hot springs are most numerous in which region of the united states?

Answers

Answer 1

Hot springs are most numerous in the Western region of the United States. This is due to the presence of a large number of mountain ranges and active volcanoes that allow geothermal heat to reach the surface. Additionally, the Western region has many areas with geologically active features such as faults, fractures, and magma chambers that also contribute to the presence of hot springs.

Hot springs are natural geothermal features that occur when underground water is heated by magma or geothermal processes. The hot water then rises to the surface, creating a pool of warm water that can be enjoyed for its therapeutic benefits or its beauty. There are thousands of hot springs in the United States, with the most numerous being in the Western region. Some of the most famous hot springs in this region include the hot springs of Yellowstone National Park, the hot springs of the Cascade Range in Oregon, and

The hot springs of the San Juan Mountains in Colorado. In addition to being popular destinations for tourists, hot springs also provide important habitats for many species of plants and animals that have adapted to these unique environments. Overall, hot springs are a fascinating and important aspect of the natural world that can be enjoyed by people of all ages and interests.

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Related Questions

Voyager 2 should reach the nearest stars (besides the Sun) in about 500 years. true or false.

Answers

It is true that Voyager 2 should reach the nearest stars (besides the Sun) in about 500 years. Voyager 2 is a spacecraft that was launched by NASA in 1977 to study the outer Solar System and beyond.  

It has been traveling through space for over 40 years and has already passed by Jupiter, Saturn, Uranus, and Neptune. In 2018, it became the second spacecraft to enter interstellar space, following its twin Voyager 1. The nearest stars to the Sun are part of a system called Alpha Centauri, which is located about 4.37 light-years away. Voyager 2 is not headed directly toward Alpha Centauri, but it is on a trajectory that will take it in the general direction of this system. However, even at its current speed of about 34,000 miles per hour, it will take the spacecraft about 300 years to reach the outermost edge of the Solar System and over 40,000 years to travel the distance to Alpha Centauri.

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name the part of indian landmass that protrudes into the indian ocean.
PLS FAST

Answers

Answer:

The Deccan peninsula protrudes into the Indian Ocean, thus helping India to establish close contact with West Asia, Africa and Europe from the Western coast and South-East and East Asia from the Eastern coast.

Answer:

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✏ The Deccan peninsula protrudes into the Indian Ocean, thus helping India to establish close contact with West Asia, Africa and Europe from the Western coast and South-East and East Asia from the Eastern coast.

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What causes global convection currents to form?
O A. Unequal heating of Earth's surface
B. Differences in elevation on Earth
C. Earth's local winds
D. Earth's spin

Answers

The answer would be A unequal heating of the earths surface. Lighter dense warm material rises as heavier dense cool material sinks causing differential heating.

How do the tropical climates of West Africa support different biomes?

Answers

West Africa is mostly a region of plains. Climates range from arid to tropical and they have important agricultural and mineral resources.

why does land heat up to higher temperatures than an adjacent area of water?

Answers

Land heats up to higher temperatures than an adjacent area of water due to the difference in their physical properties.

Water has a higher specific heat capacity than land, which means that it requires more energy to raise the temperature of water compared to land. As a result, when sunlight hits the Earth's surface, the land absorbs more heat energy than the adjacent body of water, causing the land to heat up faster and to higher temperatures. Additionally, water is a better conductor of heat than land, which means that it can distribute heat more evenly across its surface. This property helps to regulate the temperature of the water, preventing it from heating up too quickly or too much. In contrast, land can retain heat for longer periods, resulting in higher temperatures in the surrounding areas. Therefore, due to these physical properties, land tends to heat up to higher temperatures than water.

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All of the following types of agriculture
happen in California EXCEPT
Market gardening
Shifting Cultivation
Livestock ranching
Mediterranean

Answers

Answer:

California's Top 5 Agricultural Commodities

Dairy Products, Milk — $7.57 billion.

Grapes — $5.23 billion.

Almonds — $5.03 billion.

Cattle and Calves — $3.11 billion.

Strawberries — $3.02 billion.

Should the currents in each coil of a pair of Helmholtz coils circulate in the same or opposite directions? Explain.

Answers

For a pair of Helmholtz coils, the currents in each coil should circulate in the same direction to generate a uniform magnetic field throughout the space between the coils.

What are Helmholtz coils?

Helmholtz coils are two identical circular or square coils placed parallel to each other and separated by a distance equal to the radius of the coil. These coils have equal numbers of turns of the same size and are wired in series to allow a current to flow in the same direction through both coils. When the Helmholtz coils are energized with equal currents running in the same direction, a homogeneous magnetic field is produced throughout the area between the coils.

The currents in each coil of a pair of Helmholtz coils should circulate in the same direction because it allows the formation of a uniform magnetic field. In the case where the currents circulate in opposite directions, the magnetic field is no longer homogeneous or uniform.The direction of the current in each coil should be the same as that of the other coil because the direction of the current in a coil determines the polarity of the magnetic field it generates. If the direction of the current in each coil is reversed, the direction of the magnetic field will also be reversed, which will result in a non-uniform magnetic field.

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The area of a rectangle is 424242 square millimeters. The length is 777 millimeters.
What is the perimeter of the rectangle?

Answers

The area of a rectangle is 424242 square millimeters. The length is 777 millimeters. The perimeter of the rectangle is 2646 millimeters.

In Euclidean plane geometry, a rectangle is a quadrilateral with four right angles. Equiangular means that each of its angles is identical, so it can also be defined as an equiangular rectangle. Or a parallelogram containing a right angle. A rectangle with four equal sides is a square.

Area of rectangle = Length × Breadth

Perimeter of rectangle = 2 (length + breadth)

A rectangle is a quadrilateral with all equal angles, i.e. real angles. Rectangles have equal angles as well as equal sides. So a square is a special case of a rectangle. In other words, rectangles are sometimes squares (but all sides are the same). So we can say that a square is a special kind of rectangle. All sides have the same period. Therefore, all squares are rectangles because they are quadrilaterals with all four corners and right angles. Therefore, not all rectangles are squares. To be square, the sides must be the same length.

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The theory of continental drift was widely unaccepted until scientists started using ________ to map the ocean floor. Question 6 options: Maps SONAR (Sound Navigation and Ranging) Submarines Volcanoes.

Answers

Answer:

Scientists started using Sonar to map the ocean floor :)

the variation in depth on the ocean floor is group of answer choices topology terrane bathymetry none of the above

Answers

Answer:

Bathymetry

Explanation:

The definition of bathymetry is the measurement of the depth of water in oceans, seas, or lakes.

Which of the following are considered triggers for mass-wasting events? Choose all that apply.
oversteepening of the slope
desiccation (drying) of the material
oversaturation of the material
addition of vegetation to the slope
earthquakes

Answers

The triggers for mass-wasting events include oversteepening of the slope, desiccation (drying) of the material, oversaturation of the material, and earthquakes.

Mass-wasting events, also known as mass movements or landslides, can be triggered by various factors. One common trigger is the oversteepening of the slope, which occurs when the angle of the slope becomes too steep for the material to maintain stability.

This can happen due to natural processes or human activities such as excavation or construction. Desiccation, or the drying of the material, can lead to the loss of cohesion and strength, making the slope susceptible to failure. Conversely, oversaturation of the material, typically caused by heavy rainfall or melting snow, increases the pore pressure and reduces the frictional resistance, making the slope unstable.

Earthquakes can also trigger mass-wasting events by shaking the ground and destabilizing slopes. The addition of vegetation to the slope can have a stabilizing effect by enhancing slope cohesion and reducing erosion, therefore, it is not considered a trigger for mass-wasting events.

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the maximum distance a person is willing to travel for a good or a service is the_________.

Answers

The maximum distance a person is willing to travel for a good or service is typically referred to as the "travel distance" or "distance willingness."

It represents the maximum geographical range that an individual is willing to cover in order to obtain a particular product or service. The travel distance can vary depending on several factors, such as the importance or urgency of the item, the availability of alternatives closer to the person, transportation options, and personal preferences.

Understanding the travel distance of consumers can be useful for businesses in determining their target market, establishing distribution networks, and optimizing their marketing strategies.

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how is acid rain affecting humans which rely on the biodiversity?​

Answers

Answer:

Acid rain triggers a series of results that damage or destroy individual fish, lowers population sizes, destroy animals from a lake entirely, and decrease biodiversity. As acid rain flows in a watershed through the soils, it releases aluminum from the soils into the lakes and streams situated in that watercourse.

Explanation:

Explanation:

Acid rain takes place by chemical reaction that is chemicals like nitrogen oxide ans6 sulphur dioxide when released in air, these substances go high in the air or reaches atmosphere where they mix and react with water, oxygen, and other chemicals to form more acidic pollutants, known as acid rain.

Acid rain causes a cascade of effects that harm or kill individual fish, reduce population numbers, completely eliminate species from a lake, and decrease biodiversity. As acid rain flows through soils in a watershed, it releases aluminum from soils into the lakes and streams located in that watershed.

2


.


To see an alphabetical list of glossary terms,


A. click on the glossary icon


B. click on a glossary term in the lesson


C. go to your course dashboard


D. type 'glossary' into your browser's address bar

Answers

Answer: A

Explanation:

I just did the test

A glossary is an alphabetical list of the terms which are in a certain domain of knowledge and the definition of each terms are given.

In order to see an alphabetical list of glossary terms, the person should click on the glossary icon.

It should be noted that clicking on a glossary term in the lesson, going to the course dashboard or typing glossary into the address bar of the browser will not show the alphabetical list of the glossary terms.

Therefore, to see an alphabetical list of glossary terms, click on the glossary icon.

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Explain some of the environmental impacts of modern commercial meat farming ?

Answers

The deforestation of the Amazon rainforest to create land for the large-scale livestock rearing for meat destroys the water catchment area, leading to the water shortages and global warming.

comparing these two photographs, which eruption has higher viscosity magma? which type of eruption has the potential of becoming explosive?

Answers

It appears to be a more viscous lava flow than the second photograph. The lava flow in the second photograph appears to be more fluid and less viscous.

In terms of potential explosiveness, the eruption in the first photograph has a higher potential of becoming explosive. This is because eruptions with higher viscosity magma tend to have more gas trapped within them.

As the magma rises to the surface, the pressure decreases and the gas expands rapidly, leading to explosive eruptions. In contrast, eruptions with lower viscosity magma tend to have less gas trapped within them, leading to more gentle eruptions.

However, it is important to note that other factors, such as the size and shape of the vent, can also influence the explosiveness of an eruption.

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human use of rivers and their surrounding regions has historically meant increases in which of the foloowing

Answers

Answer: You would need some choices under the question for us to answer.

Explanation:

No Choices/ Questions.

Answer:

A. aquatic biodiversity
B. deforestation
C. industrial pollution
D. profits for humans

Explanation: This isnt the answer im just putting the choices for someone to answer because i dont know this question either

If the salinity of a sample of seawater is 33 parts per thousand, what will be the ratio of chloride to sodium to sulfate? about 19 to 11 to 3 about 2 to 1 to 1 about 1 to 1 to 1 it's not possible to answer from the information given

Answers

The concentration of chloride in seawater is approximately 19 ppt, sodium is 11 ppt and sulfate is 3 ppt. Therefore, the ratio of chloride to sodium to sulfate in seawater is about 19 to 11 to 3.

1. Salinity refers to the amount of dissolved salts in seawater. In this case, the salinity is given as 33 parts per thousand (ppt). This means that for every 1000 parts of seawater, 33 parts are dissolved salts.

2. The most common ions in seawater are chloride (Cl-), sodium (Na+), and sulfate (SO42-). These ions contribute to the salinity of seawater.

3. To find the ratio of chloride to sodium to sulfate, we need to compare the concentrations of these ions in seawater.

4. The concentration of chloride in seawater is approximately 19 ppt. This means that for every 1000 parts of seawater, 19 parts are chloride ions.

5. The concentration of sodium in seawater is approximately 11 ppt. This means that for every 1000 parts of seawater, 11 parts are sodium ions.

6. The concentration of sulfate in seawater is approximately 3 ppt. This means that for every 1000 parts of seawater, 3 parts are sulfate ions.

Therefore, the ratio of chloride to sodium to sulfate in seawater is about 19 to 11 to 3.

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Clay minerals within a slate are changed into mica minerals as a result of the application of heat to a rock. This is an example of?

Answers

The process you are describing, where clay minerals within a slate are changed into mica minerals due to the application of heat, is known as metamorphism.

The process you are describing, where clay minerals within a slate are changed into mica minerals due to the application of heat, is known as metamorphism. Metamorphism is the process by which rocks are transformed into new rocks through changes in temperature, pressure, and/or the addition of fluids. In this case, the heat causes the clay minerals to recrystallize and transform into mica minerals, resulting in the formation of a new rock.

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The major rocks of Earth's crust are classified into three principal types based on: Group of answer choices three specific rock-forming processes; i.n., the manner in which they formed. element composition. mineral composition. relative and absolute locations.

Answers

The major rocks of Earth's crust are classified into three principal types based on their origin and appearance. Rocks in pure terms of geology can be defined as naturally occurring and coherent aggregate of one or more minerals.

Rocks are commonly divided into three major classes according to the processes that resulted in their formation. These three classes are-

Igneous Rocks: Igneous rocks are those which have been formed from molten lavaSedimentary Rocks: Sedimentary rocks consists of fragments derived from preexisting rocks or of materials precipitated from solutions.Metamorphic Rocks: Metamorphic rocks are those that have been derived from either igneous or sedimentary rocks under conditions that caused changes naturally and over time.

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what factors are the most critical in determining whether a fossil is preserved?

Answers

The most important elements in figuring out whether a fossil is preserved are C. whether the creature had hard parts and how quickly it was buried.

The required details for fossil in given paragraph

A fossil is any preserved relic, imprint, or indication of a once-living organism from a previous geological era. Bones, shells, exoskeletons, animal or microbe imprints in stone, items preserved in amber, hair, petrified wood, and DNA traces are a few examples. The fossil record refers to all fossils together. Studying fossils and learning about their age, formation process, and evolutionary relevance is called paleontology. Specimens that are more than 10,000 years old are typically regarded as fossils.

Between 3.48 billion and 4.1 billion years have passed since the earliest fossils were created.

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Complete question

What factors are the most critical in determining whether a fossil is preserved?

A. the age of the fossil and the age of sediments in which it is preserved

B. the temperature of the granite and how fast it cooled

C. whether the creature had hard parts and how fast it was buried

D. the color of the original organism compared to the color of the sediments in which it is found

E. whether the creature was a predator or was prey

What is physical weathering

Answers

Answer:

Physical weathering is a term used in science or in geography ,that refers to

geological process

Explanation:

easier defination rocks breaking apart without changing thier chemical composition

hope this helps :)

make me a brainlist pls

Answer:

Physical weathering is caused by physical processes such as changes in temperature, freezing and thawing, and the effects of wind, rain and waves.

Explanation:

The biological influences on organisms with in an ecosystem are called

Answers

Answer:

What is Abiotic Factors.

Explanation:

which of earth's spheres are involved in the formation of soil? select only those that apply. selecting incorrect answers will result in a loss of points.

Answers

Soil is formed through a combination of several of Earth's spheres, including the lithosphere, atmosphere, biosphere, and hydrosphere.

The lithosphere, or the solid outer layer of the Earth, provides the mineral materials that make up the soil. The atmosphere contributes gases, such as carbon dioxide and oxygen, which are essential for the growth of plants that live in the soil. The biosphere, or the collection of all living organisms on Earth, is also involved in the formation of soil as plants and animals contribute organic matter to the soil. Finally, the hydrosphere, or the water on Earth's surface, is necessary for the chemical reactions that take place in soil formation. Together, these four spheres work to create the diverse and complex soils found throughout the world.

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assume there is a decimal variable temperature write if-else statement to display the message warm

Answers

Answer:

Explanation:

Here's an example of an if-else statement in Python to display the message "warm" based on a decimal variable called temperature:

temperature = 23.5  # Example temperature value

if temperature > 20.0:

   print("Warm")

else:

   print("Not warm")

In this example, the if-else statement checks if the temperature variable is greater than 20.0. If it is, it prints "Warm." Otherwise, it prints "Not warm." You can adjust the value of temperature to see the different outputs based on the condition.

Explain how Wallerstein's description of the world as one entity with a single market
and labor force reflects the rise of globalization.

Answers

Answer: Wallerstein's description of the world as a single substance with a single advertise and labor constrain reflects the rise of globalization, which has brought approximately significant changes within the way that individuals and businesses connected and work over borders.

Explanation:

Wallerstein's description of the world as one entity with a single market and labor force reflects the rise of globalization in several ways. Wallerstein's theory of world systems suggests that the world is organized into a hierarchical system of core, semi-peripheral, and peripheral countries that are interdependent and interconnected through trade and commerce.

The rise of globalization has accelerated this process of interdependence and integration, as advances in technology and transportation have made it easier and faster to move goods, money, and people across borders. This has led to the emergence of a global market, in which goods and services can be produced, bought, and sold anywhere in the world.

At the same time, globalization has led to the development of a global labor force, as companies and corporations are able to hire workers from anywhere in the world, often at lower wages than they would have to pay in their home countries. This has led to a global division of labor, in which different parts of the world specialize in different types of production.

Wallerstein's theory also highlights the role of power and inequality in the global system. Core countries, which are typically more developed and industrialized, have more power and influence in the global system, while peripheral countries, which are often less developed and rely on exporting raw materials, have less power and are more vulnerable to economic fluctuations and crises.

In summary, Wallerstein's description of the world as one entity with a single market and labor force reflects the rise of globalization by highlighting the interconnectedness and interdependence of the world's economies and the emergence of a global market and labor force. It also underscores the role of power and inequality in the global system.

4. imagine a large complex of thunderstorms forms near champaign, il. from what body of water did the water vapor come from that supplied the moisture for these storms?

Answers

Imagine a big complex with thunderstorms developing near Champaign, Illinois, coming from the Gulf of Mexico.

What is a storm defined as?

A weather disturbance characterized by wind and typically accompanied by rain, snowfall, hail, snow, or thunder and lightning. a significant amount of rain, snow, or hail. 66 to 72 miles per hour (103 – 117 kilometers per hour) wind.

What brings about storms?

Rainstorms can develop at any season of the year over the majority of the United States, but they are more common in the milder springtime, summer, and fall months. Tornado development requires three basic components: wetness, an unstable air, and a method to get the atmosphere moving.

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Describe what occurs at a destructive boundary. Explain what folding is and give an example of a mountain region formed by folding.

Answers

At a destructive boundary, subduction and compression occur, leading to phenomena such as the formation of oceanic trenches, volcanic activity, and the creation of folded mountain ranges through the process of folding.

At a destructive boundary, also known as a convergent boundary or a subduction zone, two tectonic plates are colliding with each other. This collision can lead to various geological phenomena and significant changes in the Earth's crust.

At a destructive boundary, the denser oceanic plate is forced beneath the less dense continental plate in a process called subduction. As the oceanic plate sinks into the Earth's mantle, it creates a deep oceanic trench. The intense heat and pressure cause the subducted plate to melt and form magma, which can rise to the surface and erupt as volcanoes.

An example of a mountain region formed by folding is the Himalayas in Asia. The collision between the Indian and Eurasian tectonic plates created immense compressional forces, causing the rocks in the region to buckle and fold. The Himalayas are characterized by vast ranges of folded mountains, with dramatic peaks and valleys. The folding process led to the uplift of these mountains, making them one of the highest and most impressive mountain ranges on Earth.

The folding of rock layers in mountain regions like the Himalayas creates intricate patterns and structures, including anticlines (upfolded arches) and synclines (downfolded troughs). These folded structures contribute to the rugged and majestic landscapes we associate with mountainous regions.

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Where is the youngest crust of the Earth
found?
At the spreading centers in the middle of the
oceans.
In places where one plate is falling beneath
another.
At the edges by the continents

Answers

Answer: mid ocean ridges so I would go with the first one of at the spreading centers in the middle of the ocean

Explanation:

Not completely sure educated guess

Answer:

At the spreading centers in the middle of the oceans.

Explanation:

According to research, the youngest crust of the Earth can be found near the seafloor spread in the centers or mid-ocean ridges. So it can’t be at the edges by the continents or in places where one plate is falling beneath another.

All ancient civilizations in their own way practiced some form of science. Most notably were the Egyptians, Babylonians, and the ideas stemming from the Indo-Pakistan sub-continent. However, in the Western tradition science’s first birth came with the ancient Greeks. Early in their history, for whatever reasons, the Greeks concerned themselves with the human capacity for potentiality and achievement without any intervention from a god or gods. From this world that emphasized human capacity and achievement was conceived a world view that fused together two ideas. The first was the systematic application of reason to aid human understanding of reality. The second was the belief that the world could be understood through natural explanations as opposed to divine ones. is this true or false?

Answers

Yes, it is true. All ancient civilizations practiced some kind of science in their own way. The Egyptians, the Babylonians, and the ideas originating from the Indian sub-continent were the most prominent in the ancient world.

In the Western tradition, however, science was first introduced to the world by the ancient Greeks. For whatever reason, early in their history, the Greeks were interested in the human potential for growth and success without any divine or divine intervention.

The term “Ancient civilization” is used to refer to the earliest settled and settled societies that formed the foundation of later states, peoples, and empires.

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