Force is best represented by the formula F=ma, where F is the force, m is the mass of an object, and a is the acceleration. This formula demonstrates how force is related to the mass of an object and the acceleration it experiences.
The equation can be rewritten as F = ma, where F represents force, m represents mass, and a represents acceleration.
The dimensional formula of force constant is MLT⁻², where M represents mass, L represents length, and T represents time.
The length of a force arrow represents the magnitude or strength of the force, with longer arrows indicating a stronger force. The direction of the force arrow represents the direction in which the force is being applied on an object.
False. The formula used to find force is usually given as F = ma, where F represents force, m represents mass, and a represents acceleration.
The dimensional formula of force is ([M] \cdot [L] \cdot [T]^{-2}), where ([M]) represents mass, ([L]) represents length, and ([T]) represents time.
The equation can be rewritten as F = ma, where F represents force, m represents mass, and a represents acceleration.
The dimensional formula of force constant is MLT⁻², where M represents mass, L represents length, and T represents time.
The length of a force arrow represents the magnitude or strength of the force, with longer arrows indicating a stronger force. The direction of the force arrow represents the direction in which the force is being applied on an object.
False. The formula used to find force is usually given as F = ma, where F represents force, m represents mass, and a represents acceleration.
The dimensional formula of force is ([M] \cdot [L] \cdot [T]^{-2}), where ([M]) represents mass, ([L]) represents length, and ([T]) represents time.
The formula used to find force is F = ma, where F represents force, m represents mass, and a represents acceleration. This formula is derived from Newton's second law of motion, which states that force is equal to mass multiplied by acceleration.
Force 12 is hurricane force.
The force represents the ratio between the rotational work and the radius of rotation.
Newton's Second Law of Motion states that force is equal to an object's mass multiplied by its acceleration. This law is expressed as the equation F = ma, where F represents force, m represents mass, and a represents acceleration.
Torque is a measure of the rotational force applied to an object about an axis. It is calculated as the product of the force applied and the distance from the axis of rotation. In simpler terms, it represents the ability of a force to rotate an object around a fixed axis.
True!. Sierra Ambrosio"))
The direction of the arrow represents the direction of the force; the length of the arrow is proportional to the magnitude of the force.