Albert Einstein created this equation. It means that the formula shows that mass can be converted into energy, and energy can be converted into mass. Einstein made this equation 100+ years ago, and yes, he was right with the theory.
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B. velocity
C. position
D. displacement
Acceleration is defined as the rate of change in the velocity of the moving object, therefore the correct answer is option B.
The rate of change of the velocity with respect to time is known as the acceleration of the object.
The rate of change of displacement is known as the velocity of the moving body and it is given by the expression,
velocity = d(displacement)/dt
The rate of change of velocity is known as the acceleration of the moving body and it is given by the expression,
acceleration = d(Velocity)/DT
Thus, acceleration is defined as the rate of change in the velocity of the moving object, therefore the correct answer is option B.
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The acceleration of the body is defined as the rate of change of velocity.
Further Explanation:
The body is said to be accelerating its velocity is changing with the time. The velocity of a particular body is defined as the rate of change of displacement of the body.
The velocity of a body is represented as:
Here, is the position of the body and is the time
Now when a body moves with a constant speed during its motion, then it is considered as the uniform motion of the body. During the uniform motion of the body, the acceleration of the body remains zero.
But if the velocity of the body is changing along with the time, the body is said to be accelerating. The acceleration of the body is defined as the rate of change of velocity of the body. It is represented mathematically as:
Thus, the acceleration of the body is defined as the rate of change of velocity.
Learn More:
1. If an object is moving at a constant speed in one direction, what is needed to change its speed or direction brainly.com/question/1979936
2. A car traveling at speed v takes distance d to stop after the brakes are applied brainly.com/question/4967602
3. Suppose you are standing on a train accelerating at 0.20 g brainly.com/question/1621778
Answer Details:
Grade: Middle School
Subject: Physics
Chapter: Kinematics
Keywords:
Acceleration, rate of change, velocity, time, position, displacement, constant speed, accelerating, v=dx/dt, a=dv/dt, rate of change of displacement.
The frequency of electromagnetic wave is inversely proportional to the wavelength of the wave.
The speed of a wave is directly proportional to the wavelength of the wave.
v = fλ
where;
The frequency and wavelength of electromagnetic waves is related by the following equation as shown below;
Thus, we can conclude that the frequency of electromagnetic wave is inversely proportional to the wavelength of the wave.
Learn more here:brainly.com/question/19337414