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The force involved in the motion of a bullock cart is primarily friction between the wheels and the ground. As the bullocks pull the cart forward, the friction between the wheels and the ground allows for the transfer of kinetic energy to move the cart.

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1y ago

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What force is used to pull a cart?

The force used to pull a cart is typically known as friction. Friction acts in the direction opposite to the motion of the cart, requiring a force to overcome it and move the cart forward. Other forces, such as gravity or applied force, can also be involved depending on the specific situation.


What are some forces involve if you pushing a cart?

When you push a cart, the main forces involved are your applied force in the direction you're pushing, the force of friction between the cart's wheels and the ground resisting movement, and the normal force exerted by the ground on the cart to support its weight. Additionally, there may be air resistance opposing the motion of the cart, depending on the speed and shape of the cart.


What will the motion of the cart be like when there is no force at all?

he do not do any motion


What will the motion of the cart be like when there is no force at all there is no force friction in this model?

If there is no external force acting on the cart and no friction present, the cart will continue to move in a straight line at a constant velocity due to its inertia. It will keep moving unless acted upon by an external force.


How many forces acts on the horse-cart system?

In a horse-cart system, there are typically three main forces acting on the system: the force of the horse pulling the cart forward, the force of friction between the wheels and the ground resisting motion, and the force of gravity acting downwards on the horse and cart.

Related Questions

What force is used to pull a cart?

The force used to pull a cart is typically known as friction. Friction acts in the direction opposite to the motion of the cart, requiring a force to overcome it and move the cart forward. Other forces, such as gravity or applied force, can also be involved depending on the specific situation.


Who invent bullock cart?

Sylvan Goldman of Oklahoma City invented the bullock cart. The bullock cart is a four wheeled vehicle that is pulled by an oxen.


What are some forces involve if you pushing a cart?

When you push a cart, the main forces involved are your applied force in the direction you're pushing, the force of friction between the cart's wheels and the ground resisting movement, and the normal force exerted by the ground on the cart to support its weight. Additionally, there may be air resistance opposing the motion of the cart, depending on the speed and shape of the cart.


Who invented the first bullock cart?

first bullock cart is invented in india . in 1616


Who invented first Bullock Cart?

first bullock cart is invented in India . in 1616


If the force acting on a cart doubles what happens to the cart's motion?

it goes faster i assume.


Who invented the bullock cart?

The bullock cart is a cart that is used to carry goods or supplies. It was a major source of transportation when it was originally invented. The bullock cart was invented by a Scottish man named John Shepherd Barron.


What Transport did they use in the olden days-bullock cart?

The ox or bullock cart was a form of transportation in the past. It is a cart that was pulled by a cow or bullock. They are still used in many parts of the world.


What will the motion of the cart be like when there is no force at all?

he do not do any motion


What are the definitions of force and motion?

The answer is like force can be pull or push.Both are force.For example if you are pushing a shopping cart full of milk,that is force from your muscles.It is motion to.


Where was the first bullock cart invented?

india


What will the motion of the cart be like when there is no force at all there is no force friction in this model?

If there is no external force acting on the cart and no friction present, the cart will continue to move in a straight line at a constant velocity due to its inertia. It will keep moving unless acted upon by an external force.