Vi=12m/s Vf=16m/s t=8s a=? a=Vf-Vi/t=16-12/8=4/8=1/2 a=0.5m/s^2
The rate of change of velocity per unit time is called acceleration.
Its SI unit is m/s².
Formula of acceleration is v-u/t
Heterogeneous mixture
Element
Compound
Answer:
It is Reflection of light from water surface
Explanation:
When light coming from the mountains incident on the stationary water surface then major proportion of light gets reflected from the surface of water and this will received by the observer eye.
We also know that when light beam gets reflected into the form of beam then it is known as regular reflection.
Here when water surface is calm then the surface is assumed to be plane and in this case the light gets reflected by the surface of water in same direction and we got a good image in the water.
So this property of image is due to reflection of light.
Answer:
True
Explanation:
As per the gravitational law, the gravitational force (F) can be expressed as
------------- (1)
where,
Gravitational force
Gravitational constant
Mass of the Earth
Mass of the object
Distance between Earth and object
Also, the force due to gravity,
------------- (2)
where,
Gravitational force
Acceleration due to gravity
Mass of the object
Deducing both the equations
From the above equation it is clear that the acceleration due to gravity is independent of the mass of the object.
The kinetic energy (KE) is calculated using the formula KE = 1/2 * m * v^2, resulting in a kinetic energy of 1.0 Joule for a 2.0 kg guinea pig moving at a speed of 1.0 m/s.
The kinetic energy (KE) of an object in motion is determined by the formula: KE = 1/2 * m * v^2, where m is the mass and v is the velocity. For the guinea pig in question, with a mass (m) of 2.0 kg and a velocity (v) of 1.0 m/s, the calculation is as follows:
KE = 1/2 * 2.0 kg * (1.0 m/s)^2
KE = 1/2 * 2.0 kg * 1.0 m^2/s^2
KE = 1.0 kg * 1.0 m^2/s^2
KE = 1.0 Joule
Therefore, the kinetic energy of the 2.0 kg guinea pig running at a speed of 1.0 m/s is 1.0 Joule.
The kinetic energy for the above data is 1.0000 J.