Answer:
71%
Explanation:
Pleade vote brainest it will really help
If you were to go north from the Sahel, you'd find __________. If you'd go south from the Sahel, you'd find __________.
A. Sahara; Nile
B. tropical grasslands; Sahara
C. Sahara; tropical grasslands
D. Nile; Sahara
Answer:
If you were to go north from the Sahel, you'd find the Sahara. If you were to go south from the Sahel, you'd find tropical grasslands.
The Sahel is a transitional region in Africa that lies between the Sahara Desert to the north and the tropical grasslands to the south. As you move north from the Sahel, you would encounter the Sahara Desert, which is the largest hot desert in the world, covering over 3.6 million square miles across North Africa.
As you move south from the Sahel, you would encounter the tropical grasslands, which are characterized by tall grasses and scattered trees. These grasslands are also known as savannas and cover a large part of Africa, as well as other parts of the world such as South America and Australia.
Therefore, the correct answer is B. tropical grasslands; Sahara.
Which of the following climate types has large temperature changes between the summer and winter months?
Answer:
continental
Explanation:
I just took the mini exam and got it right. Plz mark as brainliest
Answer:
Continental! Hope this helps! <3
Explanation:
Because they stretch across 4,500 miles, the __________ Mountains are considered the world’s longest mountain range.
Answer:
The Andes Mountains
Explanation:
Your search engine can easily solve problems like this :)
The type of government people all over the world lived under throughout most of human history was...
O Anarchy
O Democracy
O Monarchy
O Dictatorship
Help please !! Greatly appreciate it (:
Which of the following is defined in the text like a force that impedes, slows or stops the spread of ideas and behaviors through space?
The first law of geography.
The friction of distance
The Jedi force.
The logic of capitalism
The correct option is B, The Friction of distance.That is defined in the text like a force that impedes, slows or stops the spread of ideas and behaviors through space.
The friction of distance is a conception in geography that refers to the force that impedes, slows down, or indeed stops the spread of ideas and actions through space. This is due to the fact that distance can act as a hedge to communication, trip, transportation among other effects. When people or goods must cross long distances they encounter many obstacles and challenges.
These challenges can include physical fences like mountains or bodies of water, as well as social or artistic walls like language or customs. All of these factors can produce disunion making it more delicate to spread ideas and actions across distance.
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If you are looking at the Inner planets, what could you determine about the temperature of these planets?
Answer:
When looking at the Inner planets you can infer and determine the temperature of them will be greatly higher than the outer planets. This is due to the sun being closer to the four inner planets giving off more heat.
Explanation:
The sun radiates heat to the closest objects to it, in this case the inner planets meaning they will be hotter.
What are some problems associated with urbanization?
the expected inundation from storm surge is the main consideration in determining what coastal areas should be evacuated.
True, cyclonic tidal waves do not form water walls like tsunamis.
Which area will be greatly affected by a storm surge?Coastal areas where the adjacent seafloor is shallow are more likely to be affected by large storm surges than coastal areas where the nearby seafloor is deep. A coastal area next to a shallow sea (left) is more affected by storm surge than a coastal area next to a deep sea (right).The National Hurricane Center (NHC) uses a technique called Sea, Lake and Overland Surges from Hurricanes to gauge the height of storm surge and forecast it in real time when a hurricane is imminent. 38 distinct coastal regions, or basins, on the U.S. Atlantic and Gulf of Mexico coasts, as well as Oahu, Hawaii, Puerto Rico are subject to the model's application.The width and slope of the offshore shelf, the slope of the shoreline itself, the geometry of the shoreline and other coastal features, as well as the size, severity, speed, and angle of the storm itself, can all affect the height of the storm surge.Learn more about storm surge here: brainly.com/question/13347388
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Match the economic term in column with the definition in column 2.
Command
Economic decisions made
economy
by the free choices of
producers and consumers
Mixed economy
Government tells
producers how and what
to produce
Free-market
system
?
Hunting and gathering,
growing food crops, and
herding animals
Traditional
economy
Combines the principles of
free choice and
government intervention
Mixed economy are the economic term in column with the definition in column 2.
What is economy?Economy is the system of production, distribution, and consumption of goods and services in a given society. It is a complex field of study that involves many different factors, including the production of goods, the distribution of wealth, the allocation of resources, and the overall health of the nation's economic system. It is important to understand the different components of an economy in order to make informed decisions about how to best utilize resources and create economic stability. Economy is a key factor in understanding the wealth and stability of a society, and it is an essential part of any successful nation.
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The angle of the Sun's rays striking Earth's surface greatly affects thea. earths seasonsb. equatorial and polar regionsc. intensity of solar energy received at earths surfaced. distribution of solar energy- from the poles to the equator, hours of daylight, and the seasons
The angle of the Sun's rays striking Earth's surface greatly affects the distribution of solar energy, from the poles to the equator, hours of daylight, and the seasons. This is because the Earth's axis is tilted at an angle of about 23.5 degrees relative to its orbit around the Sun.
As a result, the angle at which the Sun's rays hit different parts of the Earth changes throughout the year, causing variations in the intensity of solar energy received at Earth's surface.
The changing angles of the Sun's rays also cause the different seasons on Earth. When the Northern Hemisphere is tilted towards the Sun, it receives more direct sunlight, resulting in summer, while the Southern Hemisphere experiences winter. Similarly, when the Northern Hemisphere is tilted away from the Sun, it receives less direct sunlight, resulting in winter, while the Southern Hemisphere experiences summer.
The angle of the Sun's rays also affects the equatorial and polar regions, as the equator receives the most direct sunlight throughout the year, while the polar regions receive the least. Overall, the angle of the Sun's rays is a crucial factor in shaping the Earth's climate and weather patterns.
Hi! The angle of the Sun's rays striking Earth's surface greatly affects the intensity of solar energy received at Earth's surface, distribution of solar energy, and Earth's seasons.
The Earth's tilt of 23.5 degrees causes the Sun's rays to strike different regions with varying intensity. When the angle is perpendicular, the solar energy is concentrated and more intense, which occurs in the equatorial regions. In contrast, the Sun's rays are more spread out at higher latitudes, like the polar regions, causing a weaker intensity.
This variation in solar intensity influences the distribution of solar energy from the poles to the equator. Regions closer to the equator receive more energy and have warmer climates, while polar regions receive less energy and have colder climates. Furthermore, the tilt also results in varying hours of daylight throughout the year, with longer days during summer and shorter days during winter.
Finally, the Earth's tilt and the resulting changes in solar intensity and daylight hours contribute to the formation of seasons. When one hemisphere is tilted towards the Sun, it experiences summer, while the opposite hemisphere experiences winter. This cycle of seasons plays a crucial role in the Earth's climate system.
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short term earthquake prediction research has focused on ________.
Short-term earthquake prediction research has focused on the development of methods and technologies that can provide warnings before an earthquake occurs.
While it is currently not possible to accurately predict the exact timing, location, and magnitude of earthquakes, researchers have made progress in developing systems that can detect seismic activity and provide alerts to people in affected areas. These systems include seismic monitoring networks, satellite imaging, and ground-based sensors that can detect changes in the earth's surface. One promising approach is the use of machine learning algorithms to analyze data from multiple sources and predict when an earthquake may occur. For example, researchers have used data from GPS sensors to detect subtle changes in the earth's surface that can indicate an impending earthquake. They have also used data from social media and other sources to track patterns of seismic activity and alert people in affected areas.
Overall, while short-term earthquake prediction remains a challenging area of research, progress is being made in developing technologies and methods that can help reduce the impact of earthquakes on people and communities. By continuing to invest in research and development, we can work towards a future where earthquakes are no longer a source of fear and uncertainty.
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8. True or False: Earth's orbit around the sun takes about 365 1/4 days. Four years of about 365 1/4
days each can be approximated by taking three years of 365 days and a fourth year of 366 days.
True
False
Answer:
I think it's TRUEEEEEEE
During World War II, Japan conquered much of Southeast Asia, and prevented the United States from trading with the region. What product do you think the United States had trouble obtaining as a result?
A.) Iron
B.) Rubber
C.) Oil
D.) Gold
------is one of two water masses that ate part of the thermohaline circulation .
Answer:
Northern atlantic deep water
Explanation:
51:55
Which of the following statements about languages in sub-Saharan Africa is true?
A.
Most countries have only one official language.
B.
Many countries include at least one European language among their official languages.
C.
Most countries have one common language spoken by almost all of their people.
D.
Most languages spoken in the region are Khoisan, or “click” languages.
Answer:
Trust me it is B i have proof.
Explanation:
edge and i got a picture
Answer:
I came to confirm that the person above was right. :)
Explanation:
Which process is a form of mechanical weathering?
Explanation:
Mechanical Weathering Mechanical weathering, also called physical weathering and disaggregation, causes rocks to crumble. Water, in either liquid or solid form, is often a key agent of mechanical weathering. For instance, liquid water can seep into cracks and crevices in rock.
Which of the following is an example of a population? (3 points) All of the plants that grow in the same climate around the equator A forest where an eagle is about to eat a squirrel All of the coyotes that use the same resources and inhabit the same forest The earthworms that live in a grassland, plus the earthworms that live in a forest
A population refers to all the members of a species that live in the same habitat. All of the coyotes that use the same resources and inhabit the same forest is an example of a population.
A population refers to all the members of a species that live in the same habitat, meaning they live in the same geographic location and have the potential to interbreed and produce fertile offspring. Populations can range from tiny to enormous, spanning only a few square meters or the entire planet. Because the environment is finite and can only support a certain number of individuals, populations are often limited in size.
The carrying capacity of a habitat is the maximum population size it can sustain. Therefore, population size is determined by the number of births, deaths, immigration, and emigration that occur over time. Examples of populations :All of the coyotes that use the same resources and inhabit the same forest is an example of a population.
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what changes is tony's chocolate making to the chocolate industry? (rotten: bitter chocolate documentary)
Answer:
Rotten
Explanation:
Yun Lang Alam ko
Kung Mali wag nyo nlang Yan pansinin
Yun Lang kasi ang Alam ko
Thank you nlang po Kung Ok Yan
Answer:
Mom and I are finally going to see that new documentary about chocolate!
Explanation:
why drainage Density change during the year
Answer:
climate
Explanation:
because the weather change to much the t can be hot or cold
but not sure about this answer
Compare the formation of high and low islands
Answer:
Explanation:
High Islands are large mountains and are formed from volcano. They have fertile soil and can grow crops
. Low Islands are the opposite, they have poor soil and cannot produce crops
by contrast, are islands composed of sedimented material, coral rubble, or uplifted coral reefs..
HOPE THAT HELP YOU :)
The best time to observe the moon to see its crater is during a... O harvest moon O full moon O crescent moon O super moon
The best time to observe the moon to see its crater is during a full moon.
A full moon is a stage in the lunar cycle in which the Earth is between the sun and the moon. It is when the moon is at its brightest.
The moon is totally illuminated in the night sky during this time. Full moons occur roughly once a month, or every 29.5 days, and are frequently used as cultural markers in many societies.
The best time to observe the moon to see its crater is during a full moon.When is the best time to observe a super moon?Super moons happen when the moon is closest to Earth in its orbit. It appears up to 14% larger and 30% brighter than usual.
The best time to observe a super moon is when it is at its fullest, according to NASA.
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The best time to observe the moon to see its crater is during a crescent moon. So the correct option is option C.
When you look at the Moon at night, you can see the damage that asteroids and comets create on a planetary body’s surface. Some of the impact craters on the Moon’s surface are so big that they can be seen from one's home.
The craters of the moon are home to some of the world’s most remarkable geological formations and ecosystems. The craters are dominated by rocks from recent volcanic eruptions, and they’re where plants and animals began to settle as the molten lava fields cooled.
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PLZZ HELP GIVING 10 points
Which of the following statements is most accurate about map orientation?
A) A map is always drawn with north at the top
B) The compass rose is in the bottom right corner of all maps
C) Street maps do not have an orientation
D) Orientation is based on how the cartographer drew the map
Answer:
A
Explanation:
A map is always drawn with the north at the top which is a statement most accurate about map orientation. The correct option is A.
Why is map orientation important?The orientation of the map, or how it relates to the compass directions of North, East, South, and West, is one of the final things we need to comprehend in order to read a map. That is very significant. If a location is indicated on a map as being straight ahead of you, that information is only accurate if you are facing the correct way.
Finding the alignment between a map's directions and those on the ground is known as orienting a map. While most modern maps are now drawn with the true north at the top, the term "true north" dates back to medieval Europe when church academics made maps of the known globe with the Orient (China) at the top.
Thus, the ideal solution is option A.
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1.Why is irrigation needed in California’s Central Valley?
Answer:
to aid the proper watering
Explanation: Because there are not enough resources in that place and that makes it unpleasant place to live which is a place without life and there are high values of money in stores
How does the Sun increase air temperature?
Answer:
read read read read read read read
Explanation:
above
if a basalt body cuts across a fault, what are the relative ages of the basalt and the fault? group of answer choices the fault must be younger, according to the principle of cross-cutting relationships. the basalt must be younger, according to the principle of cross-cutting relationships. the fault must be older, according to the principle of original horizontality. their relative ages cannot be determined from the information given.
The relative ages of the basalt and the fault can be determined based on the principle of cross-cutting relationships which says that " The fault must be older.
The principle of cross-cutting relationships states that if any component needs to be cut another component then it must be younger than the component it cuts. Therefore, the basalt body that cuts across the fault must be younger than the fault.
Therefore, the above principle of cross-cutting relationships can be written or said as "the fault must be older" which describes the above para content. The relative age of a fault break through sedimentary layers can be determined by using the principle of cross-cutting relationship.
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Does the environment of a place involve physical or human characteristics?
Yes
Explanation:
The physical characteristics of a place make up its natural environment and include landforms, bodies of water, climate, soils, natural vegetation, and animal life. The human characteristics of a place come from human ideas and actions. The physical and human characteristics of a place make it unique.
The news media often report an earthquake's magnitude on the richter scale. Which items are characteristics of a richter earthquake magnitude?
Answer:
The Richter Scale is a measurement of the magnitude of an earthquake. The following are characteristics of a Richter Earthquake Magnitude:
It is a logarithmic scale: The Richter Scale is a logarithmic scale, meaning that the energy released by an earthquake increases exponentially with each whole number increase in magnitude. For example, an earthquake with a magnitude of 6.0 is 10 times more powerful than an earthquake with a magnitude of 5.0.
It measures the amplitude of seismic waves: The Richter Scale measures the amplitude of seismic waves, which are the vibrations that travel through the Earth's crust during an earthquake. The amplitude is determined by measuring the maximum height of the waves recorded by a seismograph.
It has no upper limit: The Richter Scale has no upper limit, meaning that theoretically, there is no limit to the magnitude of an earthquake that could be recorded. However, in practice, the largest earthquake ever recorded had a magnitude of 9.5.
It is widely used: The Richter Scale is one of the most widely used measures of earthquake magnitude, and it is often reported by the news media after an earthquake.
It is not the only scale: While the Richter Scale is a widely recognized measure of earthquake magnitude, there are other scales that are also used, such as the moment magnitude scale and the Mercalli intensity scale. These scales measure different aspects of an earthquake, such as the total energy released or the level of damage caused
Explanation:
The Richter scale is a logarithmic scale used to measure the magnitude of an earthquake.
The scale ranges from 0 to 10 and each whole number increase represents a tenfold increase in the earthquake's amplitude. Some characteristics of a Richter earthquake magnitude include the amount of energy released, the size of the fault rupture, and the depth of the earthquake's epicenter.
Earthquakes with a magnitude of 3.0 or lower are generally not felt, while those with a magnitude of 7.0 or higher can cause widespread damage and loss of life. The Richter scale is often used by the media to quickly and easily communicate the severity of an earthquake to the public.
However, it is important to note that the scale does not necessarily indicate the extent of damage caused by an earthquake, as factors such as distance from the epicenter and soil conditions can also play a significant role.
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How have climate and history helped determine the population patterns of the arabian peninusla
The population patterns of the Arabian Peninsula have been influenced by both climate and historical factors. Here are some ways in which climate and history have played a role:
Climate: The Arabian Peninsula has a predominantly arid climate with harsh desert conditions. This has limited the availability of water and resources in many areas, leading to population concentration in regions where water sources are more abundant, such as coastal areas and oases. The availability of water and favorable climate for agriculture has shaped settlement patterns and the distribution of population.
Historical Trade Routes: The Arabian Peninsula has been an important crossroads for trade and commerce for centuries. Historical trade routes, such as the Incense Route and the Silk Road, have brought people from different regions, fostering cultural exchange and influencing population movement. Cities along these trade routes, such as Mecca, Medina, and Dubai, have historically attracted diverse populations due to their strategic locations for trade.
Bedouin Nomadic Lifestyle: The nomadic Bedouin tribes have traditionally inhabited the Arabian Peninsula, adapting to the desert environment and following a pastoralist lifestyle. Their movement patterns have been influenced by the availability of water and pastures for their livestock, leading to dispersed settlements and a nomadic way of life.
Historical Events and Settlements: Throughout history, various empires and civilizations have exerted influence and established settlements in the Arabian Peninsula, such as the Nabateans, Persians, Ottomans, and British. These historical events have impacted population patterns, cultural practices, and urban development in the region.
Overall, the population patterns of the Arabian Peninsula have been shaped by the interaction of climatic factors, historical trade routes, nomadic lifestyles, and historical events. It is important to note that population distribution and patterns continue to evolve with modern-day factors such as economic opportunities, infrastructure development, and urbanization.
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HELP ASAP PLS THIS IS DUE TOMORROW
Explain why scientists are able to predict the likelihood of environmental hazards, but not with 100% accuracy. This explanation should be an INTERVIEW SCRIPT where one student asks questions and another student answers them. Be sure to talk about all Hazards, not only a single type.
You need at least 5 questions and 5 answers in your interview script. It should be recorded.
For the A grade, explain why the earthquake in Turkey was so strong and the likelihood of another earthquake in the same region happening again.
Answer:
Interview Script:
Student 1: Why can't scientists predict environmental hazards with 100% accuracy?
Student 2: While scientists have advanced tools and methods to predict environmental hazards, there are several reasons why they cannot predict them with complete accuracy. One of the main reasons is that the Earth's natural processes are incredibly complex and can be affected by many different factors, making it difficult to account for all of them.
Student 1: Can you give an example of an environmental hazard that scientists can predict with some accuracy?
Student 2: Sure, let's take hurricanes, for example. Scientists use satellites, weather models, and other tools to track hurricanes and predict their path, intensity, and potential impact with a reasonable degree of accuracy. However, even with all of these tools and methods, there can still be some uncertainties or surprises, such as sudden changes in direction or intensity.
Student 1: What about earthquakes? Can scientists predict them?
Student 2: Yes, scientists can predict the likelihood of earthquakes, but not with complete accuracy. They use seismic monitoring, geological data, and other tools to identify areas that are more prone to earthquakes and estimate the likelihood of a seismic event. However, earthquakes can also be caused by unexpected factors, such as human activities like fracking or underground mining, making it hard to predict them with complete accuracy.
Student 1: What about volcanic eruptions? Can they be predicted?
Student 2: Yes, scientists can predict volcanic eruptions to some extent using methods like satellite imaging, gas measurements, and ground deformation monitoring. However, volcanic eruptions are also influenced by factors such as magma pressure, magma composition, and the structure of the volcano, making them hard to predict with 100% accuracy.
Student 1: Why was the earthquake in Turkey so strong, and what is the likelihood of another earthquake happening in the same region?
Student 2: The earthquake in Turkey was so strong because it occurred on a fault line where the Eurasian and African tectonic plates meet. The movement of these plates causes stress to build up over time, and when it's released suddenly, it creates an earthquake. As for the likelihood of another earthquake happening in the same region, it's difficult to predict with complete accuracy, but scientists can estimate the probability based on factors like past seismic activity, fault lines, and the movement of tectonic plates. However, earthquakes are unpredictable by nature, and there's always some degree of uncertainty involved.
Student 1: What measures do scientists take to mitigate the risks of environmental hazards?
Student 2: Scientists take various measures to mitigate the risks of environmental hazards, such as developing early warning systems, creating evacuation plans, and implementing building codes that can withstand natural disasters. They also conduct research to understand the causes and effects of hazards, which can inform policy and decision-making to reduce risks.
Student 1: Can human activities contribute to environmental hazards, and how can they be prevented?
Student 2: Yes, human activities such as deforestation, pollution, and climate change can exacerbate environmental hazards like floods, wildfires, and storms. To prevent them, individuals, governments, and industries can take actions such as reducing greenhouse gas emissions, using sustainable practices, and creating protected areas for wildlife and ecosystems. By working together, we can help reduce the likelihood and impact of environmental hazards.
through which cities would you have to travel to get through to get from marakanda to antioch
Answer:
Chang'an to Duhuang
Explanation:
The city of Marakanda to Antioch are linked through the Silk Road which is known for its prevalent silk trade. The Silk Road is a trade route in the Asian-Pacific region which connects the East to the West.
The cities through which an individual can travel to get to Marakanda and Antioch are Chang'an to Duhuang
The cities that need to be commuted to travel for getting through from Marakanda to Antioch are Chang'an to Dunhuang. These two cities are a major part of the silk route.
The silk route was created between the Pacific region of Asia from the western world. The route was created with an intention to increase the trade between the world.
Silk route was created with a view to start the trade between the East Asia to the Western world round the globe and was mostly used to export superior quality silk from China to European and American nations.The distance between the two cities from Chang'an to Marakanda is approximately 3000 miles and it falls in the route to reach Antioch. The total route ranges to about 4000 miles.The silk route stretches between the two countries and ranging about more than 6000+ kilometers in total and was used to increase the trade and commute between the pacific Asian region to the Western and European nations.Hence, one has to pass through the cities like Marakanda to Antioch are the cities of Chang'an and Dunhuang.
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