If the deflection of a spring is doubled, then how much does the force change?

Answers

Answer 1
Answer:

If the deflection of the spring is doubled, the force exerted by the spring will also be doubled.

What is the Hooke's Law?

The relationship between the deflection of a spring and the force it exerts is described by Hooke's Law, which states that the force exerted by a spring is directly proportional to its deflection. Mathematically, this can be expressed as:

F = kx

where F is the force exerted by the spring, x is the deflection of the spring, and k is the spring constant, which represents the stiffness of the spring.

If we double the deflection of the spring, then x becomes 2x, and the force exerted by the spring becomes:

F = k(2x) = 2kx

Thus, if the deflection of the spring is doubled, the force exerted by the spring will also be doubled (assuming the spring constant remains constant).

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Answer 2
Answer:

Answer:

The force is doubled as well.

Explanation:

If you double the spring then the force doubles as well.


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the wires inside a cable each have there own plastic insulation .why does the insulasion have diffrent colours

Answers


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a race car is traveling at a speed of 80.0m/s on a circular race track of radius 450m what is the centripetal acceleration

Answers

Answer:

The answer of this question is =1.258*10-4

Objects in a composition occupy ____________.a. negative space
c. symbolic form
b. the forefront
d. positive space

Answers

Answer:

D. Positive space

Step-by-step explanation:

We are given that,

'Objects in a composition occupy ___'.

We know that,

In a composition the space occupied by the given object is known as the positive space, whereas any space around the object is known as the negative space.

So, we get that,

Objects in a composition occupy positive space.

Thus, option D is correct.

Objects in composition occupy a positive space.

Which one of the following statements about vitamins is most accurate? A. Vitamins help produce the immune response. B. Vitamins store energy from carbohydrates, lipids, and proteins. C. Vitamins restrict new tissue growth. D. Vitamin overdose restricts reproductive capacity.

Answers

Answer: Option (A) is the correct answer.

Explanation:

Vitamins are the organic compounds which are necessary for normal growth and provide nutrition to the body.

Vitamins help in conversion of food into energy  and repair cellular damage.

For example, Vitamin C helps in boosting immune system. Vitamin B6 helps in the biochemical reactions occurring in the immune system.

Thus, we can conclude that out of the given options, the statement Vitamins help produce the immune response is most accurate.

The most accurate statement about vitamins is vitamins help produce the immune response. (Option A)

What are the functions of vitamins?

Vitamins play a crucial role in supporting the immune system by promoting the production and functioning of immune cells, aiding in the synthesis of antibodies, and assisting in the maintenance of overall immune health.

They act as cofactors or coenzymes in various biochemical reactions that are essential for the immune response.

While all vitamins are important for overall health, certain vitamins, such as;

  • vitamin C
  • vitamin D, and
  • the B vitamins

are particularly known for their immune-supporting properties.

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An internal combustion engine uses fuel, of energy content 44.4 MJ/kg, at a rate of 5 kg/h. If the efficiency is 28%, determine the power output and the rate of heat rejection

Answers

Efficiency =  Power Output / Power Input

Power Input = Rate of Energy input = 44.4 MJ/kg * 5 kg/h

 = 222 MJ/h

But 1 hour = 3600seconds

222 MJ/h = 222 MJ/3600s =  0.061667 MW              J/s = Watts

Power input = 0.061667 MW = 61 667 W

From  Efficiency =  Power Output / Power Input

   28% =  Power Output / 61667

   Power Output = 0.28 * 61667

   Power Output = 17266.76 W
 
  Power Output = 17 267 W

 Rate of heat Rejection = Power input - Power output

                                        = 61667 - 17267 = 44400 W

Rate of heat Rejection = 44 400 W.


C- Copyright.

What is the length of an aluminum rod at 65°C if its length at 15°C is 1.2 meters?

Answers

Answer:

The new length is 1.20138 m

Explanation:

1- We get the increase in length:

The old length = 1.2 m

The coefficient of expansion of of aluminum is 23 * 10⁻⁶ /K.

The old temperature is 15°C.

The new temperature is 65°C

The increase in length= old length * coefficient of expansion *change in temperature

The increase in length = 1.2 * 23 * 10⁻⁶ * (65-15)

The increase in length = 0.00138 m

2- getting the new length:

new length = old length + increase in length

new length = 1.2 + 0.00138

new length = 1.20138 m

Hope this helps :)

1.201386 meters at 65 degrees C.      
 Will be your answer!

Hope I Helped!