Is the following statement true or false a ball is moving upwards and to the left the net forces acting on it are also upwards and to the left?

Is the following statement true or false a ball is moving upwards and to the left the net forces acting on it are also upwards and to the left? The net forces acting on it are also upwards and to the left . Is this true or false. The net force acting on the object

Is the following statement true or false a ball is moving upwards and to the left the net forces acting on it are also upwards and to the left? Read More »

When a ball is moving on a frictionless horizontal surface with no force applied on it?

When a ball is moving on a frictionless horizontal surface with no force applied on it? Expert-Verified Answer Answer:Since there is no external forces are acting on a ball . The ball will move with constant speed. Explanation:According to the Newton First law of motion the body will remain in its state of motion unless

When a ball is moving on a frictionless horizontal surface with no force applied on it? Read More »

Which has a greater momentum a car moving at 40 mph or the same car moving at 80 mph?

Which has a greater momentum a car moving at 40 mph or the same car moving at 80 mph? The momentum of a moving object is equal to its mass multiplied by its velocity. An object has a large momentum if either its mass or its velocity is large. Thus, a fast-moving car has more

Which has a greater momentum a car moving at 40 mph or the same car moving at 80 mph? Read More »

Why if a ball is released horizontally and then the same ball is released vertically they hit the ground at the same time?

Why if a ball is released horizontally and then the same ball is released vertically they hit the ground at the same time? Both of the balls are falling vertically under the influence of gravity. They both fall from the same height. Therefore, they will hit the ground at the same time. The fact that

Why if a ball is released horizontally and then the same ball is released vertically they hit the ground at the same time? Read More »