The volume of the cube is changing at the rate of 29.4 in³/s.
The rate of change of the sides of the cube is 0.2 in/s, which can be mathematically represented as :
Now the volume of the cube is given by:
V = x³
If we take the time derivative of the above equation then it gives the rate of change of volume with time, so:
At the instant x = 7 in, the rate of change of volume will be:
So the volume is changing at 29.4 cubic inches per second.
Learn more about differential equation:
Answer:
Therefore the volume of cube is change at the 29.4 cube in./s at that instant time.
Explanation:
Formula
Cube :
The volume of a cube is =
The side of length is x in.
Then volume of the cube is (V) =
∴ V =
Differentiate with respect to t
....(1)
Given that the side of the cube is increasing at the rate of 0.2 in/s.
i.e in/s.
And the sides of the cube are 7 in i.e x= 7 in
Putting and x= 7 in equation (1)
cube in./s
=29.4 cube in./s
Therefore the volume of cube is change at the 29.4 cube in./s at that instant time.
The force that opposes your push when you attempt to move a box is the frictional force. In a situation where the box doesn't move, it is specifically static friction. If the box was to move, the opposing force would then be kinetic friction.
When you push on a box and find it difficult to move, the force opposing your push is known as frictional force. This is a resistive force that opposes the motion of an object. In a scenario where the box doesn't move at all despite your push, the static friction is equal to the applied force. However, if the box moves, it is the kinetic friction that is work. Frictional force depends on the nature of the contact surfaces and the normal force (force pushing the two surfaces together).
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When light passes from one medium (water in this case) into another medium with a different refractive index (air), it follows the law of reflection and refraction.
The law of reflection states that the angle of incidence (the angle at which the light enters the second medium) is equal to the angle of reflection (the angle at which the light reflects back into the first medium), both measured with respect to the normal (a line perpendicular to the surface).
In this scenario, the diver shines light into the pond at a 10-degree angle to the normal. When the light reaches the air-water interface, some of it reflects back into the water. According to the law of reflection, the angle of reflection will be equal to the angle of incidence.
So, the correct answer is:
B) 10 degrees.
The angle at which the light reflects back into the water is 10 degrees, the same as the angle of incidence.