in order to be classified as a hurricane, a tropical storm must reach what sustained wind speeds?

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Answer 1

As per the Saffir-Simpson Hurricane Wind Scale, a tropical storm must reach sustained wind speeds of at least 74 miles per hour (mph) in order to be classified as a hurricane.

A hurricane is a violent storm that develops in the tropics or subtropics of the Atlantic Ocean, Caribbean Sea, or Gulf of Mexico. They are characterized by strong winds, heavy rainfall, and storm surges that can cause significant damage to coastal regions.

A tropical storm is a type of low-pressure system that develops in the tropics or subtropics and is characterized by thunderstorms and strong winds ranging from 39 to 73 miles per hour. It can cause damage to buildings, power lines, and trees, as well as flooding from heavy rain.Tropical storms are named when they develop sustained wind speeds of at least 39 mph. When they reach sustained wind speeds of 74 mph, they are classified as hurricanes.

Hurricanes are classified into categories based on their sustained wind speeds, with Category 1 being the weakest and Category 5 being the strongest. The Saffir-Simpson Hurricane Wind Scale, which was developed in 1971, is used to categorize hurricanes.

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Related Questions

according to the model in which that active galactic nuclei are powered by supermassive black holes, the energy released as light comes from

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Answer:

b

Explanation:

which of the following plots most accurately shows the temperature distribution in the solar system at the time of planet formation?graphs: A. steadily increasing line. B. steadily decreasing line. C. straight line. D. increasing

Answers

The steadily decreasing line most accurately shows the temperature distribution in the solar system at the time of planet formation. The correct option is B.

The temperature distribution in the solar system at the time of planet formation is best represented by the steadily decreasing line.

The steadily decreasing line accurately shows the temperature distribution in the solar system at the time of planet formation, where the temperature was steadily decreasing.

The temperature in the solar system, at the time of planet formation, was steadily decreasing due to the absence of the sun.

The Sun, which is the primary source of heat in the solar system, had not yet formed, and the temperature was cold.

The temperatures in the solar system were very low, and dust and gas were slowly cooling. It was at this time that the dust and gas began to collapse into clumps, which later led to the formation of planets.

The steadily decreasing line represents the temperature distribution of the solar system at the time of planet formation.

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sort each statement below into the appropriate bin based on whether it is something that scientists knew about pluto or its moon charon before the new horizons flyby, is something learned as a result of the new horizons flyby, or is something that seems possible from the new horizons mission but for which we'll need additional data to establish it with certainty.

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Pluto and Charon are tidally locked: This is something that scientists knew about Pluto and its moon Charon before the New Horizons flyby. Tidal locking occurs when an object's orbital period is the same as its rotational period, meaning that the same side of the object is always facing the other.

In this case, the same sides of Pluto and Charon are always facing each other as they orbit one another. The likelihood of this happening was predicted before the mission based on the distance between Pluto and Charon and the gravitational forces between them, and the New Horizons flyby confirmed this to be the case.

Charon has a tenuous atmosphere: This is something that was learned as a result of the New Horizons flyby. Before the mission, scientists suspected that Charon may have an atmosphere, but data from New Horizons showed that the atmosphere is much more substantial than expected.

The flyby revealed that the atmosphere is composed mostly of nitrogen and methane, and is about 100,000 times thinner than Earth's atmosphere. Additional data is needed to establish the atmosphere's exact composition and other details.

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in 2000, a population of a city is 1,000,000 people. If it has a doubling time of 25 years, when will its population reach 2,000,000

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If the city's population has a doubling time of 25 years, it means that it will take 25 years for the population to double. To calculate the annual growth rate, we can use the rule of 70, which states that to find the number of years it takes for a quantity to double, we can divide 70 by the annual growth rate.

So, to find the annual growth rate, we can use the formula:  Annual growth rate = 70 / doubling time  Annual growth rate [tex]= 70 / 25 = 2.8%[/tex]   Now, to find when the population of the city will reach 2,000,000, we can use the formula for exponential growth:[tex]Nt = N0 x (1 + r)^t[/tex]   where Nt is the future population, N0 is the initial population, r is the annual growth rate, and t is the time period.We know that [tex]N0 = 1,000,000, Nt = 2,000,000, and r = 2.8%[/tex].[tex]2,000,000 = 1,000,000 x (1 + 0.028)^t[/tex] Taking the natural logarithm of both sides, we get: [tex]ln(2) = t x ln(1.028)[/tex]  Solving for t, we get: [tex]t = ln(2) / ln(1.028) = 25.7[/tex] years  the city's population will reach 2,000,000 in approximately 26 years, or in the year 2026.

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Geologists sometimes find a type of igneous rock known as porphyry, which contains both large and small crystals. Which is the best explanation for the formation of this rock?
a) The rock experienced a two-stage cooling process, with initial slow cooling at depth followed by rapid cooling at the surface.
b) The rock experienced a two-stage cooling process, with initial rapid cooling at depth followed by slow cooling at the surface.
c) The rock experienced a two-stage cooling process, with initial rapid cooling near the surface followed by slow cooling at depth.
d) The rock experienced a two-stage cooling process, with initial slow cooling near the surface followed by rapid cooling at depth.

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Porphyry is a type of igneous rock that contains both large and small crystals. It's formed by d) The rock experienced a two-stage cooling process, with slow cooling near the surface followed by rapid cooling at depth.  

Porphyry is a type of igneous rock that forms when magma cools slowly near the surface and then rapidly at depth. The slow cooling near the surface allows for large crystals to form, while the rapid cooling at depth results in small crystals. The slow cooling near the surface occurs when magma is relatively close to the Earth’s surface.

This allows for large crystals to form due to the extended time period for cooling and crystallization. On the other hand, when magma cools at greater depths, it cools rapidly, resulting in small crystals. The presence of large and small crystals in porphyry is a direct result of the two-stage cooling process.  

This two-stage cooling process explains why porphyry contains both large and small crystals. Therefore the correct option is  d).

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what is the deepest inland body of water in the world?

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Answer:

Caspian Sea

Explanation:

which new york state location has surface bedrock that has been subjected to very intense regional metamorphism

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The location in New York State that has surface bedrock that has been subjected to very intense regional metamorphism is the Adirondack Mountains.

The Adirondack Mountains are located in the northeastern part of the state and cover an area of approximately 6.1 million acres. The Adirondack Mountains have a complex geology with many different types of metamorphic rocks, such as gneiss, schist, and marble.

The region has been subjected to intense regional metamorphism due to the effects of both folding and faulting. This has resulted in the rocks being folded, faulted, and sheared, which has increased their strength and altered their mineral composition.

The Adirondack Mountains are a prime example of how regional metamorphism can change the shape and composition of rocks over time. The intense regional metamorphism in the Adirondack Mountains has also created a unique landscape, with its high mountains, deep valleys, and many different types of rock formations.

This landscape makes it an excellent spot for outdoor recreation and is home to many parks and protected areas.

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if you were watching a weather report on the news and saw a blue line with triangles approaching a red line with semi-circles, what type of weather would you expect to see when the two frontal boundaries converge in the midwestern region of the united states?

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The blue line with triangles and the red line with semi-circles are symbols used to represent cold and warm fronts, respectively. When these two frontal boundaries converge in the midwestern region of the United States, you can expect to see a period of tumultuous weather.

When a cold front and a warm front collide, the warm air is forced to rise and the cold air is forced to sink. This can cause thunderstorms, hail, high winds, and heavy precipitation. The cold air can also bring an abrupt drop in temperature, making conditions feel colder than normal.

The weather can also be unpredictable when the two fronts collide. Depending on the air pressure, wind direction, and location of the convergence, the weather can drastically change within a short period of time.

The timing of the collision of the two fronts is also important. If the collision occurs during the day, the sun can cause the cold air to be pushed up and warm air to be pushed down. This can lead to instability in the atmosphere, which can cause the formation of thunderstorms.

Overall, the convergence of a cold and warm front in the midwestern region of the United States can cause a wide range of weather, including thunderstorms, hail, high winds, and heavy precipitation. Be sure to stay alert and be prepared for rapidly changing weather conditions when this occurs.

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The taiga biome has long, cold, dry winters and cool, wet summers. In three to four sentences, describe how the plants and animals would be impacted by a warm and dry summer and how they might survive. Support your answer with the abiotic factors in the biome.

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A warm and dry summer would make it harder for most animals to survive since fewer plants would grow. When the temperatures drop, some animals will hibernate so that they don't starve due to the lack of plants. Other animals have thick hair to fight cold and can dig well to hunt hibernating animals like how foxes dig for rodents under the snow.

what happens when a glacier encounters the sea or a lake?

Answers

Answer:

Icebergs form

Explanation:

Large blocks of ice collapse off the the front of the glacier and become icebergs.

Which of the following statements is true?
a) A region does NOT need to be distinguishable from other areas
b) Regions exist only at some scales
c) Financial networks are not functional regions
d) A region has to be a continuous area

Answers

The statement that is true is b) Regions exist only at some scales.

What are regions ?

Regions are spatial areas that share common characteristics, whether it be cultural, economic, or physical. However, the definition and boundaries of a region can vary depending on the scale of analysis.

For example, a city can be considered a region at the local scale, but when viewed from a national or global perspective, it may be just a small part of a larger region, such as a state or country.  A region typically needs to be distinguishable from other areas to be meaningful and useful in analysis and decision-making.

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Fill in the table with the terms that best describe these landforms plains and Plateaus

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Plateaus and Plains are the two landforms, Low-lying, level terrain is known as a plain. A plateau is a level area that is significantly elevated above the surrounding terrain.

Many different landforms can be produced by endogenic and exogenic forces. A landform is an element of the Earth's solid surface that occurs naturally. Mountains, plateaus, and plains are a few examples.

Plateaus

An elevated area with mostly level land on top is referred to as a plateau. It has a sizable top area and a steep incline on its sides. They are also referred to as tablelands or high plains. About 18% of the earth's land surface is made up of plateaus.

Plains

The most significant landforms on the surface of the earth are plains. The definition of a plain is simply a low-lying, comparatively flat land surface with a very gentle slope and little local relief. The plains cover roughly 55% of the earth's land area. Most of the plain have been formed by deposition of sediments brought down by rivers. Besides rivers, some plains have also been formed by the action of the wind, moving ice and other tectonic activities.

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After graduating, you and two of your classmates decide to embark on a sailing voyage. Being novices at long-distance sailing, you and your friends decide to tackle something that appears relatively simple. You decide that a round-trip across the Atlantic, starting in North America, would NOT be a bad idea. You decide to leave from North Carolina, where the old boat you bought is located, and travel across to England, then south from there all the way down to Morocco, then back across the Atlantic. You also decide to prepare by digging up your old ISP 203a notes and a map of ocean currents to help you out....1. How do you plan your route there and back, so that the prevailing ocean currents provide the most help? Which currents are these? Draw them and label them on the map on the last page of this handout.2. You know that currents are driven by winds. What are the two major winds that drive the currents you will use in part 1?Getting across to England is a breeze – you can’t believe how easy the trip was, and how quickly it all went by. Now you are ready to head back. You know the trip home will take longer...You are back at sea, just entering the warmer climates to the south, when disaster strikes. Off the CanaryIslands (on your map), your boat capsizes in a storm. Before she sinks, you have just enough time to grab the emergency kit and jump into the inflatable lifeboat. Whew! But...now what??? The current is flowing westward; try as you might, you can’t make the boat go east as you have no sail. So, you’re off across the Atlantic again, although not exactly as you’d planned. This WILL be educational!

Answers

The currents you will use are the Gulf Stream, the North Atlantic Drift, the Canary Current, and the North Equatorial Current. The two major winds that drive the currents you will use are west wind and east wind.

To plan your route there and back, you should take advantage of the prevailing ocean currents. The Gulf Stream is a warm and swift ocean current that moves from the Gulf of Mexico, up along the east coast of North America and across the Atlantic towards Europe.

The North Atlantic Drift is an ocean current that moves in the opposite direction of the Gulf Stream and is a weaker current. The Canary Current is a cool and weak ocean current that flows southwards from the west coast of Europe to northwest Africa. Finally, the North Equatorial Current is a warm ocean current that moves westwards across the Atlantic.

The two major winds that drive the currents you will use are the prevailing westerlies, which move from west to east, and the northeast trades, which move from northeast to southwest.

In your situation, the current is flowing westward and you can't make the boat go east as you have no sail. To get back to North Carolina, you should use the Gulf Stream to your advantage and move south-eastward along the edge of the Gulf Stream towards the North Atlantic Drift. From there, you can use the North Atlantic Drift to get across the Atlantic and back to North Carolina.

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identify the conditions that are likely to help preserve animal remains, making it more likely for them to become fossils.

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Answer:

The following conditions are likely to help preserve animal remains, making it more likely for them to become fossils:

Rapid burial: When an animal dies, it is important that its body is quickly buried by sediment or other materials, which can protect it from scavengers, decay, and weathering.

Low oxygen environments: In low oxygen environments, such as swamps, bogs, or deep ocean sediments, decomposition slows down, which can help preserve the animal's remains.

Hard parts: Animals with hard parts, such as bones, teeth, or shells, are more likely to be preserved as fossils than those with soft tissue because hard parts are more resistant to decay and can survive burial and fossilization processes.

Lack of disturbance: If an animal's remains are not disturbed or moved after burial, they are more likely to remain intact and undergo fossilization.

Mineral-rich water: When mineral-rich water percolates through buried remains, it can replace the organic material with minerals, preserving the structure of the original organism and creating a fossil.

It is important to note that the likelihood of an animal becoming a fossil depends on a combination of factors, and even under ideal conditions, fossilization is still a rare event.

Explanation:

which process is represented by the diagram shown? Germination, fertilization, mitotic cell division, meiotic cell division

Answers

Meiotic cell division is the process by which a cell divides in two, resulting in four haploid cells, each with half the genetic material of the original. During meiosis, cells undergo recombination and exchange genetic material, resulting in genetically distinct offspring.

if you were to visit the grand canyon and hike rim to rim during the summer, the weather would likely be hot and dry with clear, sunny skies. which air mass brings this type of weather to the southwestern region of the united states?

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The air mass that brings hot and dry weather to the southwestern region of the United States during the summer is called a continental tropical air mass (CTA). This type of air mass originates in the tropics and is characterized by hot, dry air and clear, sunny skies.

The CTA is formed when the hot, dry air from the tropics encounters a high-pressure system over the southwestern US. This causes the air to become even hotter and drier, resulting in clear, sunny skies and hot, dry weather.

This type of air mass is common in the southwestern region of the United States in the summertime. It is also common in other areas of the world with similar climates, such as the Mediterranean. In the US, the CTA is the primary source of heat during the summer months.

It brings hot and dry weather to the southwestern US, which is often exacerbated by the urban heat island effect.

The CTA is important to understand because it has significant implications for the weather patterns in the southwestern US. During the summer, the CTA can cause temperatures to rise and remain hot and dry for prolonged periods of time, leading to an increased risk of drought.

In addition, the CTA can bring dangerous weather patterns, such as dust storms and thunderstorms, to the region.

Understanding the CTA can help people prepare for the hot and dry weather in the southwestern US during the summer months. Knowing the characteristics of this air mass and how it can affect the weather can help people stay safe and prepare for extreme weather events.

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Identify from the following list possible environments or conditions that can lead to the formation of clay or silt deposits- chemical weathering of soils- windblown material generated by glaciers- floodplains of river systems- bottoms of lakes- wave action along a beach

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Clay or silt deposits can be formed in different environments or conditions. These include floodplains of river systems, bottoms of lakes, wave action along a beach, chemical weathering of soils, and windblown material generated by glaciers.

The floodplains of river systems are environments where clay or silt deposits can form. River floods can carry a significant amount of silt and clay materials, and when the water slows down, these materials can settle and form deposits. This process can occur repeatedly over time, resulting in the accumulation of thick clay or silt layers.

Silt and clay deposits can also form in the bottoms of lakes. The deposition of silt and clay materials in lakes is usually influenced by the volume and velocity of water entering the lake and the nature of the lake basin. When silt and clay materials settle to the bottom of the lake, they can form thick layers over time.

The wave action along a beach can lead to the formation of clay and silt deposits. Wave action can move sediments along the shore and carry them offshore. When the waves slow down, the sediments can settle and form deposits.

Clay and silt deposits can also form due to the chemical weathering of soils. When minerals in the soil are exposed to water and oxygen, they can undergo chemical reactions that transform them into clay and silt materials.

The movement of glaciers can create windblown materials that can form clay or silt deposits. When glaciers move, they can grind rocks into fine-grained sediments. These sediments can be transported by wind and deposited in different environments to form clay and silt deposits.

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according to the multiple nuclei model, an airport is likely to attract nearbyhotels and warehousesretail and wholesale shopsresidences and highwaysuniversities and colleges

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According to the multiple nuclei model, an airport is likely to attract nearby residences and highways.

Multiple Nuclei Model, created by C.D. Harris and E.L. Ullman, is a geographic theory that acknowledges the presence of numerous nodes in a city, each having its own unique features.

Each node serves as the nucleus of the city's growth and development. Multiple nuclei model According to the multiple nuclei model, an airport is likely to attract nearby residences and highways, as it is a significant component of the city's economic development.

Since the airport is critical for business growth and creates job opportunities, people prefer to settle near the airport. This leads to the construction of new residential areas and highways near the airport, which facilitates travel to and from the airport.

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which description of the earth's magnetic field is most accurate for a person living in champaign-urbana?

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The magnetic field of the earth is measured using magnetic poles that are located at the earth's North and South Poles. The magnetic field of the earth is generated by the earth's molten core.

There are a few different ways in which the earth's magnetic field is measured. One of the most common ways is by using a magnetic field strength meter.

For a person living in Champaign-Urbana, the earth's magnetic field would be described as being generally weak. This is because Champaign-Urbana is located relatively close to the earth's equator.

As a result, the magnetic field is not as strong in this region as it is in regions closer to the earth's poles.

In general, the earth's magnetic field is weaker near the equator than it is near the poles. This is because the magnetic field lines are more spread out at the equator, and the magnetic field is less concentrated.

In contrast, near the poles, the magnetic field lines are more tightly packed together, and the magnetic field is more concentrated.

It is important to note that the strength of the earth's magnetic field can also be affected by a number of different factors, such as solar activity and changes in the earth's magnetic field itself.

As a result, the strength of the earth's magnetic field can vary somewhat over time.

In summary, the earth's magnetic field is generally weaker near the equator, which means that a person living in Champaign-Urbana would experience a relatively weak magnetic field.

However, the strength of the earth's magnetic field can also vary over time due to a number of different factors.

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Which is NOT true of the Anthropocene
A. Describes a period in Earths's history when forces of human activity have begun to exceed those of wild nature
B. It is the term in Anthropology referring to the first humans to walk on land
C. Is evidenced by the effects of plowing, tilling, littering, and disturbing soils across the surface of the Earth
D. Is expected to extend long into the future

Answers

Option B. It is the term in Anthropology referring to the first humans to walk on land is NOT true of the Anthropocene.

What is Anthropocene?

The term Anthropocene is used to refer to the current geological epoch, characterized by the significant impact of human activity on the Earth's ecosystems and geology. It is thought that human activity has been so extensive and profound that it is changing the planet's natural systems permanently.

The word "Anthropocene" is derived from the Greek word for "human" and "new."

Option A: Describes a period in Earths's history when forces of human activity have begun to exceed those of wild nature is true of the Anthropocene.

Option B: It is the term in Anthropology referring to the first humans to walk on land is NOT true of the Anthropocene.

Option C: Is evidenced by the effects of plowing, tilling, littering, and disturbing soils across the surface of the Earth is true of the Anthropocene.

Option D: Is expected to extend long into the future is true of the Anthropocene.

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In traveling to the Moon, astronauts aboard the Apollo spacecraft put themselves into a slow rotation to distribute the Sun's energy evenly. At the start of their trip, they accelerated from no rotation to 1 revolution per minute during a 12-min time interval. We can approximate the spacecraft as a cylinder with a mass of 50 metric tons and a diameter of 8.5 m. Calculate the angular acceleration, the torque needed to produce such an acceleration, and the magnitude of the linear acceleration of a point on the skin of the ship 5 min after it started accelerating.

Answers

the angular acceleration is α  = 0.1047 rad/s².

the torque is τ = 22.837kNm.

The angular acceleration α is given by the equation: α = (2πf)/T, where f is the final angular velocity (in revolutions per minute, rpm) and T is the time interval in which the acceleration occurs. In this case, the final angular velocity is 1 rpm, and the time interval is 12 minutes, so the angular acceleration is

α = (2π(1rpm))/12min

   = 0.1047 rad/s².


The torque required to produce such an acceleration can be found using the equation τ = Iα, where I is the moment of inertia and α is the angular acceleration. Since the spacecraft is approximated as a cylinder, the moment of inertia is given by the equation I = (1/2)mr², where m is the mass and r is the radius. Therefore,

I = (1/2)(50mt)((8.5m)/2)²

 = 218.75m⁴,

and the torque is

τ = (218.75m⁴)(0.1047rad/s²)

= 22.837kNm.

The magnitude of the linear acceleration a of a point on the skin of the ship 5 minutes after it started accelerating is given by the equation a = αr, where α is the angular acceleration and r is the radius of the ship. Therefore,

a = (0.1047rad/s²)(8.5m)

 = 0.89 m/s².

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where is the kamchatka peninsula, home to 29 active volcanoes?

Answers

Answer:

Explanation:

The Kamchatka Peninsula is located in the far eastern part of Russia, in the Russian Far East. It is situated between the Sea of Okhotsk to the west and the Pacific Ocean to the east. The Kamchatka Peninsula is known for its stunning natural beauty, abundant wildlife, and numerous active volcanoes, with a total of 29 active volcanoes located on the peninsula.

which natural hazard occurs more often at active plate boundaries?

Answers

Answer:

The most often occurrence is volcanos.

Two types of plates, convergent and divergent can create an active volcano site.

What kind of land uses you might see along a river bank?
I have a test tomorrow, please help.

Answers

Along a river bank, several land uses, including residential, commercial, recreational, industrial, agricultural, and conservation, can be seen.

What is located beside a riverbank?

Fish, aquatic life and plants, macroinvertebrates (such as mussels and insect larvae), and microorganisms like bacteria or algae are some of the biological elements that make up a river ecosystem.

What is the name of the area around a river?

Dictionary of Entry Words. An region of land near to a river or stream that is typically flat is called a floodplain (or floodplain). It extends from the river's banks to the valley's outer reaches. A floodplain is divided into two sections. The first is the floodway, which is the river's main channel.

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what land extends from central mexico to costa rica?

Answers

The land that extends from central Mexico to Costa Rica is called the Mesoamerican region.

The Mesoamerican region is a cultural and geographical area in the Americas, extending from central Mexico to Costa Rica. This region is known for its rich and diverse cultural history, including the rise and fall of ancient civilizations such as the Maya, Aztec, and Olmec.

According to archeological evidence, the Mesoamerican region is considered to be one of the six cradles of civilization in the world. This region has many natural resources, such as fertile land, forests, and minerals, which made it an attractive area for early civilizations to settle and flourish.

In summary, the land that extends from central Mexico to Costa Rica is called the Mesoamerican region. This region is known for its cultural and geographical significance and was home to ancient civilizations such as the Maya, Aztec, and Olmec.

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Maine, Nevada, and North Dakota do not have large populations. What are some reasons for such small populations

Answers

Answer:

Explanation:

I have been to Maine several times. There are two issues about living there.They have hard winters, most of the time. Do not live there if you cannot deal with a long, hard winter. Its good if you can stay inside and write, like Stephen King.

another thing is job diversity because they rely on Lumber, fishing and other natural resources

what causes the east polar winds to be generated, which drive surface currents such as the east green land current

Answers

The east polar winds are generated by a combination of factors such as the rotation of the Earth, differences in temperature and pressure, and the Coriolis effect. These winds drive surface currents such as the East Greenland Current.

What causes the East Polar winds to be generated, which drive surface currents such as the East Greenland Current?

The East Greenland Current is a cold ocean current that flows from the Arctic Ocean's polar region to the Atlantic Ocean's southern region. The East Greenland Current is driven by the East Polar winds, which are generated by a combination of factors such as the rotation of the Earth, differences in temperature and pressure, and the Coriolis effect.

The rotation of the Earth causes winds to deflect to the right in the Northern Hemisphere and to the left in the Southern Hemisphere, thanks to the Coriolis effect. The difference in temperature and pressure between the polar region and the lower latitudes produces a pressure gradient that causes air to flow from high to low pressure regions.

These pressure gradients, combined with the Coriolis effect, result in strong and steady East Polar winds. The East Polar winds, in turn, generate the East Greenland Current.

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precession of the rotation axis of earth is caused by

Answers

Precession is caused by the gravitational influence of the Sun and the Moon acting on Earth's equatorial bulge. To a much lesser extent, the planets exert influence as well. The projection onto the sky of Earth's axis of rotation results in two notable points in opposite directions: the north and south celestial poles.

fill in the blank question. special rocks found in antarctica are dated with isotopes to give an average age of earth of 4.55 billion years. we can use these dark-colored

Answers

Dark-colored rocks found in Antarctica are an important source of information about the age of the Earth. These rocks are dated using isotope techniques to determine their age, which can provide an average age of Earth of 4.55 billion years.

The isotopic dating process involves measuring the relative concentrations of different isotopes in the rocks, which can tell us how long ago they were formed. The process is useful because the relative concentrations of different isotopes remain relatively constant over time, which allows us to accurately measure the age of the rocks.

The data obtained from the rocks helps to provide a more accurate age of the Earth and confirms the scientific theory that the Earth is 4.55 billion years old. Thus, these dark-colored rocks found in Antarctica provide important evidence for the age of the Earth.

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21) Which of the following is evidence for supermassive black holes in active galaxies? A) the discovery of powerful jets coming from a compact core.

Answers

According to the given question, the evidence for supermassive black holes in active galaxies is the discovery of powerful jets coming from a compact core. This means option A is the correct answer.

What is a supermassive black hole?

A supermassive black hole (SMBH) is a type of black hole with a mass ranging from millions to billions of times that of the Sun. These enormous black holes are found at the centers of most galaxies, including our own Milky Way.

They can be observed indirectly by their gravitational influence on surrounding stars, gas, and dust.Theoretical models suggest that active galactic nuclei (AGNs) are powered by supermassive black holes, which release energy by accretion.

These supermassive black holes' gravitational fields are so strong that they can absorb entire stars and gas clouds, creating powerful jets that emit X-rays, gamma rays, and radio waves.In active galaxies.

Your question is incomplete but most probably your full question was:

Which of the following is evidence for supermassive black holes in active galaxies? A) the discovery of powerful jets coming from a compact core

B) rapid changes in the luminosity of the galaxy nucleus

C) quasars emit approximately equal power at all wavelengths from infrared to gamma rays

D) very high speed orbital motions around galactic nuclei

E) all of the above

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