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zzz [600]
3 years ago
15

Which element is not found in large quantities in Earth’s mantle? a.Silicon. b.Oxygen. c.Iron. d.Carbon

Geography
2 answers:
Alja [10]3 years ago
8 0
The Answer Is Iron 
and Is 5.8%
frutty [35]3 years ago
4 0
I think the correct answer from the choices listed above is option C. Iron is the element that <span>is not found in large quantities in Earth’s mantle. It only accounts for 5 percent of the Earth's minerals. Oxygen as the most abundant one making up about 47 percent.</span>
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What would you predict would be the impact on the christmas island crab population of a very dry season? (site 1)
mr Goodwill [35]
The correct answer for this question is this one:

<span>The impact on the christmas island crab population of a very dry season is that their spawning will be lesser than compared to the previous years. The effect of the climate change has a greater one with the crab population.</span>
Hope this helps answer your question and have a nice day ahead.
7 0
3 years ago
Read 2 more answers
How does tropics of cancer and capricorn impact on the distribution of biomes
AURORKA [14]

Answer: Here you go

Explanation: A BIOME is a major geographical area characterized by a particular type of plants (flora) and animals (fauna). The major determining factor of what biome will exist in a particular place is CLIMATE. So let's talk about climate for a few minutes.

The ultimate source of climate is the sun, which provides not only the majority of energy on earth, but also creates climatic events when its randomizing energy interacts with the earth.

Less than half of the solar radiation striking the earth's atmosphere successfully penetrates the atmosphere to reach earth.

Terrestrial irradiance (that is, solar radiation that strikes the earth's surface) ranges from approximately 250nm (ultraviolet) to 1500nm (near infrared). Shorter and longer wavelengths are absorbed or reflected by atmospheric ozone, water vapor and other molecules.

When the sun is directly overhead in a cloudless sky, irradiance is most intense and peaks near 540nm ("green").

Environmental conditions and solar angle of incidence affect both intensity and spectral distribution of incident sunlight.

the TROPICS lie between the Tropic of Cancer (23.5o N) and the Tropic of Capricorn (23.5o S). These receive the highest annual input of solar energy, and are the only place on earth that the sun ever shines directly overhead (on the equinoxes, March 21 and September 21).

the SUBTROPICS lie between the Tropic of Cancer and 30oN in the northern hemisphere, and between the Tropic of Capricorn and 30oS in the southern hemisphere. (Miami is in the subtropics)

the TEMPERATE regions lie between 30oN and 60oN in the Northern Hemisphere and between 30oS and 60oS in the Southern Hemisphere.

the POLAR REGIONS lie above 60oN and S

Flora and fauna are profoundly affected by environmental and seasonal changes in solar intensity and spectral distribution. Note also that because the earth is tilted 23.5o on its axis (defining those tropical latitudes), there are seasons in both hemispheres:

Equinoxes (March and September): Day and Night are of equal length

Solstices (December and June): Longest and Shortest Days/Nights of the Year (depending on which hemisphere you're occupying)

Solar warming of earth creates

global air and water vapor movement

This creates climates typical of these regions:

TROPICS: Warm with high levels of precipitation

SUBTROPICS AND TEMPERATE: Comparatively warm and arid

HIGH TEMPERATE: Cool with high levels of precipitation

ARCTIC AND ANTARCTIC: Cold and arid (the polar regions)

Climate also can be affected by local topography:

proximity to ocean, lakes, rivers

mountains and valleys

Which can create smaller, localized ecosystems within biomes.

Major Aquatic Biomes

These occupy most of the biosphere.

Life originated in the oceans, and stayed there for nearly 3 billion years. The oceans are the most influential of all terrestrial features affecting climate and biomes.

Aquatic biomes may be

marine (average salinity 3%)

freshwater (average salinity 1% or less)

brackish (mixture of salt/fresh)

The major types of aquatic biomes are...

1. Freshwater:

lakes/ponds

rivers/streams

2. Freshwater or brackish:

estuaries

wetlands

3. Marine:

intertidal regions

coral reefs (the "rainforest of the sea")

oceanic pelagic zones

abyssal zones

Stratification of Aquatic Biomes by...

LIGHT

Light is absorbed by water and by living aquatic organisms

photic zone - light sufficient for photosynthesis

aphotic zone - light insufficient for photosynthesis

TEMPERATURE

Temperatures vary with depth, and aquatic habitats of any depth generally have a THERMOCLINE--a narrow band of water where temperature suddenly changes.

PRODUCTIVITY

Classification of Freshwater Biomes by Productivity As you will learn later, PRODUCTIVITY is a measure of how much biomass (dry organic matter) a particular ecosystem gains over a specified period of time.

oligotrophic - deep, nutrient poor, water very clear

eutrophic - shallower, nutrient rich, murky with phytoplankton

(a note on CULTURAL EUTROPHICATION)

mesotrophic - in between the above two classifications

Major Terrestrial Biomes

Polar/high mountain ice

Tundra (and more images of Tundra can be seen HERE.)

Coniferous (Boreal) Forest

Temperate Deciduous Forest

Prairie (Temperate Grassland) and more beautiful shots of Prairie can be seen HERE.

Savanna (Tropical/Subtropical Grassland)

Chaparral (Mediterranean Scrub Forest)

Tropical Rainforest

Desert (plus a view of Joshua Tree National Monument and Death Valley National Park. (plus some more artistic shots of Death Valley.

Plant types:

xeriphyte - plant adapted for survival in very dry habitats

hydrophyte - plant adapted for survival in very wet habitats

mesophyte - plant adapted for survival in moderate (not too wet, not too dry) habitats

Recall the link between soil nutrient content and precipitation.

Which of these biomes has the highest productivity?

Which has the highest and lowest soil nutrient content?

Which are most useful to humans for agriculture?

3 0
3 years ago
Read 2 more answers
Which of the following best describes the influence of latitude on climate?
natita [175]

D. Temperate regions receive more solar energy and heat per unit area then tropical regions.

5 0
4 years ago
Read 2 more answers
In much of what is now Canada, glaciers covered the land as little as 12,000 years ago and glacial erosion scoured the land surf
irinina [24]

The reason why the Midwestern United States have a very fertile soil, but Canada doesn't, despite both of them being covered by glaciers until relatively recently, and both having the same age of soil, is the climate and vegetation.

Canada is much colder than the Midwest, its winters are longer, and the summers mild, while the Midwest has higher temperatures, prolonged period of drought, and seasonal rainfall.

Because of this, Canada has been covered by coniferous forests. They leave relatively little biomass, and also the climate is making the decomposition of the biomass very slow, thus resulting in relatively poor soil quality.

In the Midwest, the climate is perfect for the development of the grasslands. The grasses grown and die each year. They live a lot of biomass, and the higher temperatures contribute that the biomass decomposes pretty quickly, thus resulting in good quality soil.

3 0
3 years ago
Wasp-32b orbits with a period of only 2.7 days a star with a mass that is 1.1 times that of the sun. how many au from the star i
kaheart [24]
To solve this problem we will use Kepler's third law of planetary motion. Formula for that law is:
T^{2} = \frac{4  \pi ^{2} }{GM}  a^{3}
Where:
T = orbital period
G = universal gravitational constant
M = mass of star
a = distance from planet to star

By rearranging this formula we get:
\frac{T^{2}}{a^{3} } = \frac{4 \pi ^{2} }{GM}
For Earth we have:
\frac{365^{2}}{1^{3} } = \frac{4 \pi ^{2} }{GM}
For Wasp-32b we have:
\frac{2.7^{2}}{a^{3} } = \frac{4 \pi ^{2} }{G*1.1M} or
1.1* \frac{2.7^{2}}{a^{3} } = \frac{4 \pi ^{2} }{GM} 

We can see that right sides are same. Left sides must be same. We can use this to solve for distance.
\frac{365^{2}}{1^{3} } = 1.1* \frac{2.7^{2}}{a^{3}
\frac{365^{2}}{1.1* 2.7^{2}} = \frac{1}{a^{3} } \\ \\ 2.7^{2} =365^{2}*a^{3} \\ \\ a^{3} =\frac{2.7^{2} }{365^{2}} \\ \\ a= \sqrt[3]{\frac{2.7^{2} }{365^{2}} } \\ \\ \\ a=0.038AU

Wasp-32b is at distance of 0.038AU.
8 0
4 years ago
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