New Zealand’s population is more ethnically diverse than Australia’s population.
Please select the best answer from the choices provided
T
F
Answer:True
Explanation:edg 2021
STEP 5: Analysis and synthesis of data
collected data should now be used to formulate a discussion around the existing geographical problem of tropical cyclone in South Africa
(PLEASE ANSWER QUICKLY- worth 10 pts!)
Use complete sentences to explain how global wind patterns such as the polar easterlies in the southern hemisphere would be impacted if Earth stops spinning.
If the Earth did not rotate on its axis, the atmosphere would only circulate between the poles and the equator in a simple back-and-forth pattern.
What influence do global wind patterns have?Temperature variations, particularly the differential in heating at the equator and poles, and the Earth's rotation affect the worldwide atmospheric circulation pattern. By transferring heat and water, winds shape regional climate and impact everyday weather.
If the Earth didn't spin on its axis, the atmosphere would merely move back and forth between the equator and the poles.
If the Earth had not been rotating and remained stable, the atmosphere would have merely drifted quietly back and forth between the equator, which is a low-pressure zone, and the poles, which are high-pressure zones. Moving air, on the other hand, is bounced, just as the Earth spins.
The air retreats to the right in the Northern Hemisphere and to the left in the Southern Hemisphere, resulting in curved routes rather than predictable and straight loops. Therefore, This deflection is known as the Coriolis effect.
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provide detailed explanations as to why the people of developing countries more adversely affected by droughts
Droughts are one of the most serious threats to sustainable development, especially in developing countries as we know it, due to the extreme exploitation of water resources, weather shifts, and climate change, which are mostly responsible for such aggravation.
Droughts end up causing adverse effects on food, human health, biodiversity, water resources, hydroelectric power generation, streams, perennial springs, and livelihood. Economic losses because of drought have increased a lot in the past decades. With only a portion of the actual losses accounted for, droughts are also responsible for increasing pollution, diseases, pests, and famine which immediately affect people residing in these developing countries.
The impacts of droughts fall on the overall ecosystem as a whole but vary from place to place. Strong scientific and statistical evidence has shown that human-induced climate change has led to an increased risk of drought caused by the increase in average surface temperatures around the world.
Droughts have globally widespread, and heavily underestimated impacts on societies, ecosystems, and economies, affecting people at the individual level; one of the best ways to minimize the adverse effects of droughts on people is through land restoration, which addresses many of the underlying factors of drought, like degraded water cycles and the loss of soil fertility. Great efforts must be made in creating functional ecological systems where nature is recreated and environments are restored to their natural state.
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The largest extinction, measured as a percentage of species that disappeared, occurred at the end of which geological period?.
Answer:
The Permian period is the largest mass extinction the Earth has ever known
Explanation:
The largest ever extinction, measured as a percentage of species that disappeared, is known to have occurred at the end of the Permian geological period.
What is the significance of the Permian Period?The Permian Period can be referred to or considered as a geological period that is known to have occurred some 300 million years ago. This period is known for extinction of the species of plants and animals that were obliterated due to volcanic eruptions.
The Permian period is not only known as a period of mass extinction, but also as a period of the highest number of extinctions that ever taken place on the Earth. This period occurred even before the extinction of species like dinosaurs.
Therefore, the significance regarding Permian Period has been aforementioned.
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Which effect occurred as a result of sixteenth century cultural diffusion?
1. The diets of most Europeans became less diverse.
2. Educated Europeans adopted the religious beliefs of foreign people.
3. Europeans diseases decimated the population of Native America.
4. Europeans grew less interested in going abroad.
As a result of sixteenth century cultural diffusion, there was a clear impact on the Educated Europeans as they adopted the religious beliefs of foreign people. Hence, Option B is correct.
What can be called cultural diffusion?The term "cultural diffusion" can be used when there is a spreading out and merging of different pieces of culture in a single place. There are various types of cultural diffusion.
Some of them are expansion, contagious, hierarchical, stimulus, and relocation diffusion. In other terms, cultural diffusion can also be called the spread of beliefs and social activities among people who belong to different ethnicities, religions, nationalities, and many more.
It is because of the cultural diffusion that occurred in the 16th century that educated Europeans adopted the religious beliefs of foreign people.
Thus, Option B is correct.
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How do you cite things in APA format?
it is thought that submarine canyons on the continental slope could have been generated by ____________
It's conceivable that forms like turbidity streams, structural movement, changes in the ocean level, and erosional strengths caused by sea streams are driven by the arrangement of submarine canyons on the continental slope.
Formation of submarine canyonsSubmarine canyons on the continental slope are thought to have been created by a variety of processes. Submarine canyons may be carved in part by turbidity currents, which are dense sediment-laden flows, according to one theory.
As these flow streams down the continental slope, they disintegrate and move residue, making directs and gullies simultaneously. Submarine canyon arrangement may moreover be affected by structural action, shifts in the ocean level, and erosional forms caused by sea streams.
In any case, the exact forms and components that lead to the arrangement of submarine canyons stay the subject of continuous logical requests and debate.
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The radiogenic age of a sample was determined to be 5780 years old. If that samples were melted in laboratory today and cooled back into a rock, the radiogenic age of the rock would be...... years old.
The radiogenic age of a rock is the time that has elapsed since it last experienced a particular physical process that produced a measurable amount of daughter isotopes.
The measurement is based on the amount of radioactive decay that has taken place within a sample since its formation, which is proportional to the time since the process that produced the isotope. The radiogenic age of a rock would remain the same if it were melted and cooled back into a rock in the laboratory today. The sample’s radiogenic age was established based on the decay of specific isotopes.
This decay occurred after the rock was formed, and therefore its radiogenic age is only affected by the passage of time, not by changes in physical state. Melting and cooling the rock in the lab would only result in a new igneous rock with a different physical appearance but the same age of 5780 years. Hence, the radiogenic age of the rock would remain the same even if it is melted in laboratory today and cooled back into a rock.
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Describe and explain the three reasons glaciers flow. please use complete sentences and proper grammar.
The bedrock has a slope, which causes the glacier to move downward as the first cause of glacial movement. Second, since ice crystals must bend to flow downward, the glacier's ice sheets help it do so. Ice sheets are created when ice crystals deform. Thirdly, the flow of melted water beneath the glacier is what causes it to move.
Why does Glacier flow occur?The weight and creep characteristics of ice have a straightforward effect on glacier flow. When ice is subjected to shear stress over time, it will creep, or plastically deform. Under constant shear stress, the rate of plastic deformation starts out quickly before tapering off to a constant amount.
A curved graph will be produced if this stable value, the shear-strain rate, is plotted against the stress for a wide range of applied stress values. The chart demonstrates the shear strain rate's near proportionality to the shear stress cube, which is the flow law or fundamental law of ice.
All assessments of the movement of ice sheets and glaciers are built around this fundamental law, which glaciologists frequently refer to as the Glen flow law.
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A(n) _______________ is a system of rules and principles that can be applied to a wide variety of circumstances and has been successfully tested, but that is not universally accepted.
A theory is a system of rules and principles that can be applied to a wide variety of circumstances and has been successfully tested, but that is not universally accepted.
The intent of THEORY is a reasonable or scientifically satisfactory known principle or body of principles proposed to explain phenomena. The word often denotes an untested hunch or a guess without backing proof. But for scientists, a theory has closely the opposite meaning. A theory is a well-substantiated description of a facet of the real world that can incorporate rules, hypotheses, and facts.
The theory is a belief to clarify something, or a set of directing principles. Einstein's views about relativity are an example of the theory of relativity.
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What is one reason of why the exosphere should not be considered a part of the atmosphere? Pls help!
how do political units create a region?
Answer: treaty’s help unit country so and lands along with trade agreements and allies and alliances even having to country’s have a common enemy to go against
Explanation:
Describe ways that people adapt in order to cope with different climates
Answer:
People have adapted to different climates in a variety of ways, both physical and cultural.
Physical adaptations include changes in body size and shape, as well as changes in metabolism and sweating. For example, people who live in cold climates tend to have larger bodies and higher metabolisms, which helps them to generate heat. People who live in hot climates, on the other hand, tend to have smaller bodies and sweat more, which helps them to cool down.
Cultural adaptations include changes in clothing, housing, and food. For example, people who live in cold climates often wear thick clothing and build insulated houses. People who live in hot climates often wear loose-fitting clothing and build houses with plenty of ventilation. People in all climates have also developed different ways of cooking and preparing food that are suited to the climate.
Answer:
Explanation:
People adapt to cope with different climates in various ways. Here are some common adaptive strategies employed by individuals and communities:
1. Clothing: Clothing choices and styles are often adapted to suit different climates. In colder regions, people wear layers of warm clothing, including coats, hats, gloves, and boots, to protect themselves from low temperatures. In hot and humid climates, lightweight and breathable clothing, such as loose-fitting garments made from natural fibers like cotton, is commonly worn to allow airflow and prevent overheating.
2. Shelter: The design and construction of dwellings are adapted to provide comfort and protection from the climate. In colder regions, houses may have insulation, central heating systems, and features like fireplaces to keep occupants warm. In hot climates, buildings are often designed with features like shade structures, proper ventilation, and materials with thermal insulation properties to keep the interiors cooler.
3. Food and Water: Dietary practices adapt to suit different climates. In colder regions, diets may include more warm and hearty foods to provide energy and combat the cold. In hot climates, diets often incorporate lighter and refreshing foods, with an emphasis on hydration. Access to clean and safe water sources is crucial in all climates, and adaptations like water storage systems or digging wells may be necessary in arid regions.
4. Agricultural Practices: Agriculture adapts to suit different climates and maximize crop yields. In colder climates, techniques like crop rotation, greenhouse farming, or using cold-tolerant crops are employed. In hot and arid regions, irrigation systems, drought-resistant crops, and water-conserving techniques like drip irrigation or mulching are commonly used.
5. Technology and Infrastructure: People employ various technological solutions to cope with different climates. Examples include air conditioning and heating systems in buildings, snow removal equipment in cold regions, water management systems like dams and canals in arid areas, and hurricane-resistant infrastructure in coastal regions prone to tropical storms.
6. Behavioral and Cultural Adaptations: People develop behavioral and cultural adaptations to cope with climate challenges. This includes adjusting daily routines, such as taking siestas or avoiding outdoor activities during the hottest parts of the day in hot climates. Traditional practices and knowledge passed down through generations often include coping strategies for specific climates, such as using specific herbs or remedies to alleviate symptoms of heat or cold.
These are just a few examples of the numerous ways in which people adapt to cope with different climates. Adaptations can vary depending on the specific climate conditions, cultural practices, available resources, and technological advancements in a particular region.
Which of these is the best evidence
that the Earth's crust has undergone
some major changes?
O a. The presence of marine fossils in
mountain rock
O b. The location of major rivers
O c The arrival of the vernal equinox
O d. The amount of available water on Earth
The Nile River _____.
1. is surrounded by farmland
2. was once the homeland of ancient civilizations
3. provides irrigation for surrounding farms
4. runs through Western Sahara and Morocco
5. floods annually
Answer:
2 and 5 and maybe 1
Explanation:
Answer:
1 is surrounded by farmland
Explanation:
Google and reasearch
On the coordinate plane below, what is the length of AB? A coordinate plane is shown with the following points A at negative 9, 4; B at 5, 4; C at 5, negative 5; D at negative 9, negative 5. All points are connected to create a rectangle. (3 points) a 8 units b 9 units c 14 units d 15 units
The length of AB is 14 units. So the correct answer is (c) 14 units.
To find the length of AB, we need to calculate the distance between point A (-9, 4) and point B (5, 4) on the coordinate plane.
We can use the distance formula to calculate the distance between these two points:
d = sqrt((x2 - x1)² + (y2 - y1)²)
Where (x1, y1) = (-9, 4) and (x2, y2) = (5, 4)
d = sqrt((5 - (-9))²+ (4 - 4)²)
d = sqrt((14)² + 0²)
d = sqrt(196)
d = 14
What is a coordinate plane -The intersection of two number lines creates a two-dimensional plane known as a coordinate plane. The x-axis, a horizontal number line, and the y-axis, a vertical number line, are two examples of these number lines.
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A shadow is formed by ...... bodies
Answer:
A shadow is formed by opaque bodies.
Explanation:
What is a shadow?
A shadow is a dark, two-dimensional shape formed on a nearby surface when an opaque body is placed in the path of light emitted by a source.
What are opaque bodies?
Objects that do not allow light rays to pass through them are known as opaque bodies. In other words, opaque bodies obstruct the path of incident light rays.
Why is a shadow formed?
A shadow is a dark two - dimensional cast of an opaque object placed in the path of light, on a nearby surface. Since the body obstructs the passage of light rays following that path and either deflects or absorbs them, so no light ray reaches the surface in the region covered by the projection of the body on that surface.
Hence the area appears dark and assumes a shape exactly identical to the shape of the opaque body.
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Explain why do we redraw voting boundaries every 10 years
Redistricting is the process by which new congressional and state legislative district boundaries are drawn. All United States Representatives and state legislators are elected from political divisions called districts. District lines are redrawn every 10 years following completion of the United States census. The federal government stipulates that districts must have nearly equal populations and must not discriminate on the basis of race or ethnicity.[1]
See the sections below for further information on the following topics:
Background: This section summarizes federal requirements for redistricting at both the congressional and state legislative levels. In addition, recent court decisions affecting redistricting policy are summarized.
Methods: This section provides details about the various redistricting processes used in the states.
Competitiveness: This section summarizes some of the arguments about the impact of redistricting on electoral competitiveness. Margin-of-victory and competitiveness data for congressional and state legislative elections is provided for informational purposes.
Majority-minority districts: This section summarizes the legal basis for the creation of majority-minority districts and details some of the arguments surrounding the practice.
To what extent does the present of raw materials encourage the distribution of manufacturing industry
Answer:
It is important to maintain raw minerals inventory in the proper quantity and at the right place to avoid any mishaps.
Explanation: The finished products that we sell are made from these materials. Hope this helps!!
The land area situated between the Cool Zone and the Warm Zone is termed the?
The land area situated between the Cool Zone and the Warm Zone is termed the transition zone.
The area of land in between warm and cool zone climates is known as the Transition Zone. It is difficult to find a grass that won't burn in the summer or freeze in the winter because of the bitterly cold winters and sweltering summers that lawns endure there.
The transition between cool- and warm-season grasses gives the region known as the Transition Zone its name. There isn't just one kind of grass that would work best here. Some warm-season grasses may find it too chilly in the winter, and some cool-season grasses may find it too hot in the summer.
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what absolutely essential resource is likely to limit the carrying capacity of earth for humans?
Water is likely to be the absolutely essential resource that can limit the carrying capacity of Earth for humans.
Water is indispensable for sustaining life and is a critical resource for various human activities such as drinking, agriculture, industry, and sanitation. However, water scarcity and the availability of clean freshwater are becoming increasingly concerning issues worldwide.
While water covers about 70% of the Earth's surface, only a small fraction of it is accessible freshwater. Population growth, urbanization, climate change, and unsustainable water management practices contribute to the growing water stress.
As the global population continues to rise, the demand for water will increase, placing strain on available water supplies. Regions already experiencing water scarcity or facing challenges in accessing clean water may encounter difficulties in supporting their population.
Water scarcity can lead to reduced food production, inadequate sanitation, and compromised public health. It can also trigger social and economic conflicts as communities compete for limited water resources.
Efficient water management, conservation, and sustainable practices are crucial for ensuring the availability of water for future generations. Addressing water scarcity and promoting equitable access to clean water are essential for maintaining the carrying capacity of Earth for humans and fostering sustainable development.
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a large air mass moves from west in the northern hemisphere mid latitude what is the air direction of the coriolis force
In the Northern Hemisphere, when a large air mass moves from west in the mid-latitude region, the Coriolis force will cause the air to be deflected to the right. The Coriolis force is an apparent force that arises due to the rotation of the Earth. As the Earth rotates from west to east, objects or fluids moving over its surface experience a deflection. In the Northern Hemisphere, this deflection causes the air to be diverted to the right of its intended path.
Therefore, when a large air mass is moving from west to east in the mid-latitude region of the Northern Hemisphere, the Coriolis force acts perpendicular to the direction of motion and deflects the air to the right. It is important to note that the Coriolis force is stronger for faster-moving objects and over longer distances, such as in the mid-latitude regions where large-scale weather systems occur.
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Put the events in order (from top to bottom) that describe the eruption of Mount St. Helens in May 1980
1. an earthquake occurred
2.an avalanche released pressure in the magma chamber
3.the volcano erupted in a lateral blast
4.a pyroclastic flow swept down the mountain
5.a column of ash rose 25km into the air
On May 18, 1980, an earthquake occurred triggering an avalanche that released pressure in the magma chamber. This led to a massive eruption of Mount St. Helens in a lateral blast, which was the most powerful volcanic explosion in the history of the United States. The eruption of Mount St. Helens in May 1980 can be described in the following order:
1. An earthquake occurred: The event began with a magnitude 5.1 earthquake on May 18, 1980, which weakened the north face of the volcano.
2. An avalanche released pressure in the magma chamber: The earthquake triggered a massive landslide and avalanche, causing the removal of a significant portion of the mountain's north face. This, in turn, led to a decrease in pressure within the magma chamber.
3. The volcano erupted in a lateral blast: As the pressure decreased, the volcano erupted in a massive lateral blast, sending a powerful shockwave of hot gases, steam, and rock debris outwards at speeds of up to 300 miles per hour.
4. A pyroclastic flow swept down the mountain: The blast also produced a pyroclastic flow, a dense and fast-moving mixture of hot volcanic gas, ash, and rock fragments. This flow traveled down the mountain and devastated the surrounding landscape.
5. A column of ash rose 25km into the air: Following the lateral blast and pyroclastic flow, a massive column of ash rose approximately 25 kilometers (15.5 miles) into the atmosphere, spreading ash across the Pacific Northwest and causing significant disruption to air travel and local communities.
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What Are the Differences Between the North and South?
The Civil War had fought between the North and south states from 1861-1865. The american civil war was fought versus the United States of America and the Confederate States of America there were so many differences we saw between them.
It is the collection of eleven southern states that left the Union the Civil War was fought over the moral issue of slavery. It was the economics of slavery and political control of that system that was central to the conflict.
while during the civil war so many differences we can saw between the north & south the North was anti- slavery. It was more densely populated. had more resources in terms of money, men and supplies. It was republician predominant by political parties
the South was pro-slavery during civil war it was not densely populated not having resources like oney, men, supplies. It also not having a poilitical support and the south was democrated.
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which is the world's deepest gorge amd in whish country does it lie?
Answer:
I think it is the Kali Gandaki Gorge and it's located in Himalayas in Nepal.
which soil profile is older (left or right)? explain how you know. also what is causing the reddish b horizon in the right profile?
By comparing the distinctness, development, and depth of the soil horizons in the left and right profiles, we can determine which soil is older. The reddish B horizon in the right profile indicates the presence of iron oxides, resulting from the oxidation of iron minerals in well-drained conditions.
To determine which soil profile is older (left or right), we need to examine the soil horizons' development and thickness. The older soil profile will typically have more distinct and well-developed horizons with a greater overall depth. These characteristics indicate that the soil has undergone more weathering, organic matter accumulation, and other processes that contribute to soil development over time.
The reddish B horizon in the right profile is caused by the presence of iron oxides. As soil weathers over time, iron minerals present in the soil can undergo oxidation, forming reddish-brown iron oxides. This process is more common in well-drained soils, where water and oxygen can easily circulate and facilitate the oxidation of iron.
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The ____________ was the warm period about 7,000 years ago in the Mid-Holocene that had grasslands in the Sahara and severe droughts in the Great Plains.
Holocene climatic optimum was the warm period about 7,000 years ago in the Mid-Holocene that had grasslands in the Sahara and severe droughts in the Great Plains.
What is climate?It should be noted that climate simply means the weather condition in a particular area for a period for time.
In this case, Holocene climatic optimum was the warm period about 7,000 years ago in the Mid-Holocene that had grasslands in the Sahara and severe droughts in the Great Plains.
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Why do we mine ores?
The effects of wildfire ________.
A. are always negative for plant life
B. seldom change the composition of the biota
C. are usually temporary
D. are to permanently prohibit the existence of biota
E. are relatively rare on Earth
The effects of wildfire option C. are usually temporary
Wildfire effects are typically temporary in nature. While wildfires can cause immediate devastation and destruction, ecosystems have evolved mechanisms to recover and regenerate over time. The resilience of ecosystems allows them to bounce back from the impacts of fire.
After a wildfire, plant life may initially appear scorched and damaged. However, many plant species have adapted to fire and possess specialized mechanisms to recover. Some plants have fire-resistant seeds that are stimulated to germinate by heat or smoke. Others have underground structures, such as bulbs or rhizomes, that survive the fire and sprout new growth. Additionally, some tree species have thick bark that protects them from the flames.
Furthermore, wildfires can have positive ecological effects in the long run. They can clear out dead vegetation, allowing sunlight to reach the forest floor and stimulate the growth of new plants. The nutrients released from burned organic matter can enrich the soil and promote the growth of diverse plant communities.
While the immediate impacts of wildfires can be severe, ecosystems are resilient and capable of recovering over time. Through natural processes of succession, plant life gradually returns, and the ecosystem regains its balance. Therefore, the effects of wildfires are usually temporary, as nature has the capacity to restore itself after such events. Therefore the correct option is C
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