In the scale model, Mount Everest would have a height of 0.0138 cm.
The Earth is not a perfect sphere, in some places it is flattened and in other places it is not, because of this characteristic the radius of the Earth is not the same everywhere in the world. In the polar zones the radius has a distance of about 6357km, while in the equatorial zones the radius is 6378km.
In a scale model of the Earth in which the radius is equivalent to 10cm, each cm would be equivalent to 635.7km. We must keep in mind that Mount Everest has a height of 8.8 km above sea level.
According to the information above, in the scale model, Mount Everest would have a height of 0.0138 cm.
8,8km ÷ 635,7km = 0.0138.
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Answer and Explanation:
Sedimentary structures can decide the paleo current bearing of the antiquated past. Those can be decide by the assistance of structures like current sheet material, separating lineation and so on.
It can decide the paleo stream system condition. At lower stream system we discover structures like wave, hill and so on. At higher stream system we discovered enemy of ridge, separating lineation and so on.
It helps to determine whether the bed is older or younger. Suppose you are getting a sole marking structure. It found at the base of the bed. So where there is a sole marking we can able to tell the top bed is younger.
The prepositional condition can be known like whether it was earthbound or marine. Marine condition will indicate limestone store though earthbound shows sandstone store.
Tells about the marine offense and relapse condition. Offense shows fining upward succession though relapse shows coarsening upward grouping.
(B) Wind turbines convert potential energy into kinetic energy.
(C) The EROI ratio is 23:1, more efficient than nuclear or coal power.
(D) A downside to wind power is that wind varies from time to time and from place to place.
Answer:
(B) Wind turbines convert potential energy into kinetic energ
Metamorphic
may contain calcite
non-visible minerals
Foliated
may contain serpentine
may contain micas
Non-foliated
formed by contact metamorphism
formed by regional metamorphism
Answer:
Principal characteristics of a slate are:
It's a Metamorphic rock
As e metamorphic rock it is Foliated
It's origin is Regional metamorphism
Is a fine-grain rock, for that reason it has non-visible minerals
A slate is composed by principally by clay and Micas.
Explanation:
Slate rocks are fine-grain metamorphic rocks which original rock use to be a shale or a vocanic rock. It is foliated, becase of compression stress produced by regional metamorphism, it means, orogenic metamorphism common in compresive plate boundaries. The foliation are planes perpendicular to the stress direction. It has non visible minerals because of the size of it's original components; usually it comes from shales, sedementary rock with clay minerals that after metamorphism sometimes become micas.
Explanation:
An air mass is a body of air with a relatively constant temperature and moisture content over a significant altitude. Air masses typically cover hundreds, thousands, or millions of square kilometers. A front is the boundary at which two air masses of different temperature and moisture content meet.
Answer:
Polar climates invariably exhibit low precipitation values because there is no humidity in those areas.
Explanation:
The polar climate is characterized by having almost permanently temperatures below 0 ° C; and little rainfall. The humidity in the air is non-existent and the wind is usually quite intense, which makes living conditions in this climate very bad.
The polar climate occurs mainly in the two poles, reaching more severe conditions in Antarctica, since being a continent, temperatures are cooler than those of the North Pole, reaching -70, -80 and even -89.5 ° C (record on the Earth's surface). The climate of the highest areas of the main mountain ranges of the planet closely resemble the polar, being able to occur on the summits of the Himalayas, the Andes or the mountains of Alaska.