1) What is the largest continent? 2) What is the smallest continent? 3) What is the largest ocean? 4) What is the longest river in the world?

Answers

Answer 1
Answer:

Answer:

1. Asia

2. Australia

3. Pacific Ocean

4. The Nile

Explanation:

Answer 2
Answer:

Answer:

1. Asia

2. Australia

3. Pacific Ocean

4. The Nile

Explanation:


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What type of rocks make up most of the Great Smoky Mountains National Park?

Answers

The Great Smoky Mountains National Park is primarily composed of sedimentary rocks, with a significant portion being made up of metamorphic rocks. The predominant types include sandstone, shale, and slate, along with various types of metamorphic rocks like schist and gneiss. These rocks have been shaped and sculpted by millions of years of geological processes and play a crucial role in the park's stunning landscapes.

Final answer:

The Great Smoky Mountains National Park is predominantly made up of sedimentary and metamorphic rocks, formed through the upthrusting of the earth's crust and subsequent erosion. These rocks have significantly shaped the mountains' landscape and play a critical role in humans' interaction with the area, influencing Indigenous foodways, cultural identity, and foraging rights.

Explanation:

The Great Smoky Mountains National Park are made up primarily of rocks that fall under the category of sedimentary or metamorphic rocks. These rock types are formed through upthrusting of the crust, subject to erosion by water and ice, and have shaped the landscape of the mountains, which is continually evolving. The rocks also play a crucial part in the negotiation of foraging rights within National Parks, including the Great Smoky Mountains, between the park authorities and local and Indigenous populations. Understanding the geology of the park is therefore crucial not only in terms of the park’s physical geography, but also its relationship with local communities and Indigenous foodways and cultural identity.

Learn more about Geology of the Great Smoky Mountains here:

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Which of the following statements about places where education for women is not valued is false?a. Women marry later and have fewer children.
b. Women have few opportunities for professional careers.
c. Women have lower literacy rates.
d. Women are less likely to graduate from high school and college.

Answers

So, if education for women is not valued, this means that women will often receive less education than men- many will not learn to write (so c is true) and they will less likely go to college (so d is also true).

The correct answer is that in this situation it is not true that women will marry later -so we choose a!

Which of the following is not a river in Africa?indus
a. Niger
b. Tigris
c. Zambezi
d. Congo

Answers

Niger  and Congo are two rivers after which countries are named (actually in both cases two countries each) - and those are African countries, so they must be in Africa.

Zambezi is a river in Angola and Namibia.

Tigris is a River in Mesopotamia, in Asia - so that's the correct answer!

What movement of earth is responsible fortnight and day

Answers

Hi Brainiac


The movement of the earth that is responsible for day and night is rotation its axis.


I hope that's help:0

Planet Earth revolves around the Sun in an almost circular orbit (hint: how long does it take for this revolution to happen?). The (average) radius of this orbit is called A.U., Astronomical Unit, and it is equal to 1.5 108 km. Earth also rotates about its axis (hint: how long does it take for this rotation to happen?). Considering the Earth as a sphere, with a mass of 6.0 1024 kg and radius 6.4 106 m, a) what is the magnitude of Earth's orbital angular momentum with respect to the Sun? [ Select ] kg m 5-1 b) what is the magnitude of its spinning angular momentum? [Select ] kg m2 5-1

Answers

Answer:

The orbital angular momentum of the Earth is equal to the product of the mass of the Earth (6.0x 10^24 kg) and its orbital velocity (29.7 km/s) multiplied by its distance from the Sun (1.5x 10^8 km), which results in a magnitude of 3.6x 10^40 kg m^2/s.

The spinning angular momentum of the Earth is equal to the product of its mass (6.0x 10^24 kg) and its angular velocity (7.3x 10^-5 radians/s) multiplied by the square of its radius (6.4x 10^6 m), which results in a magnitude of 3.8x 10^37 kg m^2/s.

Final answer:

a) The magnitude of Earth's orbital angular momentum with respect to the Sun is [ Select ] kg m^2/s. b) The magnitude of its spinning angular momentum is [Select ] kg m^2/s.

Explanation:

To calculate the magnitude of Earth's orbital angular momentum with respect to the Sun, we need to use the formula:

Angular Momentum = Moment of Inertia * Angular Velocity

For Earth's orbital angular momentum, the moment of inertia can be calculated using the formula for a sphere:

Moment of Inertia = (2/5) * mass * radius^2

Substituting the given values:

Moment of Inertia = (2/5) * 6.0 x 10^24 kg * (6.4 x 10^6 m)^2

Next, we need to calculate the angular velocity. The time taken for Earth to complete one revolution around the Sun is known as the orbital period. The orbital period of Earth is approximately 365.25 days or 31,557,600 seconds.

Angular Velocity = 2π / Orbital Period

Substituting the values:

Angular Velocity = 2π / 31,557,600 s

Now, we can calculate the orbital angular momentum:

Orbital Angular Momentum = Moment of Inertia * Angular Velocity

For the spinning angular momentum, we can use the same formula:

Spinning Angular Momentum = Moment of Inertia * Angular Velocity

However, the moment of inertia for spinning angular momentum is different. It depends on the mass distribution of Earth and its axis of rotation. Since Earth is considered a sphere, the moment of inertia for spinning angular momentum can be calculated using the formula mentioned earlier.

Substituting the given values:

Moment of Inertia = (2/5) * 6.0 x 10^24 kg * (6.4 x 10^6 m)^2

Finally, we can calculate the spinning angular momentum:

Spinning Angular Momentum = Moment of Inertia * Angular Velocity

Learn more about angular momentum of earth here:

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What is crude oil (petroleum) and how is it extracted from the earth and refined? What percentages of the commercial energy used in the world and in the United States are provided by crude oil? What is the peak pro- duction for an oil well and for the world? What is a petrochemical and why are such chemicals important? What are proven oil reserves? Describe the two types of unproven reserves. Discuss the question of how long global and U.S. supplies of conventional crude oil might last. What are the major advantages and disadvantages of using conventional crude oil?

Answers

Crude oil are products that are formed due to the long term decomposition of plants and animal matter over the years. 4 million barrels of crude oil are produced  and petrochemicals are chemicals that are produced from petroleum and their byproducts. Proven oil reserves are estimated to produce the calculated amount of oil and unproven oil reserves may or may not reach the calculated amount of oil. Conventional crude oils are alternative source which are used for crude oil.

Explanation:

The main process for the extraction of crude oil is drilling and when a place is tapped for the presence of crude oil by the geologist they set up huge rigs and start the extraction process.

Most of the worlds economy is mainly dependent on the crude oil because it is the core for all the oil products. The peak production of the oil well is the time in which the production reaches its maximum value and after which there will be a decline in the production of the crude oil

When petroleum is refined the by products that are obtained are called as petrochemicals some of the examples are natural gas, renewable resources and they are important because they have many commercial uses

The two types of unproven oil reserves are probable and the possible oil reserve the probable reserves are estimated to produce 40% confidently and the possible reserves are proven to produce 10%

The major advantages of conventional crude oil is they can be refined they can be used as lubricants they produce valuable gasoline products and they have become an integral source of transportation. Some of the disadvantages are prolonged use can cause damage to the environment and can cause high amount of pollution.