Why is a raindrop a particularly damaging element to soil

Answers

Answer 1
Answer:

Answer:

Raindrops are considered damaging to the soil in the following ways:

  1. If it is too wet or too dry, nutrients in the soil can run off and not make it to the plants' roots, leading to poor growth and overall health.
  2. over-watering or too much rain can also lead to bacteria, fungus, and mold growth in the soil
  3. If the average rainfall is much lower or higher than the ideal, it can lead to significant problems, from drowned crops to lower yields.
  4. The soil can also start to collect bacteria, mold, and fungus, which can then be absorbed by the plant. While this isn’t as common in crops as it is in indoor plants, poor drainage and irrigation systems can lead to these types of growths taking control over your crops.
  5. raindrops when it is excessive can lead to erosion and leaching of the soil
  6. soil loss is mostly affected by increasing runoff discharge of rainwater                                      

Cheers!

Answer 2
Answer: Rain drop causes Erosion

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What is the polarity of each of the earths magnetic poles ? Explain you answer

Answers

Answer:

When you put un-like poles together (South facing North) you can feel magnetic attraction. In the Northern Hemisphere, your compass needle points North, but if you think about it for a moment, you will discover that the magnetic pole in the Earth's Northern Hemisphere has to be a South polarity.

Which of the following voltages would most likely be used as a primary distribution voltage by an electric utility company?a. 120 V
b. 440 V
c. 4,160 V
d. 69,000 V

Answers

Answer:

c. 4,160 V

Explanation:

Primary distribution voltage by electric utility company are often distributed around 3 Kv to 35 Kv, which would be a range between 3,000 V to 35,000 V because in order to be consumed by the public they use transformers to lower the voltage to less than 1Kv this can be used in domestic usage, so form the options the one that most likely would be used as a primary distribution voltage is 4,160 V.

The answer is D.69,000 V.

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A string is wrapped around a pulley with a radius of 2.0 cm. The pulley is initially at rest. A constant force of 50 N is applied to the string, causing the pulley to rotate and the string to unwind. If the string unwinds 1.2 m in 4.9 s, what is the moment of inertia of the pulley

Answers

Answer:

0.20kg-m^2

Explanation:

Let the linear velocity of the rope(=of pulley) is v m/s

Using kinematic equation

=> v = u + at

=>v = 0 + 4.9a

=>v = 4.9a ------------ eq1

By v^2 = u^2 + 2as

=>v^2 = 0 + 2 x v/4.9 x 1.2

=>4.9v^2 - 2.4v = 0

=>v(4.9v - 2.4) = 0

=>v = 2.4/4.9 = 0.49 m/s

Thus by v = r x omega

=>omega = v/r = 0.49/0.02 = 24.49 rad/sec

BY W = F x s = 50 x 1.2 = 60 J

=>KE(rotational) = W = 1/2 x I x omega^2

=>60 = 1/2 x I x (24.49)^2

=>I = 0.20 kg-m^2

If chris throws a baseball 60 meters in 4 seconds, what is the average speed of the football?

Answers

The average speed of the football is 15 meters per second. Just divide both of the numbers by 4 :)

The photos of an electromagnetic wave us 1. 5 × 10^-24 j of energy , what kind of electromagnetic waves are they ?

Answers

The electromagnetic waves with an energy of 1.5 * 10^(-24)  J are likely X-rays.

The energy of an electromagnetic wave is related to its frequency and wavelength by the equation:

E = hf = hc/λ

where:

E = energy of the electromagnetic wave

h = Planck's constant (6.626 * 10^(-34)  J s)

f = frequency of the electromagnetic wave

c = speed of light (3.00 * 10^8 m/s)

λ = wavelength of the electromagnetic wave

Solving for λ:

λ = hc/E = (6.626 * 10^(-34)  J s)(3.00 * 10^8 m/s)/(1.5 * 10^(-24)  J)

λ ≈ 4.40 * 10^-8 m

This corresponds to a wavelength of about 44 nanometers, which falls in the range of X-rays. Therefore, the electromagnetic waves with an energy of 1.5 * 10^(-24)  J are likely X-rays.

for such more question on electromagnetic Wave

brainly.com/question/25847009

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The kinetic energy of the diver is 5040 J. The speed of the diver is 12 m/s. Calculate the mass of the diver.What's the mass of the diver?​

Answers

Answer:

  • 70 kg

Explanation:

We know that,

  • Kinetic energy = 1/2 mv²

Where m is mass and v is velocity or speed.

Putting the required values,

  • 5040 = 1/2 × m ( 12 × 12)
  • 5040 × 2 = m × 144
  • 10080 = m × 144

divide both side by 144

  • m = 70 kg

So the mass of the diver is 70 kg respectively.