A body wave<span> is a seismic </span>wave<span> that moves through the interior of the earth, as opposed to surface </span>waves<span> that travel near the earth's surface. P and S </span>waves<span> are </span>body waves<span>. Each type of </span>wave<span> shakes the ground in different ways.
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At some point in an earthquake, solid rock produces more shaking and building damage than loose, water-saturated soils. Stresses purpose rocks to deform; earthquakes arise as the rock can now not deform and ruptures
While earthquake surprise takes place in waterlogged soils, the water-filled pore spaces fall apart, which decreases the general volume of the soil. This technique increases the water pressure between character soil grains, and the grains can then move freely within the watery matrix.
But, earthquake shaking can disrupt the shape, the soil particles do not guide all the weight, and the groundwater strain starts offevolved to rise. The soil debris can circulate farther, and come to be entrained within the water--the soil flows. Liquefied soil will pressure open floor cracks so one can get away from the floor.
Learn more about earthquakes here:
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The Cryosphere is basically ice, and bears interact with it because polar bears use the ice to help them fish and they dig into the ice to make dens.
Answer:
Egipto
Sudáfrica
Indonesia
Groenlandia
Costa rica
Explanation:
Espero que esto es lo que necesitabas
<h2>
Answer: It is the same force that causes an apple to fall to the ground.</h2>
The force that makes two galaxies to be attracted to each other is the same force that causes an apple to fall to the ground. This is known as the Gravity Force.
This force was named by Issac Newton, after some empirical observations in nature and then he published the Universal Law of Gravitation on 1687:
<em>The force
exerted between two bodies of masses
and
and separated by a distance
is equal to the product of their masses and inversely proportional to the square of the distance.</em>
Written in a mathematical form is:

Where
is the gravitational constant
So, this force between two bodies (two galaxies or an apple and the ground) is directly proportional to the product of the mass of both and inversely proportional to the square of the distance that separates both bodies.
This means the gravity force <u>decreases</u> when the distance between these two bodies <u>increases</u>.
Therefore, the correct option is a.