Newton's second law states that a body of mass m subject to a force F undergoes an acceleration a that has the same direction as the force and a magnitude that is directly proportional to the force and inversely proportional to the mass, i.e., F = ma. This enables you to calculate forces and accelerations of masses.
# Linear # Reciprocating # Oscillating # Rotary
law of inertia
Newton's second law of motion states that the acceleration of a system is directly proportional to and in the same direction as the net external force acting on the system, and inversely proportional to its mass.so the answer is Newton's second law of motion. gimme a good raction plz
Newton's second law is denoted by the equation ,F = ma ,this equation is known as equation of motion of a mass point and this turns out to be the another name for Newton's Second Law of Motion.
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newton first law of motion newton second law of motion newton third law of motion newton gravitation law of motion
1- the first law of newton's:- bicycling contains the first law of newton's 2- the second law of newton's:- pushing a car contains the second law of newton's 3- the third law of newton's:- the launching of a rocket contains the third law of newton's guess this is correct...:) :D
Newton was.
Newton's second law of motion states that an object's acceleration is directly related to the net force applied and inversely related to the mass of the object.
Isaac Newton, he discovered: -Newton's First Law of motion. -Newton's Second Law of motion. -Newton's Third Law of motion.
By second law, force can be measured
You cannot. Newton's third law is independent of the first and second laws.
yes
No, it's the other way around. Newton's third (also first) law can be mathematically derived from his second law.
No, it's the other way around. Newton's third (also first) law can be mathematically derived from his second law.
Newton's Second Law is F=ma, force (f) is the product of mass (m) times acceleration (a).
The second law of motion by Newton is known as the law of acceleration. It states that the acceleration of an object is directly proportional to the net force acting on it and inversely proportional to its mass. This law is mathematically represented as F = ma.