The answer is A.) lithosphere
Answer:
The correct answer is option A - Lithosphere
Explanation:John Tuzo Wilson was a Canadian geophysicist who is known for his contributions to the theory of plate tectonics.
Plate tectonics supports the idea that the rigid outer layer of the Earth or the lithosphere is broken into numerous plates. These plates move independently over the asthenosphere.
The basic building block of a silicate is composed of ________.
Answer: the silicon tetrahedron
Explanation:
1. Which wind blows cool air inland during the day? 2. Which wind blows cool air toward the sea at night?
3. Which winds blow steadily from specific directions and over long distances?
The wind that blows cool air inland during the day is known as a sea breeze.
Sea breezes occur when the land heats up faster than the adjacent body of water (such as an ocean or lake). As the air above the land heats up, it rises and creates a low-pressure area. This draws in cooler air from the sea, resulting in a refreshing breeze that brings cooler air inland during the day.
The wind that blows cool air toward the sea at night is known as a land breeze. Land breezes occur during the night when the land cools down faster than the adjacent body of water. As the air above the land cools, it becomes denser and creates a high-pressure area. This causes the cooler air from the land to flow towards the sea, creating a breeze that carries cooler air from the land to the sea at night.
The winds that blow steadily from specific directions and over long distances are known as prevailing winds. Prevailing winds are influenced by global atmospheric circulation patterns, such as the Hadley cells, Ferrel cells, and polar cells. These winds blow consistently in certain directions due to the combined effects of the Earth's rotation, temperature gradients, and pressure systems. Examples of prevailing winds include the trade winds, which blow from east to west in the tropics, and the westerlies, which blow from west to east in the middle latitudes. Prevailing winds play a significant role in shaping global weather patterns and influencing the distribution of moisture and heat around the planet.
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Five physical and social cultural features that can be studied in geography
Answer:
Physical features: mountains, lakes, rivers, caves, and valleys.
Socio-cultural features: languages spoken in an area, the ethnic composition of a population, education levels of the population, percentage of male and female population, and migration patterns.
Explanation:
Geography is a science that has numerous fields of study, and they involve studying the physical and socio-economic features of the world. Some of the geographic sciences that study the physical features are geomorphology, geology, potamology, limnology, hydrology, etc. Some of the geographic sciences that study the socio-economic features are demography, economic geography, geopolitics, population distribution, settlements distribution, etc.
In the sphere of physical geography, the features that can be studied are in a very high number. Some of them are mountains, valleys, plateaus, fjords, gorges, canyons, rivers, lakes, ponds, marshes, caves, etc.
In the sphere of socio-economic geography, the features that can be studied are too high in number. Some of them are languages spoken in an area, ethnic composition, racial composition, religious composition, migration patterns, education levels, infrastructure, financial situation, etc.
which answer best details the benefits of the Erie Canal?
A. Boats could move more quickly from new york city to Boston
B. Boats could move more quickly from the Atlantic Ocean to the Mississippi River
C. Boats could move more quickly from the Atlantic Ocean to the Great Lakes
D. Boats could move more quickly from new york city to Washington
Answer:
Erie Canal Connects The Atlantic To Great Lakes, So It's C) Boats could move more quickly from the Atlantic Ocean to the Great Lakes
Answer:
Boats could move more quickly from the Atlantic Ocean to the Great Lakes
Explanation:
cause i took the test and i pass with this one
Which type of sediment sample normally has the greatest permeability rate?.
The Sites pebbles is the type of sediment sample that normally has the greatest permeability rate.
What is a permeability rate?This refers to the rate at which an applied irrigation water moves through the soil.
Hence, the sites pebbles has the greatest permeability rate because it has allows a large space which helps moves unto the beneath easily.
Therefore, the sites pebbles is the type of sediment sample that normally has the greatest permeability rate.
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what causes japanese population distribution?
Answer:
they reproduce too much
Explanation: photosynthesis
The north celestial pole is 35∘35∘ above your northern horizon. This tells you that
(a) you are at latitude 35∘N35∘N.
(b) you are at longitude 35∘E35∘E.
(c) you are at latitude 35∘S35∘S
The North Celestial pole is 35o 35o above your Northen horizon which tells you that you are at a latitude of 35oN35oN.
What does North Celestial mean?
The North Celestial Pole is the point in the sky around which all stars visible from the Northern Hemisphere revolve. The North Star, also known as Polaris, is almost exactly at this location in the sky. The point at which the earth's extended axis intersects the northern half of the celestial sphere, about 1° from Polaris.
What is a North Star?
A north star is a bright star, usually the brightest star in the constellation Ursa Minor, that is used as a navigational aid. It is also known as Polaris. It appears almost stationary in the night sky and is used by navigators to determine their direction.
Therefore the option A. 35∘N35∘N is the correct answer.
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For this assignment, you are to write a letter (at least one paragraph, 5-6 sentences) to your Senator proposing ideas on how to resolve an environmental issue in your region. In your letter, describe the environmental issue in your region and your solution to the problem and what funding would go towards in order to provide a solution to the problem.
Concerns about the environment can be categorized as any detrimental effects of human activity on the environment. However, there are other environmental solutions available, including reducing paper use, going green, and offering affordable and clean energy.
Even in times of economic crisis, conflict, and enduring social issues, the environment is a crucial subject. It matters because Earth serves as both the only home humans have and their primary source of food and oxygen. Utilizing the 3Rs principle, which stands for reduce, reuse, clean energy, and recycle, is the first step in reducing pollution. Citizens should use air conditioners less since they release dangerous gases, such as ozone-depleting chlorofluorocarbons, which will minimize air pollution.
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Which line represents 0° latitude?
the prime meridian
the equator
the international date line
the Tropic of Capricorn
Answer:
the equator.
Explanation:
I am like 99 percent sure this is right
Answer:
the answer is the second option
Explanation:
hope this helps
did this on edge
In a parliamentary republic, a __________ often serves as both head of state and head of government. A. prime minister B. king C. dictator D. monarch
Answer: (A) Prime Minister
Explanation: I got it right on EDG2021
In a parliamentary republic, the prime minister often serves as both head of state and head of government.
What is government?An organized community is governed by a system or group of individuals, typically a state.
Government often consists of the legislative, executive, and judicial branches in the case of its broad associative definition. Government is a tool for making policy decisions as well as a way to enforce organizational policies. A declaration of the government's guiding principles and philosophy is the equivalent of a form of constitution in many nations.
The term "government" is frequently used more explicitly to refer to the roughly 200 independent national governments and subsidiary organizations, even though all organizations have governance.
Modern democracies, monarchies, and authoritarian and totalitarian regimes are the main varieties of political systems.
Thus, option A is correct
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1. What is the scale of the map?
(a) 1:10000
(b) 2: 2000
(c) 1: 24000
(d) 20
The scale of the map is (c) 1:24000.
The scale of a map refers to the ratio of distance on the map to the actual distance on the ground. In this case, for every unit of measurement on the map, it represents 24000 units of the same measurement in the actual world.
In this case, the correct scale of the map is (c) 1:24000. This means that one unit of measurement on the map represents 24000 units of the same measurement in the real world. For example, if the distance between two points on the map is 1 inch, the actual distance between those points on the ground would be 24000 inches.
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compared with the continental crust, the oceanic crust is ________. group of answer choices denser about half as dense about the same density less dense
Compared with the continental crust, the oceanic crust is denser. The continental crust is primarily made up of granite and has a thickness of between 25 and 70 kilometers. The answer is A.
The oceanic crust, on the other hand, is made up of a volcanic rock known as basalt, which is significantly denser than granite.The oceanic crust is thinner than the continental crust and has an average thickness of around 7 kilometers. This dense rock makes the oceanic crust denser than the continental crust.
The oceanic crust is constantly being created at mid-ocean ridges, where magma erupts and cools, forming new crust. This process is known as seafloor spreading. Over time, the oceanic crust moves away from the mid-ocean ridge, cools, and becomes denser. As a result, the older oceanic crust is denser than the younger crust.The answer is a.
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Were the Sephardi Jews a homogenous group or a heterogeneous group?
True or false?
a. More sunspots mean more energy comes from the sun.
b. Less sunspots means the Earth has a warmer climate.
c. Less sunspots means that Earth gets less energy from the sun.
d. More sunspots means that Earth has a warmer climate.
The given statements which are true is statement 'A' and 'D'. On the other hand, statements 'B' and 'C' are false.
Why do sunspots make the Sun hotter?Because they are colder than the surrounding regions of the photosphere, the visible surface of the sun, which has a temperature of roughly 10,000 degrees Fahrenheit, sunspots look darker to us (5,537.8 degrees Celsius). Sunspots appear to move to observers on Earth because the sun's surface is shifting.
The sun rotates considerably more slowly than the Earth, yet a sunspot seems to be moving four times as quickly as a point on Earth because the sun is 100 times bigger than our globe. Sunspots seem darker because they are colder than the rest of the sun's surface. The heated gases that these sunspots block also pours into the vicinity, making that region much hotter and brighter than usual.
The average sunspot is the size of the Earth, but some of them are enormous. They are measured by comparison to the visible region of the sun, or the half of the sun that can be seen from Earth.
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Climate change could make it too hot to grow certain crops, and droughts caused by climate change could reduce the amount of water available for irrigation. Climate change is also likely to cause stronger storms and more floods, which can damage crops. Higher temperatures and changing rainfall patterns could help some kinds of weeds and pests to spread to new areas. —"A Student’s Guide to Global Climate Change," US Environmental Protection Agency What problem is the author discussing in this section of the text? the negative effect climate change has on crops the decrease in rainfall over the past several years the problem some areas have with weeds and pests the longer heat waves caused by climate change.
Answer:
a in edge 2022
Explanation:
Compare and contrast absolute age dating and relative age dating
Relative age is the age of a rock layer (or the fossils it contains) compared to other layers. ... Absolute age is the numeric age of a layer of rocks or fossils. Absolute age can be determined by using radiometric dating.
Give her above me brainlist:)Answer:
Absolute dating and relative dating are both methods used to determine the age of a fossil. Absolute dating gives the actual age of a fossil in years based on the amount of radioactive and stable elements in the fossil. Relative dating gives an estimate of the age of a fossil based on the location of the fossil in relation to other fossils.
Explanation:
It is the sample response on edge
the photo above shows a series of groins built on newport beach, ca. based on the pattern of beach erosion and sediment deposition around the groins, which direction is the dominant longshore drift?
Based on the pattern of beach erosion and sediment deposition around the groins on Newport Beach, CA, the dominant longshore drift appears to be from south to north.
This can be determined by observing that the beach is eroded more heavily on the southern side of the groins and sediment is deposited more heavily on the northern side. Based on the pattern of beach erosion and sediment deposition around the groins at Newport Beach, CA, the dominant longshore drift direction can be determined by observing the accumulation of sand on one side of the groins and erosion on the other side. If sand is accumulating on the updrift side (the side with more sand) and eroding on the downdrift side (the side with less sand), the dominant longshore drift direction is towards the downdrift side. Based on the pattern of beach erosion and sediment deposition around the groins on Newport Beach, CA, the dominant longshore drift appears to be from south to north.
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Did the lemming population began to increase,decease or stay the same?
The lemming population began to increase, decease or stay the same depends on various ecological factors such as climate change, weather, temperature and other ecological activities.
Ecology debates the reasons behind cyclical fluctuations in animal populations. Small rodents called lemmings are well known for having instincts that drive them to occasionally charge mass off cliffs, where they perish.
Lemmings go through three to four-year-long population cycles during which their numbers can change hundreds of times. Lemmings are capable of reproducing in the winter because they are small rodents tailored for life beneath the snow. The main period of population growth in high arctic regions, where summer predation is severe, is the winter, while summer densities decline. Invasive species, climate change, and extractive activities can all pose a threat to northern bog lemmings.
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This type of region has a main hub where activity begins
The functional region is a type of region has a main hub where activity begins.
In geography, a functional region is a space dominated by a node, central focus, or central hub and enclosed by interconnected links. A functional region's main node is surrounded by areas with related trade, communications, or transportation-related common social, political, or economic goals. To put it another way, a functional zone is made up of a certain collection of internal interactions or activities that take place around a central node or focal point. Additionally, the principal node has a social and economic influence sphere that is less pronounced in regions farther away from it.
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Orogeny is described as a major mountain-building event in which ancient rocks that formed deep in the crust fold and form mountain ranges. Several orogenic processes acted upon the North-American plate over the past 200 million years e.g. Cordilleran, Laramide, Sevier, etc. Laramide Orogeny particularly has contributed to the formation of several landforms and high ranges of the North American plate.
1. How long the Laramide orogeny was active and what parts of the North American continent were impacted by this orogeny?
2. What are some of the landforms created by the Laramide orogeny? (5 examples)
3. After watching this week's video on the formation of the Grand Canyon, Is it correct to assume that Laramide orogeny has contributed to the formation of the Grand Canyon? If yes, in what ways? Please explain?
1. The Laramide orogeny was active from approximately 70 to 40 million years ago during the Late Cretaceous and Early Paleogene periods. This major mountain-building event impacted various regions of the North American continent, including the western part of the United States, such as present-day Colorado, Wyoming, Utah, Montana, and New Mexico.
2. The Laramide orogeny resulted in the formation of several landforms, including:
- The Rocky Mountains: This mountain range was uplifted and folded during the orogeny, creating a rugged and high landscape.
- The Colorado Plateau: This elevated region was uplifted and tilted, resulting in the formation of steep cliffs and canyons.
- The Black Hills: This area in South Dakota experienced uplift and erosion, forming dome-like structures and deep valleys.
- The Bighorn Mountains: Located in Wyoming, these mountains were uplifted and carved by glaciers, resulting in deep valleys and sharp peaks.
- The Sierra Madre Range: This range, located in Wyoming and Colorado, was uplifted and formed by faulting during the orogeny.
3. Yes, it is correct to assume that the Laramide orogeny has contributed to the formation of the Grand Canyon. The uplift and erosion associated with the orogeny played a significant role in shaping the Colorado Plateau, which includes the Grand Canyon. The uplift of the plateau caused the Colorado River to carve deeply into the rock layers, creating the magnificent canyon we see today. The Laramide orogeny uplifted the area, providing the initial elevation necessary for the erosion process to shape the Grand Canyon over millions of years.
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pls hekp unexpected questions just came at me
Answer:
Give the other person brainliest....
<3
Explanation:
How did free elections and democratic government benefit Mexico and Central America countries ?
Answer:
DONT U HAVE WIKIPEDIA?? IT WORKS
the coarsest portion of a river’s load is associated with _____________.
The coarsest portion of a river's load consists of large rocks and boulders.
What is the coarsest portion of a river's load?The coarsest portion of a river's load is associated with the sediment or particles that are the largest in size and have the highest weight. When a river flows, it carries along various materials such as rocks, sand, silt, and clay, collectively known as its sediment load.
The river's load can be classified into different categories based on the size of the particles. This classification is known as sediment sorting or sediment grading. Sediment grading is determined by the river's energy or velocity, which affects its ability to transport particles of different sizes.
The coarsest portion of the river's load is associated with the larger particles that require higher energy to be transported. These particles are typically composed of rocks and boulders. They are too heavy to be lifted and carried by the river's flow for long distances and tend to settle closer to the source of the river or in areas where the flow velocity decreases significantly, such as at the riverbed or along the banks.
The coarser sediment is usually found in the upper reaches of a river, where the flow velocity is higher, and the energy is sufficient to transport larger particles.
As the river flows downstream and the velocity decreases, it can no longer transport the larger particles, resulting in their deposition.
It's important to note that the size and composition of a river's load can vary depending on factors such as the geology of the river basin, the slope of the river, and the amount of water flowing in the river.
Additionally, human activities such as dam construction or sand mining can also impact the sediment load and its characteristics in a river.
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Of the three primary forms of subaerial volcanoes, ________ consist of a cone-shaped pile of tephra often formed in a single eruption.
Of the three primary forms of subaerial volcanoes, cinder cones consist of a cone-shaped pile of tephra often formed in a single eruption.
Cinder cones, one of the three primary forms of subaerial volcanoes, are characterized by a cone-shaped accumulation of tephra that is typically formed in a single volcanic eruption. Tephra, consisting of fragmented volcanic material such as ash, cinders, and small rocks, builds up to create the distinct cone shape of these volcanoes. Unlike other types of volcanoes, cinder cones are often smaller in size and have a simpler structure. They are commonly found in volcanic regions and can provide valuable insights into past volcanic activity.
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In the diagram GHJK~LMNP. Find the area of LMNP .
Answer:
756m^2
Explanation:
84/7=12
length of GHJK is 12m
rectangle LMNP sides are 3x bigger
12x3=36
length of LMNP is 36m
36*21=756m^2
The area of the similar rectangle LMNP is 756 m².
What is meant by similar polygons ?Similar polygons are defined as the type of polygons, whose measures of the corresponding sides are proportional and their corresponding angles are congruent.
Here,
Given that, the rectangles GHJK and LMNP are similar.
The area of GHJK, A₁ = 84 m²
Let the area of LMNP be A₂
So, we can say that, if GHJK ~ LMNP,
(The area of LMNP)/(The area of GHJK) = NP²/JK²
A₂/A₁ = (21/7)²
A₂/A₁ = 9
Therefore area of LMNP, A₂ = A₁ x 9 = 84 x 9
A₂ = 756 m²
Hence,
The area of the similar rectangle LMNP is 756 m².
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why are there few or no deserts within 5 degrees latitude of the equator, even though this latitude averages the highest amount of sunlight of any latitiude on earth?
The absence or scarcity of deserts within 5 degrees latitude of the equator can be attributed to abundant rainfall and high levels of atmospheric convection in those regions.
Abundant rainfall: The equatorial regions experience a unique weather phenomenon called the Intertropical Convergence Zone (ITCZ), called the low trough. This zone is characterized by the convergence of trade winds from both hemispheres, significantly uplifting warm, moist air. As the air rises, it cools, leading to condensation and the formation of clouds and precipitation. The abundant rainfall in these areas prevents the development of deserts, which require arid conditions with limited moisture. High levels of atmospheric convection: The increased amount of sunlight received at the equator leads to intense heating of the Earth's surface. This heating causes the air near the equator to warm and rise rapidly, creating solid updrafts and convection currents. The ascending air leads to increased cloud formation and rainfall, further preventing the formation of desert conditions. The combination of abundant rainfall and high levels of atmospheric convection near the equator ensures that moisture is consistently available, making the region unsuitable for desert formation. The constant influx of humidity and continuous water recycling through the hydrological cycle maintain a lush, tropical climate instead.
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Which of these conditions make fossilization more likely? (mark all that apply)
Relative abundance of a species
Rapid burial
Durable parts (bones, exoskeleton, etc.)
Exposure to scavengers
Hypoxic (low-oxygen) environment
Fossilization is more likely to occur under the following conditions:
- Rapid burial
- Durable parts (bones, exoskeleton, etc.)
- Hypoxic (low-oxygen) environment
Fossilization is a process by which the remains or traces of ancient living organisms are preserved in rocks or sediments over long periods of time. While many organisms decompose after they die, under certain conditions, their remains can be preserved and eventually become fossils.
Rapid burial is one of the most important conditions for fossilization to occur. If an organism is buried quickly after death, it is less likely to be scavenged or decomposed by other organisms, and the hard parts of the organism may be protected from erosion and other destructive processes.
For example, a sudden landslide or volcanic eruption could quickly bury organisms in sediment and provide an ideal environment for fossilization.
Durable parts, such as bones, shells, and exoskeletons, are more likely to become fossils because they are more resistant to decay and destruction than soft tissues.
These hard parts can become buried and preserved in sediment or rock, eventually becoming fossilized. However, even soft tissues such as feathers, fur, and skin can become preserved under certain exceptional circumstances, such as in the case of mummification.
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Which route best connects iron ore to the large bituminous and anthracite coal mines located west of pittsburgh?.
The route that best connects iron ore to the large bituminous and anthracite coal mines is the Great lakes to Cleveland .
What is iron ore?Iron ore ssrves as one of the mineral resources which can be heated in the presence of a reductant to produce a metallic iron.
It is usually inform of iron oxides and primary forms of which are magnetite , which can be found at Great lakes of Cleveland .
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an astronomer has a telescope with a diameter of 27 cm and a focal length of 250 cm. which eyepiece should he use to achieve a result closest to 140× magnification?
The astronomer should use an eyepiece with a focal length of 1.79 cm to achieve a result closest to 140x magnification.
To calculate the magnification of a telescope, we need to divide the focal length of the telescope by the focal length of the eyepiece. Therefore, the astronomer needs to find the eyepiece that will result in a magnification of 140x.
To do this, we can use the following formula:
Magnification = Telescope Focal Length / Eyepiece Focal Length
Given that the telescope has a focal length of 250 cm, we can rearrange the formula to find the eyepiece focal length needed for a magnification of 140x:
Eyepiece Focal Length = Telescope Focal Length / Magnification
Eyepiece Focal Length = 250 cm / 140
Eyepiece Focal Length = 1.79 cm
Therefore, the astronomer should use an eyepiece with a focal length of 1.79 cm to achieve a result closest to 140x magnification. It's important to note that magnification alone doesn't determine the quality of the image produced by a telescope. Other factors such as the aperture and quality of the optics also play a significant role. Nonetheless, using the correct eyepiece to achieve the desired magnification is a crucial step in astronomical observation.
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the astronomer the astronomer should use an eyepiece with a focal length closest to 1.79 cm to achieve approximately 140x magnification.
use an eyepiece with a focal length closest to 1.79 cm to achieve approximately 140x magnification. calculate the magnification of a telescope, you need to divide the focal length of the telescope by the focal length of the eyepiece. So, to achieve a magnification of 140x, the astronomer would need to use an eyepiece with a focal length of:Eyepiece focal length = Telescope focal length / Desired magnification
Eyepiece focal length = 250 cm / 140x
Eyepiece focal length = 1.79 cmTherefore, the astronomer would need to use an eyepiece with a focal length of approximately 1.79 cm to achieve a magnification closest to 140x. However, it is important to note that the actual magnification achieved will depend on various factors, such as atmospheric conditions and the observer's eyesight.
Hi! To achieve a magnification of approximately 140x with a telescope that has a focal length of 250 cm, you need to determine the appropriate eyepieceeyepiece.
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What Natural disasters ocurr in the texas ecoregions?
Piney woods
Post oak savannah
Blackland prairie
Gulf coast
South Texas brush
Edwards plateau
Llano uplift
Rolling plains
High plains
Trans pecos
Answer:
i no 4 does
Explanation: