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1
Newton's Third Law of Motion applies to which of the following situations?
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Answer & Solution
Answer: Option A
Solution:
Let's understand why Option A is the correct answer and what Newton's Third Law of Motion is all about.

Newton's Third Law of Motion states that for every action, there is an equal and opposite reaction. This means whenever one object pushes or pulls another object (the action), the second object pushes or pulls back on the first object with the same strength but in the opposite direction (the reaction). These forces always come in pairs and act on different objects.

Let's look at the options:

Option A: When a person jumps from the boat to the river, the boat goes backwards.
This is a perfect example of Newton's Third Law.
Action: The person pushes the boat backwards with their feet to jump forward.
Reaction: The boat, in turn, pushes the person forward, allowing them to jump. At the same time, because of the force the person applied, the boat moves backwards. The forces are equal in strength and opposite in direction, acting on two different objects (person on boat, boat on person).

Option B: Passengers standing in a bus fall in the back direction, when the stationary bus suddenly moves.
This situation is explained by Newton's First Law of Motion, also known as the Law of Inertia. When the bus suddenly moves forward, the passengers' bodies tend to stay in their original state of rest due to inertia, making them fall backward relative to the bus.

Option C: When a person falls on the cement floor, he gets hurt.
This relates to Newton's Second Law of Motion and the concept of impact. When a person falls on a hard surface like cement, the stopping time (the time it takes for their body to stop moving) is very short. A very short stopping time leads to a very large force being exerted on the person, causing injury. If the stopping time were longer (like falling on a soft mat), the force would be smaller.

Option D: While catching a fast moving cricket ball, a fielder puts his hands backwards.
This is also explained by Newton's Second Law of Motion. By moving his hands backward, the fielder increases the time it takes for the ball to stop. When the time of impact is increased, the average force exerted by the ball on the fielder's hands is reduced, which helps prevent injury.

Therefore, only Option A directly demonstrates the "action-reaction pair" principle of Newton's Third Law.
2
For every action there is an equal and opposite reaction. The law was given by
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Answer & Solution
Answer: Option A
Solution:
The correct answer is A: Isaac Newton.
This question refers to one of the most fundamental laws in physics: Newton's Third Law of Motion.

Newton's Third Law states: For every action, there is an equal and opposite reaction.
This means that if object A exerts a force on object B, then object B simultaneously exerts a force equal in magnitude and opposite in direction on object A.

Isaac Newton formulated this law, along with his other laws of motion, which are the foundation of classical mechanics.

Let's look at why the other options are incorrect:
Albert Einstein is famous for his theory of relativity, particularly E=mc², not Newton's Laws of Motion.
Niels Bohr is known for his model of the atom and contributions to quantum mechanics.
Duncan Haldane is a more recent Nobel laureate known for his work in condensed matter physics, specifically topological phases of matter.

Therefore, the answer is definitively Isaac Newton.
3
Newton's second law of motion:
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Answer & Solution
Answer: Option C
No explanation is given for this question. Let's Discuss on Board
4
When the car turns on a curved road, the passengers sitting in it feel a force on themselves in the opposite direction of the center, this force is due to . . . . . . . .
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Answer & Solution
Answer: Option A
Solution:
1. When a car turns on a curved road, the passengers feel a force that appears to push them outward, away from the center of the curve. This force is commonly referred to as centrifugal force.

2. Centrifugal force is not a real force but is rather a perceived force experienced due to the inertia of the passengers. It is the result of the tendency of an object to move in a straight line while the car is changing direction.

3. The sensation of this force is due to the inertia of the passengers' bodies, which want to continue moving in a straight line. As the car turns, the passengers feel pushed to the outside of the curve.

4. The other options are not correct because:

- Inertia is the property of an object to resist changes in its state of motion, but it is not the force that passengers feel.

- Centripetal force is the force that acts towards the center of the curve, keeping the car (and passengers) on the curved path. It is not the force felt by passengers; rather, it is the force responsible for making the turn possible.

- Gravitational force is the force of attraction between objects due to their masses and does not relate to the sensation experienced when turning on a curved road.

Thus, the correct answer is Option A: centrifugal force.
5
The speed of an ant is 75 cm/sec. The ant travels in a day is
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Answer & Solution
Answer: Option A
Solution:
1. To find the distance traveled by the ant in one day, we need to convert its speed from cm/sec to m/day.

2. The given speed of the ant is 75 cm/sec. To find the distance traveled in one day, we need to calculate how many seconds are in a day.

3. There are 24 hours in a day, 60 minutes in an hour, and 60 seconds in a minute, so:

24 × 60 × 60 = 86400 seconds in a day.

4. Now, we can calculate the distance traveled in a day by multiplying the speed by the total number of seconds in a day:

75 cm/sec × 86400 sec/day = 6480000 cm/day.

5. To convert the distance from cm to m, we divide by 100 (since 1 m = 100 cm):

6480000 cm/day ÷ 100 = 64800 m/day.

6. Therefore, the correct answer is Option A: 64800 m/day.
6
The motion of a body around a circular path is an example of
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Answer & Solution
Answer: Option C
No explanation is given for this question. Let's Discuss on Board
7
A 70 kg man pushes a 50 kg man with the force of 50N. How much force has a 50 kg man pushed the other person?
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Answer & Solution
Answer: Option A
Solution:
Understanding Newton's Third Law:
Newton's Third Law of Motion states that for every action, there's an equal and opposite reaction.

Let's break down the question:
A 70 kg man (let's call him Man A) pushes a 50 kg man (Man B) with a force of 50N.
This 50N force is the 'action'.

According to Newton's Third Law, Man B will push back on Man A with an equal and opposite force.
This means Man B also pushes Man A with a force of 50N.

Therefore, the answer is A: 50N
The masses of the men are irrelevant to the force of the reaction; only the action force matters when applying Newton's Third Law.
8
The rate of change in momentum of a body is proportional to . . . . . . . .
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Answer & Solution
Answer: Option B
No explanation is given for this question. Let's Discuss on Board
9
Electrostatic force is
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Answer & Solution
Answer: Option A
No explanation is given for this question. Let's Discuss on Board
10
Zero acceleration means . . . . . . . .
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Answer & Solution
Answer: Option A
No explanation is given for this question. Let's Discuss on Board