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Ivan
4 years ago
8

Weathering weakens and breaks apart rocks. This is an example of how weathering affects the Earth’s surface.

Physics
1 answer:
jekas [21]4 years ago
6 0
<span>The softer a rock's composition is the slower it will weather, the harder a rock's composition the faster it will weather. Weathering weakens and breaks apart rocks. This is an example of how weathering affects the Earth's surface. No-Till Farming and Contour Farming are two examples of preventing soil erosion.</span>
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Calculate the amount of work done if you use a 100N force to push a 50kg box 5m across the kitchen floor.
horrorfan [7]

1) B) 500 J

The amount of work done is equal to the product between the force applied (F=100 N) and the distance covered by the box (d=5 m):

W=Fd=(100 N)(5 m)=500 J

2) B)  Tommy had a positive acceleration between noon and 12:30 pm.

In fact, Tommy's velocity increases between noon and 12.30 pm (at noon, he travels at 4 mph, while at 12.30 pm he travels at 6 pm). Since acceleration is equal to the rate of chang in velocity, an increase in velocity means a positive acceleration.

3) C)  The gravitational forces of people is so small it is overshadowed by that of Earth

The magnitude of the gravitational force is given by:

F=G\frac{m_1 m_2}{r^2}

where G is the gravitational constant, m1 and m2 are the masses of the two objects, and r is the distance between the two objects. From this formula we can understand that the gravitational force exerted by a man on another man is negligible compared to the gravitational force exerted by the Earth on a man, since the Earth's mass is much greater than the mass of a man.

4) C)  Wrestler C

The force due to gravity is equal to the weight of the wrestler: W=mg, where m is the mass of the wrestler and g is the acceleration due to gravity. Since wrestler C has the greatest mass (171 pounds), it has the largest weight, so it experiences the largest force due to gravity.

5) the graph here is missing.

6) the graph here is missing.

7) C)  Carrie is, because velocity includes speed plus direction, and both changed.

An object is accelerating when its velocity changes. But velocity includes both speed and direction: therefore, an object is accelerating when either its speed or its direction is changing. In this example, we are told that Carrie and Sam go up and down in the carousel, therefore their velocity is changing direction, so they are accelerating for sure.

8) C)  Chemical energy changes to mechanical energy.

The energy of the battery is chemical energy, and this is converted into kinetic energy (due to the motion of the fan), which is mechanical energy.

9) A)  Their displacement is the same, zero miles

Displacement is equal to the difference between the final position and the initial position. Since the mile consists of 4 entire laps, it means that the two guys will return at their starting point at the end of the mile: therefore, their displacement is zero.

10) A)  Use an inclined plane of length 8 m.

If we want to use the same effort, we must keep the proportions of the inclined plane the same as in the first example. In the first example, the ratio between the length of the incline and its height is 4:1, and since in the second example the height is increased to 2 m, to keep the same proportions the new ratio should be 8:2, so the length of the inclined plane must be 2 m.

6 0
4 years ago
Read 2 more answers
Which of the following has the highest frequency?
rewona [7]
B. 100% sure

Have a good day/night
3 0
3 years ago
Read 2 more answers
What is the fundamental frequency on a 8 m rope that is tied at both ends if the speed of the waves is 16 m/s?
lana [24]

Answer:

1 Hz

Explanation:

For rope fixed on both ends the length corresponds to λ/2  (λ is wavelength)\

 Thus L =  λ/2

=> λ = 16 m

We know that frequency and wavelength are related as

 f x λ = v   where f is frequency and v is speed of the wave

thus f = v/λ

        f = 16/16 =1 Hz

6 0
3 years ago
How do microwaves help heat frozen food?
tatiyna
The answer is A The waves filter ice from food
8 0
3 years ago
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What is the electric force acting between two charges of 0.0042 C and −0.0050 C that are 0.0030 m apart?
Black_prince [1.1K]

Answer:

A.−2.1 × 10^10 N

Explanation:

Using the formula;

E = k Q1Q2/d²

Where;

E is the electrical force  

k is the constant  

Q1, Q2 are the two charges  and

d is the distance between the two charges

Therefore;

E = (9 x 10^9) × (0.0042) × (-0.0050) / (0.0030)²  

 = -2.1 x 10^10 N

Therefore; electrical force acting between the two charges is -2.1 x 10^10 N.

6 0
4 years ago
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