Two reasons that Britain needed help in the Malay states

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Answer 1
There were several reasons why Britain needed help in the Malay states, but two of the main reasons are:

Protection of economic interests, Security concerns

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the polar cell is formed by air sinking at the and rising at mid-latitudes.

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The given statement that "the polar cell is formed by air sinking at poles the and rising at mid-latitudes" is false.

The polar cell is defined as a system of atmospheric circulation which is characterized by air rising at 60° to 70° latitude and sinking at the poles. This sinking air creates a high-pressure zones at the poles, it is because  in the polar regions tend to be dry and cold. The air that sinks at the poles moves towards the equator, where it is deflected by the coriolis effect and becomes the prevailing westerlies. The rising air at the 60° to 70° latitude creates a low-pressure zone, which is why this region tends to be stormy and wet.

Therefore, the polar cell is formed by air sinking at the poles and rising at 60° to 70° latitude, not the other way around.

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The complete question is :

"The polar cell is formed by air sinking at the poles and rising at mid-latitudes. " The statement is true or false ?

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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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

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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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Different types of lava have different viscosities, depending on their composition or temperature, or both. Label the types of tava flows based on their relative viscosities. Nichest Viscosity Intermediate viscosity lava lowest Viscosity lava SUBMIT ANSWER 1 OF 15 QUESTIONS COMPLETED < 02/15 > 71 &tv A What a Geologist Sees The image shows Mount St. Helens two years after its 1980 eruption. Given the shape of the volcano and presence of a lava dome (source of the steam), what is the most likely composition of the associated magma? SUBMIT ANSWER 1 OF 15 QUESTIONS COMPLETED < 08/15 > Choose one: O A. felsic to intermediate O B. no relationship between these features and magma composition O C. mafic O D. ultramafic

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The most likely composition of the associated magma is A. felsic to intermediate.

What is magma?

Magma is molten rock that is found beneath the Earth's surface. It is composed of several different minerals and materials and is formed when the hot rock found within the Earth's mantle rises and melts. Magma is a liquid mass of molten rock that is made up of intense heat and pressure. Magma is found in the lower parts of the Earth's crust, and it can sometimes reach the surface of the Earth, resulting in volcanic eruptions. The temperature of magma can range from 700°C to 1300°C.

Mount St. Helens experienced a Plinian eruption in 1980, which is typical of magmas with a felsic to intermediate composition. The presence of a lava dome is a sign that the magma is still relatively hot and therefore still has some gas, which is also consistent with a felsic to intermediate composition. Mafic, ultramafic, and other magma compositions do not typically produce Plinian eruptions.

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which natural hazard occurs more often at active plate boundaries?

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Answer:

The most often occurrence is volcanos.

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

Six police officers A, B, C, P, Q and R were saluting on Independence Day in such a way that was second to the left of Q but immediate right of A. There was one police officer between B and P. B and S Were not at any end of the row. P and Q were neighbors. Who was at the extreme left?​

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The extreme left in the row of six police officers saluting on Independence Day is Officer A.

Officer B is alternate to the left wing of Officer Q and  incontinently to the right of Officer A. Officer P and Officer Q are neighbors, with Officer P being one police officer to the left wing of Officer B. Officer R is on the extreme right of the row.  

The relationship between the police officers can also be  imaged with the following  example   A- B- Q- P- R   In this  example, Officer A is at the extreme left wing, Officer B is alternate to the left wing of Officer Q, and Officer P and Officer Q are neighbors. Officer R is at the extreme right.

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Explain why the Middle East is so compact in regards to population

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The Middle East is a region with a long history of human settlement, which has led to the development of complex societies and cultures.

What is the region home to?

The region is home to some of the world's earliest civilizations and has been a center of trade and commerce for thousands of years. In addition, the Middle East has a strategic location, linking Asia, Europe, and Africa, which has facilitated the movement of people, goods, and ideas.

The region's arid and semi-arid climate has also limited the availability of water and arable land, leading to concentrated populations in areas with more favorable environmental conditions.

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which of the following are true of eastern boundary currents? choose all that apply. view available hint(s)for part d which of the following are true of eastern boundary currents?choose all that apply. deep, as compared to western boundary currents wide, as compared to western boundary currents they flow along the more gradual slope of the hill of water fast, as compared to western boundary currents weak, as compared to western boundary currents

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.True statements about Eastern boundary currents: Eastern boundary currents refer to the currents on the eastern side of ocean basins that flow toward the equator from the poles.

The eastern boundary currents are characterized by being wide, weak, and flowing along the more gradual slope of the hill of water.True statements about Eastern boundary currents: Eastern boundary currents refer to the currents on the eastern side of ocean basins that flow toward the equator from the poles.

These currents, which are relatively shallow, are generally broader and weaker than western boundary currents.They are referred to as boundary currents because they represent the boundary between the subtropical and subpolar gyres.

Western boundary currents are known for their speed and depth, and the cold waters of the western boundary currents have a significant impact on global weather patterns. Eastern boundary currents, on the other hand, tend to be wider and weaker than their western counterparts.

Eastern boundary currents tend to flow along the more gradual slope of the hill of water, whereas western boundary currents tend to flow along the steeper slope of the hill of water. They are often accompanied by upwelling, which brings deep, nutrient-rich water to the surface, making them ideal fishing grounds.

Eastern boundary currents are characterized by being wide, weak, and flowing along the more gradual slope of the hill of water.

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which type of aggregates (igneous, sedimentary, or metamorphic) would you expect to be most suitable as a base-course material?

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For a base-course material, the type of aggregate that would be the most suitable is sedimentary aggregate. This is due to its structure, which makes it stable, durable, affordable and easy to compact.

When it comes to aggregate materials, there are three main types: igneous, sedimentary, and metamorphic.

Igneous aggregates are formed from volcanic material that has been solidified. These materials are hard and durable, making them ideal for high-strength concrete and asphalt. They are also useful in railroad ballasts, building materials, and as fill for large voids in construction projects.

Sedimentary aggregates are formed from the erosion of pre-existing rock layers. This type of aggregate is the most commonly used in construction. It's known for its durability, low cost, and easy availability. Sedimentary aggregates include materials like gravel, sand, and limestone.

Metamorphic aggregates are formed by the transformation of pre-existing rocks through heat and pressure. They are the hardest and most durable. Marble, slate, and quartzite are examples of metamorphic aggregates. They are mostly used in high-strength concrete, railroad ballasts, and as fill for large voids in construction projects.

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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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the difference between renewable and nonrenewable resources is that nonrenewable resources require

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Answer:

Explanation:

The difference between renewable and nonrenewable resources is that nonrenewable resources require millions of years to form and are being depleted at a faster rate than they are being replenished, while renewable resources are replenished naturally and can be sustained over time. Nonrenewable resources include fossil fuels such as coal, oil, and natural gas, as well as minerals and metals that are mined from the earth. These resources are finite and once they are depleted, they cannot be replaced. In contrast, renewable resources include solar, wind, hydro, geothermal, and biomass energy, as well as resources such as timber, water, and crops that can be regrown or replenished naturally. These resources are replenished over time and can be sustained for future generations. The use of renewable resources is seen as a more sustainable and environmentally friendly approach to resource management, as they have a lower impact on the environment and can be used indefinitely without running out.

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.

1 ptWhile it is impossible to predict an earthquake, they typically occur neartectonic plate boundariesfault linesboth a and b

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Answer:

Earthquakes typically occur near tectonic plate boundaries, which are regions where two or more tectonic plates meet. As the plates move and interact with each other, they can create stress and strain on the surrounding rocks, which can eventually lead to an earthquake. Therefore, the statement "earthquakes typically occur near tectonic plate boundaries" is correct. The term "fault lines" refers to the fractures or breaks in the earth's crust along which movement can occur during an earthquake. Fault lines often coincide with tectonic plate boundaries, but not all tectonic plate boundaries have visible fault lines. So, statement "a" is also correct, but statement "b" is not always true.

Explanation:

Please someone explain how to do this

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Answer:

i just need pnts

explanation:

im sorry

considering how magma composition, temperature, water content, and volatile content affect its viscosity, associate each of the volcanoes described in this activity with the type of eruption it should produce, or indicate whether the described characteristic is not related to eruption style. drag the appropriate items into their respective bins.

Answers

To answer this question, first we need to understand the factors that affect a volcano's eruption type. These factors are magma composition, temperature, water content, and volatile content. Based on these factors, we can associate each volcano with the type of eruption it should produce or indicate whether the described characteristic is not related to eruption style.

Volcano Magma Composition Temperature Water Content Volatile Content Eruption Type

A Felsic High Low High Explosive
B Intermediate High Moderate Moderate Explosive
C Mafic Low High Low Effusive
D Felsic High High High Explosive



As seen in the table above, we can associate each volcano with the type of eruption it should produce or indicate whether the described characteristic is not related to eruption style.

Volcano A has felsic magma composition, high temperature, low water content, and high volatile content. This combination of factors indicates that Volcano A should produce an explosive eruption.

Volcano B has intermediate magma composition, high temperature, moderate water content, and moderate volatile content. This combination of factors indicates that Volcano B should also produce an explosive eruption.

Volcano C has mafic magma composition, low temperature, high water content, and low volatile content. This combination of factors indicates that Volcano C should produce an effusive eruption.

Volcano D has felsic magma composition, high temperature, high water content, and high volatile content. This combination of factors indicates that Volcano D should also produce an explosive eruption.

Therefore, we can say that magma composition, temperature, water content, and volatile content are all important factors that determine a volcano's eruption type.

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Which of the following are true of western boundary currents?
Choose all that apply.
deep, as compared to eastern boundary currents
they flow along the more gradual slope of the hill of water
wide, as compared to eastern boundary currents
weak, as compared to eastern boundary currents
fast, as compared to eastern boundary currents

Answers

Western boundary currents are deep, fast and wide as compared to eastern boundary currents.

What are western boundary currents?

Western boundary currents are swift, narrow currents that flow along the western edge of ocean basins. They move warm water from the equator toward the poles, much like the Gulf Stream. They flow along the edge of the western continental shelves and are strongly influenced by the continental topography.

Western boundary currents are deep, as compared to eastern boundary currents.Western boundary currents flow along the more gradual slope of the hill of water.Western boundary currents are wide, as compared to eastern boundary currents.Western boundary currents are fast, as compared to eastern boundary currents.

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the distinctive vertical joints seen in this basalt flow most likely formed as a consequence of which of the following?

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The distinctive vertical joints seen in this basalt flow most likely formed as a consequence of thermal contraction. Thermal contraction occurs when hot molten rock cools and contracts upon cooling. As the rock cools, fractures form which create the vertical joints seen in the basalt flow.

Thermal contraction is common in basalt flows and can result in a variety of joint types, depending on the rate of cooling. As the molten rock cools, it contracts and fractures, resulting in a network of vertical and horizontal fractures, which can range in size from millimeters to centimeters. As the rock cools further, these fractures can become more pronounced, resulting in distinct vertical columns of rock.

The rate of cooling of the molten rock is a major factor in determining the size and pattern of the vertical joints in the basalt flow. If the molten rock cools quickly, it contracts more rapidly and thus more fractures form, creating a more pronounced pattern of vertical joints.

Conversely, if the molten rock cools slowly, the contraction is slower and less fractures form, resulting in a less pronounced pattern of vertical joints.

The cooling of the molten rock is also affected by the type of environment it is exposed to. Basalt flows in a temperate environment will cool at a slower rate than those exposed to a colder environment, thus producing a different pattern of vertical joints.

In conclusion, the distinctive vertical joints seen in this basalt flow most likely formed as a consequence of thermal contraction. The size and pattern of the joints is affected by the rate of cooling of the molten rock, as well as the type of environment it is exposed to.

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true or false lithofication is the process in which two plates move towards each other and the denser one slides below the other.

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The statement "lithification is the process in which two plates move towards each other and the denser one slides below the other" is False because lithification refers to the process in which sediment is compacted and cemented together to form sedimentary rock.

What is lithification?

Lithification is the process by which sedimentary rocks are formed. It is a transformation process that involves the compaction and cementation of sediment to produce solid rock from loose sediment. The process of lithification results in the creation of sedimentary rocks from sediments such as clay, silt, sand, and gravel.

How does lithification occur?

Lithification occurs in three stages:

Compaction of Sediments - This occurs when the weight of overlying sediment squeezes the water out of the sediments beneath it. As a result, the sediment becomes denser, and the grains are packed closer together.

Cementation of Sediments - Cementation occurs when mineral crystals are deposited in the small spaces between the sediment grains, gluing them together to create solid rock.

Sedimentary Rocks - Sedimentary rocks are formed when the compacted and cemented sediment becomes hard and forms rock.

Thus, the statement, "Lithification is the process in which two plates move towards each other and the denser one slides below the other," is false.

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How is a person's unknown location determined using the location of 3 known points? A. By calculating the ephemeris B. By determining the pseudorange C. By implementing 3D equilateration D. By using the 2D trilateration process

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Using the location of 3 known points the unknown location of a person is determined by applying a 3D equilibration. Here option C is the correct answer.

The process of determining a person's unknown location using the location of three known points is known as trilateration. Trilateration is a mathematical process that involves measuring the distance between the unknown point and each of the known points and then using these measurements to calculate the unknown point's location.

Trilateration can be performed in both two-dimensional (2D) and three-dimensional (3D) space. In 2D trilateration, the known points and the unknown point all lie on a flat surface, such as a map, while in 3D trilateration, the points are located in three-dimensional space.

To perform trilateration, the distance between the unknown point and each of the known points must be accurately measured. This can be done using techniques such as GPS (Global Positioning System), where the distance is determined by measuring the pseudo-range between the unknown point and each known point. Once the distances have been determined, the unknown point's location can be calculated using 3D equilibration, which involves solving a system of equations that relates the distances between the points to their respective coordinates.

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

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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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changes in agriculture may have contributed to global changes in temperature.​

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Yes, changes in agriculture have contributed to global changes in temperature.

What is agriculture?

Agriculture is the practice of cultivating crops and raising animals for human use and consumption. It involves various activities such as preparing the soil, planting seeds, watering, fertilizing, pest management, and harvesting. Agriculture plays a crucial role in providing food, fiber, and fuel for the world's population. It has been practiced for thousands of years and has undergone significant changes over time, including the use of advanced technologies and scientific methods. Agriculture is essential for economic development and sustainability, and it has the potential to contribute to poverty reduction and food security. However, it also faces challenges such as climate change, land degradation, and water scarcity, which require innovative solutions and sustainable practices to ensure its continued success.

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what affects climate how climate affects living organisms how does weather change in different areas

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The climate is influenced by temperature, where climate change will affect changes in the habitat of living things, and changes in the weather depending on the geographical location of an area.

The climate is affected by several factors, some of which are natural and others of which are human-made. Changes in solar radiation, Earth's orbit, and volcanic activity all contribute to the Earth's changing climate. Climate change caused by human activities, such as greenhouse gas emissions from burning fossil fuels, is the most significant driver of current climate change.

Climate change has a significant effect on living organisms. It may cause habitat destruction, changes in food chains, and changes in the timing of biological events like flowering and migration. Climate change is a significant contributor to the decline of biodiversity around the world, as well as the spread of infectious diseases like Lyme disease and West Nile virus.

Weather varies greatly depending on the location. It can be influenced by a variety of factors, including altitude, latitude, and proximity to water bodies. For example, coastal regions tend to have milder climates due to the moderating effect of the ocean, while areas farther inland tend to have more extreme temperature fluctuations. Mountainous regions experience rapid temperature changes as the altitude rises. The amount of precipitation also varies greatly depending on the area's climate.

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What is the theory used when examining the stratigraphy in an archaeological excavation?

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The theory used to examine the stratigraphy in an archaeological excavation is known as the Law of Superposition. This law states that the deeper an archaeological layer is, the older it is relative to the layers above it.

This is because the newer layers were laid down on top of the older layers, which were already in place. This law is used to help archaeologists date the different layers in an excavation, as well as to identify the relative age of artifacts that are found in the layers.

The Law of Superposition has been an invaluable tool in archaeological excavations, as it has allowed archaeologists to gain a better understanding of the past and how it evolved over time.

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select the statements that correctly describe a cause or process of spreading earth's seafloor. A. magma rising from the mantle forms new oceanic crust. B. tidal forces from the moon stretch the seafloor, slowly pulling it apart. C. rising ocean temperatures reduce the density of parts of the oceanic crust, allowing these areas to expand. D. strong ocean currents moving in opposite directions erode and thin areas of the oceanic crust. E. earth's tectonic plates move apart. F. earth's strong magnetic field forces magnetic minerals within the oceanic crust to align and separate.

Answers

The statements that correctly describe a cause or process of spreading earth's seafloor are that magma rising from the mantle forms a new oceanic crust and the earth's tectonic plates move apart. The correct options are b and e.

Divergent plate boundaries cause seafloor spreading. Heat in convection currents in the mantle makes the earth's crust more flexible and less dense as tectonic plates progressively migrate apart. Less dense material rises, generating mountains or elevated areas of the seafloor.

Tensional stress generates fractures in the lithosphere when oceanic plates diverge. The driving factor for seafloor spreading ridges was tectonic plate slab movement at subduction zones, instead of magma pressure, however magma activity is common near spreading ridges.

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what is the dominant factor in the location of the population settlements in north africa and southwest asia?

Answers

The dominant factor in the location of population settlements in North Africa and Southwest Asia is the availability of resources.

These regions are characterized by harsh climates and  thirsty  geographies, limiting the vacuity of pastoralist land and fresh water. People have settled near gutters, oases and  littoral areas as these offer access to water and land suitable for  husbandry. In some areas,  similar as the Middle East,  

oil painting reserves have been a major factor in the  position of  agreements, as they  give an  profitable source of income. In other areas,  similar as the Maghreb, mortal  agreements have been established in areas with a more temperate climate, allowing for  further varied  foliage and a more different range of  resources.

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what makes titan unique among the moons of the solar system?

Answers

Answer:

Titan is bigger than Earth's moon, and larger than even the planet Mercury. This mammoth moon is the only moon in the solar system with a dense atmosphere, and it's the only world besides Earth that has standing bodies of liquid, including rivers, lakes and seas, on its surface.

Explanation:

Among our solar system's more than 150 known moons, Titan is the only one with a substantial atmosphere. And of all the places in the solar system, Titan is the only place besides Earth known to have liquids in the form of rivers, lakes and seas on its surface.

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

Answers

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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what is carbon dioxide and what causes it to be released into the atmosphere, contributing to global warming?

Answers

Answer:

CO2 is a greenhouse gas.

Explanation:

Right now, humans are the main cause of CO2 emissions. CO2 comes from burning fossil fuels primarily such as when we run our cars or in power plants.

Complete the description of convergent evolution Match the terms in the left column to the appropriate blanks on the right. Terms can be used once, more than once, or not at all. Reset Help analogous features in distantly Convergent evolution is the evolution of lineages. It occurs when related organisms obtain a needs. Such resemblance is said to be that appeared convergently do not have a trait due to Therefore, species with traits dependent closely shared tralt common ancestor Independent different + similar homologous

Answers

Convergent evolution is the process of evolution in which unrelated or distantly related organisms evolve similar traits. This happens as a result of similar environmental pressures, causing the organisms to develop analogous features in order to survive.

Such resemblance is said to be homologous and is independent of any shared ancestry. Traits that appear convergently do not have a closely shared common ancestor, but are instead the result of similar needs resulting in similar traits being formed in different species.

Therefore, species with traits dependent on similar environmental pressures can develop similar characteristics, even if they are distantly related. This process helps to explain why similar features can be seen in distantly related species and helps to recognize the importance of environment over ancestry in the formation of traits.

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Of the following solutions, which has the greatest buffering capacity? Explain. A) They would all have the same buffer capacity. B) 0.821 M HF and 0.217 M NaF C) 0.100 M HF and 0.217 M NaF D) 0.821 M HF and 0.909 M NaF E) 0.121 M HF and 0.667 M NaF

Answers

We know the formula β = (d[A-] / dpH) / [HA] by using this formula we can say that option B has the highest buffer.

A) 0.821 M HF and 0.217 M NaF

pH = pKa + log([A-]/[HA])

pH = 3.17 + log(0.217/0.821) = 2.54

β = 0.0025

B) 0.821 M HF and 0.909 M NaF

pH = 3.17 + log(0.909/0.821) = 3.27

β = 0.0036

C) 0.100 M HF and 0.217 M NaF

pH = 3.17 + log(0.217/0.100) = 3.67

β = 0.0022

D) 0.121 M HF and 0.667 M NaF

pH = 3.17 + log(0.667/0.121) = 4.15

β = 0.0022

thus, we can see that option B has the highest buffer capacity coefficient and also would have the highest buffering capacity.

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