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When people are pulling on a rope, the primary forces acting on them are tension in the rope (the force exerted by the rope on each person pulling) and friction between their feet and the ground (to prevent slipping). Additionally, each person must exert a force in the direction of the pull, counteracting the tension in the rope to move the object.

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1y ago

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What are the three forces that act on a pulley system?

The forces that could occur in a pulley system are the force of gravity (due to the pulley's own weight), the tension force (of the rope), and the applied force (the force pulling on the ropes, i.e. a person pulling on it, or a load on the rope). goog dkjf ikjhrknj mjbnrgje gjknhdk irhfgt n s


How can forces act?

Forces can act by pushing or pulling on an object, causing it to accelerate or change its motion. They can be gravity pulling an object down, a person pushing a box, or a magnetic force attracting iron objects. Forces can also act at a distance without physical contact, such as with electromagnetic or gravitational forces.


You pull down on a rope to raise a flag on a flagpole. Which describes why the rope and the flagpole act as a machine?

The rope and the flagpole act as a machine because they work together to achieve a desired outcome, which is raising the flag. The rope transmits the force you apply by pulling, allowing you to raise the flag on the flagpole.


What forces act in a horizontal direction?

In a horizontal direction, forces such as friction, tension in a rope, and air resistance can act. These forces can affect the motion of an object in different ways depending on the surface and context.


What forces are pulling forces?

There are absolutely no such things as "pulling" forces. Force = mass x Acceleration F = mA That physically means that "the mass" is Accelerating (moving). That physically and absolutely means that the mass can only push. "Pulling" is simply "Pushing" on the inside of any attached grip to any piece of mass.

Related Questions

What are paired forces?

Paired forces are two forces that are equal in magnitude but act in opposite directions on an object. Examples include the force of gravity pulling an object downward and the normal force acting upward to balance it, or the tension in a rope pulling on an object and the equal and opposite tension in the object pulling on the rope.


Write a example for like parallel forces?

the bag of apples ........ the weights of the apples are acting in same direction so it is an example of parallel forces


What are the three forces that act on a pulley system?

The forces that could occur in a pulley system are the force of gravity (due to the pulley's own weight), the tension force (of the rope), and the applied force (the force pulling on the ropes, i.e. a person pulling on it, or a load on the rope). goog dkjf ikjhrknj mjbnrgje gjknhdk irhfgt n s


How can forces act?

Forces can act by pushing or pulling on an object, causing it to accelerate or change its motion. They can be gravity pulling an object down, a person pushing a box, or a magnetic force attracting iron objects. Forces can also act at a distance without physical contact, such as with electromagnetic or gravitational forces.


You pull down on a rope to raise a flag on a flagpole. Which describes why the rope and the flagpole act as a machine?

The rope and the flagpole act as a machine because they work together to achieve a desired outcome, which is raising the flag. The rope transmits the force you apply by pulling, allowing you to raise the flag on the flagpole.


What forces act in a horizontal direction?

In a horizontal direction, forces such as friction, tension in a rope, and air resistance can act. These forces can affect the motion of an object in different ways depending on the surface and context.


What forces are pulling forces?

There are absolutely no such things as "pulling" forces. Force = mass x Acceleration F = mA That physically means that "the mass" is Accelerating (moving). That physically and absolutely means that the mass can only push. "Pulling" is simply "Pushing" on the inside of any attached grip to any piece of mass.


What are the differences between push and pull forces, and can you provide examples of each?

Push and pull forces are two types of forces that act upon objects. A push force is when an object is pushed away from the force, while a pull force is when an object is pulled towards the force. Examples of push forces include pushing a door to open it, pushing a shopping cart forward, or pushing a book across a table. Examples of pull forces include pulling a door to close it, pulling a sled towards you, or pulling a rope to lift a heavy object.


What 2 things should you describe about a force that acts on an object?

Most objects have more than one force acting on them. Sometimes several forces act all in the same direction, such as when a ball is rolled downhill. Other times forces act in different directions. This is like a tug-of-war with a rope. Some people pull the rope one way, and others pull the opposite way. If the people on both sides are equally strong, then the rope doesn’t move. This is an example of balanced forces. But if the people on one side are stronger than thepeople on the other side, more force will come from the stronger group and they will pull the rope in their direction. This is an example of unbalanced forces. To find the overall effect of forces acting on an object, you add the forces together. This gives you the net force.


In a torsion catapult what are the forces that act upon it?

In a torsion catapult, the main forces that act upon it are the torsional force applied to the twisted rope or spring when it is released, the gravitational force pulling the projectile downward, and air resistance opposing the motion of the projectile through the air. The torsional force causes the arm of the catapult to rotate and launch the projectile forward.


Which describes why the rope and flagpole act as a machine?

Poseidon


What does the phrase Forces act on objects mean?

It means that some force is pushing or pulling on an object.