The force applied to the object can be calculated using Newton's second law, which states that force equals mass multiplied by acceleration. In this case, the force applied would be 40 N (5.0 kg * 8.0 m/s^2).
The force applied to the object is 4.0 N. This is determined using the formula: force = mass * acceleration. Plugging in the values, force = 2.0 kg * 2.0 m/s^2 = 4.0 N.
The factors that determine how much an object accelerates when a force is applied to it are the magnitude of the force applied and the mass of the object. The greater the force applied, the greater the acceleration of the object. Conversely, the greater the mass of the object, the smaller the acceleration for a given force.
When a force is applied to an object, it can cause the object to accelerate, change shape, or deform depending on the strength and direction of the force. The object will experience a change in motion or internal stress in response to the applied force.
Then the object accelerates; its velocity changes.Then the object accelerates; its velocity changes.Then the object accelerates; its velocity changes.Then the object accelerates; its velocity changes.
The speed of the object will increase.
The force applied to the object is 4.0 N. This is determined using the formula: force = mass * acceleration. Plugging in the values, force = 2.0 kg * 2.0 m/s^2 = 4.0 N.
The factors that determine how much an object accelerates when a force is applied to it are the magnitude of the force applied and the mass of the object. The greater the force applied, the greater the acceleration of the object. Conversely, the greater the mass of the object, the smaller the acceleration for a given force.
The object accelerates.
When a force is applied to an object, it can cause the object to accelerate, change shape, or deform depending on the strength and direction of the force. The object will experience a change in motion or internal stress in response to the applied force.
An object accelerates in the direction of the net applied force, which is the vector sum of all applied forces.
It accelerates as long as the force is applied, and after that it continues at a uniform speed and direction.
Then the object accelerates; its velocity changes.Then the object accelerates; its velocity changes.Then the object accelerates; its velocity changes.Then the object accelerates; its velocity changes.
It accelerates as long as the force is applied, and after that it continues at a uniform speed and direction.
The speed of the object will increase.
The amount of force applied to an object over a certain amount of time is equal to its impulse, which is the product of force and time. Impulse helps to quantify the change in momentum of an object due to the force applied to it over a period of time.
When an unbalanced force acts on an object, the weight of the object decreases.
Force creates motion by overcoming inertia, which is the tendency of an object to resist changes in its state of motion. When a force is applied to an object, it accelerates in the direction of the force, causing it to move. The greater the force applied, the greater the acceleration and resulting motion of the object.