did you calculate it?
 

Related to Calculating Force and Mass on a Lawnmower: A Gardener's Guide

What is force?

Force is a physical quantity that can change the motion of an object or cause an object to accelerate. It is measured in Newtons (N) and is a vector quantity, meaning it has both magnitude and direction.

What is mass?

Mass is a measure of the amount of matter in an object. It is a scalar quantity, meaning it only has magnitude and no direction. It is measured in kilograms (kg).

What is the relationship between force and mass?

According to Newton's second law of motion, the force acting on an object is directly proportional to its mass and acceleration. This means that as the mass of an object increases, the force required to accelerate it also increases.

How do you calculate force?

Force can be calculated by multiplying an object's mass by its acceleration. This can be represented by the equation F=ma, where F is force, m is mass, and a is acceleration.

What are some examples of force and mass in everyday life?

Some examples include pushing a shopping cart, throwing a ball, and lifting weights. In all of these cases, force is applied to an object with mass, causing it to move or accelerate.

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