Answer:
B. The kinetic energy of the system is partially used for deforming the car.
Explanation:
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b. solar power
c. geothermal power
d. none of the above
Answer;
C. geothermal power
Explanation;
Geothermal power is considered to be a sustainable, renewable source of energy because the heat extraction is small compared with the Earth's heat content. It depends the least on weather.
Geothermal energy is the heat from the Earth. It's clean and sustainable. Resources of geothermal energy range from the shallow ground to hot water and hot rock found a few miles beneath the Earth's surface, and down even deeper to the extremely high temperatures of molten rock called magma.
the load distance is approximately 0.2 meters or 20 cm. To calculate the load distance in this scenario, we can use the principle of moments, which states that the sum of clockwise moments about a point is equal to the sum of counterclockwise moments about the same point when an object is in equilibrium.
In this case, we have two forces:
1. A known force of 325 N applied at a distance of 40 cm (0.4 meters) from the point of interest.
2. An unknown force of 650 N applied at an unknown distance, which we need to find.
Let's assume the unknown distance is "d" meters.
Using the principle of moments:
Clockwise Moment = Counterclockwise Moment
(325 N) * (0.4 m) = (650 N) * (d m)
Solving for "d":
d = (325 N * 0.4 m) / 650 N
d ≈ 0.2 meters
So, the load distance is approximately 0.2 meters or 20 cm.
To know more about moments:
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b. What is the speed and angle of impact?
As per the question a stone is projected horizontally from the top of a 20 meter cliff.
Hence the height [h] of the cliff = 20 m.
The stone lands 36.0 m away.
Hence horizontal distance R] = 36 m.
First we are asked to calculate the launching speed of the stone.
Let it be denoted as u.
The motion of particle is the force of gravity only.Hence it is a projectile motion.
The total time taken by a projectile when it is fired horizontally at a height h from the ground is -
[ where g is the acceleration due to gravity = 9.8 m/s^2 or 10 m/s^2]
The range of the projectile will be-
The horizontal speed for a projectile is uniform through out the motion of the projectile as long as gravity is constant.
In this situation the horizontal velocity is equal to the initial projected speed i.e u.
Hence horizontal distance R = u ×T
Putting the value or R and T in the above formula we get-
Now we are asked to calculate the angle of impact.
Initially the vertical velocity of the particle is 0. The path of the trajectory of the particle will be parabolic due to the force of gravity.At any instant of time the horizontal component of the instantaneous velocity of the of the particle will be constant .
Let the horizontal component is denoted as
The vertical component is calculated as follows-
We know that v = u +at
Here v is the final velocity, u is the initial speed, a is the acceleration and t is the instantaneous time.
For vertically downward motion under gravity u = 0 and a = -g
Let the vertical velocity at any instant is denoted as
Hence
[Here we are taking only the magnitude]
Let the resultant velocity makes an angle α with the horizontal when it strikes the ground.
The horizontal and vertical component is denoted in the diagram below-
From the figure we see that -
[ans]
Hence the angle of impact is close to 48 .1 degree .
B. energy
C. electrons
D. neutrons
E. protons
Answer: Option (C) is the correct answer.
Explanation:
An atom consists of three subatomic particles which are protons, neutrons and electrons.
The protons and neutrons are present inside the nucleus. Whereas electrons revolve around the nucleus.
Whenever there is a bond formed by loss, gain or sharing between any two atoms then it is due to the electrons.
Hence, we can conclude that atoms may be bonded together by losing, gaining, or sharing electrons.