answersLogoWhite

0

The formula used to calculate the mass of an object when force and acceleration are known is given by Newton's second law of motion: mass = force / acceleration. This formula states that the mass of an object is equal to the force acting on it divided by the acceleration produced.

User Avatar

AnswerBot

1y ago

What else can I help you with?

Related Questions

How do you calculate the friction force when given the mass and acceleration of an object?

To calculate the friction force on an object, you can use the formula: Friction force mass x acceleration. This formula helps determine the force resisting the object's motion due to friction.


How can I calculate the g force experienced by an object from its acceleration?

To calculate the g force experienced by an object from its acceleration, you can use the formula: g force acceleration / 9.81 m/s2. This formula helps you convert the acceleration of the object into the equivalent force of gravity, measured in multiples of g (9.81 m/s2).


What is the formula in getting force?

The formula to calculate force is F = m * a, where F is the force, m is the mass of the object, and a is the acceleration of the object.


What is the formula used in measuring force?

The formula used to calculate force is: Force = mass x acceleration. This formula describes how a force is generated when an object with mass is accelerated.


How can one determine the friction force when given the mass and acceleration of an object?

To determine the friction force when given the mass and acceleration of an object, you can use the formula: friction force mass x acceleration. This formula helps calculate the force resisting the motion of the object due to friction.


How do you calculate the g force experienced by an object in motion?

To calculate the g-force experienced by an object in motion, you can use the formula: g-force acceleration due to gravity (9.81 m/s2) x the object's acceleration in m/s2. This formula helps determine the force exerted on an object relative to gravity while it is in motion.


How to use Newton's second law to calculate the acceleration of an object?

To calculate the acceleration of an object using Newton's second law, you need to divide the net force acting on the object by its mass. The formula is: acceleration net force / mass. This equation helps determine how quickly an object will change its velocity when a force is applied to it.


How to calculate the punch force in a mechanical system?

To calculate the punch force in a mechanical system, you can use the formula: Force Mass x Acceleration. First, determine the mass of the object being punched. Next, calculate the acceleration of the object during the punch. Finally, multiply the mass by the acceleration to find the punch force.


What is the force formula triangle and how is it used to calculate force in physics?

The force formula triangle is a visual tool used in physics to calculate force. It shows the relationship between force (F), mass (m), and acceleration (a) in the formula F ma. By rearranging the formula triangle, you can solve for force by multiplying mass and acceleration. This helps in determining the force acting on an object based on its mass and acceleration.


What is the net external force formula used to calculate the overall force acting on an object?

The net external force formula is: Fnet ma, where Fnet is the net external force, m is the mass of the object, and a is the acceleration of the object.


How can one determine the total force acting on an object using the keyword "how to find total force"?

To determine the total force acting on an object, you can use the formula: Total Force Mass x Acceleration. This formula combines the object's mass and the acceleration it experiences to calculate the overall force acting on it.


What is the total force formula used to calculate the overall force acting on an object?

The total force acting on an object is calculated using the formula: F ma, where F represents the total force, m is the mass of the object, and a is the acceleration of the object.