Dam construction locations can be found in gaps or poorts between homoclinal ridges. Artesian water comes from Cuesta basins. Oil and natural gas (from fracking) may be present in cuesta domes. Plains and fertile valleys between cuestas are appropriate for habitation.
Cuestas are gently sloping plains with an escarpment enclosing one edge. They appear when softer strata beneath a gently dipping layer of relatively hard sedimentary rock are exposed by erosion, creating a structure that resembles a plateau or mesa along the scarp edge and a gentle plain on the dip slope.
A cuesta is a hill or ridge that has a gradual slope on one side and a steep slope on the other (the word "cuesta" is Spanish for "slope"). The phrase is more particularly used in geology.
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where is the majority (~80%) of the carbon dioxide that was abundant in earth’s early atmosphere?
The majority of the carbon dioxide that was abundant in the Earth's early atmosphere is believed to have been absorbed into the oceans and the Earth's crust. Scientists estimate that approximately 80% of the carbon dioxide that was present in the atmosphere during the early days of the planet's history is now stored in these two locations.
The oceans are the largest reservoir of carbon dioxide on Earth, absorbing around 25% of the carbon dioxide emissions from human activities each year. When carbon dioxide dissolves in seawater, it forms carbonic acid, which can then react with other minerals in the water to form bicarbonate and carbonate ions. These reactions help to remove carbon dioxide from the atmosphere and store it in the ocean.The rest of the carbon dioxide is believed to have been absorbed into the Earth's crust through processes such as weathering and erosion. Carbon dioxide can react with minerals in rocks, forming carbonates that are then stored in the Earth's crust. This process takes millions of years, but it is a crucial way in which carbon dioxide is removed from the atmosphere and stored for long periods of time.In summary, the majority of the carbon dioxide that was abundant in the Earth's early atmosphere is now stored in the oceans and the Earth's crust, which helps to maintain a stable atmosphere and climate on our planet.
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annually, a large " hole" in the stratospheric ozone layer forms over __________.
Annually, a large "hole" in the stratospheric ozone layer forms over Antarctica.
This phenomenon is known as the Antarctic ozone hole, and it is caused by a combination of extremely cold temperatures and the presence of certain man-made chemicals, such as chlorofluorocarbons (CFCs). These chemicals break down in the atmosphere and release chlorine atoms, which react with ozone molecules and destroy them. The depletion of ozone in the stratosphere is a major environmental concern because it allows more harmful ultraviolet radiation to reach the Earth's surface, increasing the risk of skin cancer and other health problems in humans, as well as causing damage to plants and animals.
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a zone of high atmospheric pressure results when there is relatively __________ air aloft.
A zone of high atmospheric pressure results when there is relatively sinking air aloft.
As air cools, it becomes denser and heavier, causing it to sink towards the surface. This sinking air displaces air at the surface, which creates an area of high pressure. In addition to sinking air, high pressure zones are also characterized by dry weather and clear skies.
High pressure systems are often associated with fair weather conditions as the sinking air inhibits the formation of clouds and precipitation. Conversely, low pressure systems result in rising air and the potential for stormy weather.
The movement and interaction of high and low pressure systems are responsible for weather patterns across the globe. Understanding the behavior of these systems is crucial in predicting weather conditions and preparing for potential hazards such as hurricanes and tornadoes.
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two major types of basaltic lava commonly found on a shield volcano, such as hawaii are aa and bb. (True or False)
The given statement "Two major types of basaltic lava commonly found on a shield volcano, such as Hawaii are aa and bb." is False because While shield volcanoes, such as those found in Hawaii, are primarily composed of basaltic lava, the two major types of basaltic lava commonly found on them are actually pahoehoe and aa, not aa and bb as stated in the question.
Pahoehoe lava is smooth, ropy lava that forms from fluid basaltic magma. It typically has a low viscosity, which allows it to flow easily and smoothly across the ground. Pahoehoe lava often creates beautiful patterns as it cools and solidifies, and it can form a hard, solid crust that insulates the molten lava beneath it.
Aa lava, on the other hand, is rough, jagged lava that forms from more viscous basaltic magma. It typically has a higher gas content than pahoehoe lava, which causes it to be more explosive and chaotic. Aa lava can form sharp, spiky surfaces as it cools and solidifies, and it is generally much more difficult to walk on than pahoehoe lava.
Both types of lava are commonly found on shield volcanoes, and their unique characteristics can help volcanologists understand the behavior of the volcano and predict potential hazards.
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the _____ refers to the portions of earth’s surface where water exists in solid form.
Answer:
ice/arctic
Explanation:
The term that refers to the portions of earth's surface where water exists in solid form is artic. Also known as solid ice for reference.
Ice is the solid formation of water which can be found at the poles of the earth, snow-covered mountains and glaciers.
The formation of ice takes place when seawater freezes at minus 1.8 degrees Celsius. In comparison fresh water freezes at zero degrees Celsius. Due to this Ice reflects only 90 percent of the sunlight and the rest 10 % gets absorbed.
The world’s oldest ice is at the bottom of the ice sheet on Antarctica.
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The complete question is
The _____ refers to the portions of earth's surface where water exists in solid form.
when a product or an idea disperses outward from a center of origin, the process is known as
Answer: Contagious diffusion
Explanation:
When a product or an idea disperses outward from a center of origin, the process is known as diffusion.
The spread of concepts, things, innovations, and other behaviors from one location to another is known as diffusion. Relocation diffusion is the process by which ideas, things, and the like are transported by people when they migrate or relocate to a new site.
Expansion diffusion, relocation diffusion, direct diffusion, and indirect diffusion are the four types of cultural dissemination. The dispersion is slowed or blocked by physical obstacles. They are spatial physical characteristics like topography or land cover. Cultural barriers can affect how quickly an idea spreads after receiving individual approval.
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most of the recharge of the floridan occurs near the coast were the upper confining unit is thin.
The statement "most of the recharge of the floridan occurs near the coast were the upper confining unit is thin" is not entirely accurate.
The Floridan aquifer is a major source of groundwater in the southeastern United States, underlying most of Florida and parts of Georgia, Alabama, and South Carolina.
The Floridan aquifer system consists of several layers of permeable rock, separated by layers of relatively impermeable rock or clay. The uppermost layer is called the Upper Floridan aquifer, which is bounded above by a relatively impermeable layer of rock called the Upper Floridan confining unit.
Recharge to the Floridan aquifer occurs in areas where the overlying confining unit is thin or absent, allowing water to infiltrate the ground and percolate down into the aquifer. While some recharge does occur near the coast, it is not limited to those areas. Recharge can occur throughout the region, depending on factors such as the permeability of the surface materials and the amount of rainfall.
However, it is true that in some areas near the coast, the Upper Floridan confining unit is thin or absent, which can allow for increased recharge to the aquifer. This can make those areas particularly important for groundwater recharge and management.
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________ is the detailed knowledge of characteristics of different kinds of rock.
Geology is the detailed knowledge of the characteristics of different kinds of rock.
Geology is the study of the Earth's history, structure, and processes. It involves the examination of rocks, minerals, and fossils to understand the planet's evolution and how it continues to change. Geologists use a range of tools and techniques to study the Earth, including fieldwork, laboratory analysis, and remote sensing.
The knowledge gained from geology is critical to understanding and managing natural resources, predicting natural disasters, and mitigating their impacts. It also informs our understanding of climate change and the impacts of human activity on the environment.
Overall, geology plays an essential role in our understanding of the planet we live on and the challenges we face in managing it sustainably.
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In a mid-latitude cyclone, an upper-level pool of cold air that has broken away from the main flow is called:a. wave cyclone.b. jet streak.c. lee-side low.d. cut-off low.e. shortwave.
The correct answer is (d) cut-off low.
In a mid-latitude cyclone, an upper-level pool of cold air that has broken away from the main flow is called a cut-off low.
A cut-off low is an upper-level low-pressure system that has become separated from the main flow of the jet stream, often resulting in slow-moving and persistent weather patterns.
These systems can be difficult to predict and can result in prolonged periods of precipitation, thunderstorms, and even severe weather. Cut-off lows are important to monitor for meteorologists and can have significant impacts on local weather patterns and regional climate. By understanding the behavior and characteristics of cut-off lows, scientists can better predict and prepare for their potential impacts on society and the environment.
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what is the technical term for the archaeological remains of a single occupation or use of a site?
The technical term for the archaeological remains of a single occupation or use of a site is "stratum" or "layer".
A stratum is a layer of soil or sediment that represents a specific period of time when human activity occurred. When excavating a site, archaeologists carefully remove each stratum in order to document and analyze the artifacts and features found within it. By studying the stratigraphy of a site, archaeologists can reconstruct the sequence of human activity and understand how the site was used over time.
The identification of distinct strata can also help archaeologists to distinguish between different cultural periods or phases at a site. It is important to carefully record the position and relationship between different strata as they are excavated, as this information is crucial for interpreting the archaeological record and reconstructing the history of the site.
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The American Fisheries Society is interested in the effect of mercury contamination on largemouth bass in Florida lakes. A sample of 53 fish were captured and the mercury concentration in the muscle tissue was measured (in ppm). The average mercury concentration of the sample is 0.525 ppm with a standard deviation of 0.348 ppm.
a. Find a 95% confidence interval for the mercury concentration in all largemouth bass in Florida lakes.
b. Find a 99% confidence interval for the mercury concentration in all largemouth bass in Florida lakes.
c. An AFS scientist claims that the mercury concentration is between 0.45 and 0.60 ppm. With what level of confidence can this statement be made?
a. The 95% confidence interval is (0.431, 0.619) ppm
b. The 99% confidence interval is (0.402, 0.648) ppm
c. The statement is consistent with the data at a 95% confidence level.
a. A 95% confidence interval for the true mean mercury concentration in all largemouth bass in Florida lakes is calculated as follows:
Margin of error = z (standard error of the mean)
where z is the critical value for a 95% confidence level, which can be obtained from a standard normal distribution table or calculator. For a two-tailed test, z is 1.96.
The standard error of the mean (SEM) can be calculated as SEM = (standard deviation / √(sample size)).
SEM = (0.348 / √(53)) = 0.048
Margin of error = 1.96 × 0.048 = 0.094
The 95% confidence interval = (0.525 - 0.094, 0.525 + 0.094)
= (0.431, 0.619) ppm
b. A 99% confidence interval for the true mean mercury concentration can be calculated using the same formula, but with a different z* value. For a two-tailed test, z* is 2.576 for a 99% confidence level.
SEM = (0.348 / √(53)) = 0.048
Margin of error = 2.576 × 0.048 = 0.123
The 99% confidence interval =(0.525 - 0.123, 0.525 + 0.123)
= (0.402, 0.648) ppm.
c. To determine the level of confidence with which the statement can be made, we can check if the 95% confidence interval obtained in part (a) includes the claimed range of 0.45 to 0.60 ppm. If it does, then we can say that the statement is consistent with the data at a 95% confidence level.
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Which of the following is a good explanation for why dew tends to form in the grass at night?
A. More water vapor is present at night.
B Pressure is greatest then.
C. Temperatures of the objects near the ground often cool below the dew point at night.
D. The atmosphere cannot form clouds at night.
A good explanation for why dew tends to form in the grass at night is temperatures of the objects near the ground often cool below the dew point at night. The correct option is C. temperatures of the objects near the ground often cool below the dew point at night.
During the day, the sun heats the Earth's surface, which in turn heats the air above it. As the night approaches, the ground and the air near it start to cool down due to the absence of sunlight. This cooling causes the air temperature to drop near the ground, and if it drops below the dew point, the water vapor in the air will start to condense.
The dew point is the temperature at which the air becomes saturated, and it can no longer hold all the water vapor present. When the air temperature goes below the dew point, the excess water vapor condenses on surfaces, such as grass, forming dew. This process is more likely to occur at night because the ground and the air close to it cool down, allowing the temperature to fall below the dew point.
In summary, dew forms in the grass at night because the cooling of the ground and the air near it can cause the air temperature to fall below the dew point, leading to the condensation of water vapor and the formation of dew on surfaces. This explanation involves the concepts of dew point, air temperature, and condensation. The correct option is C. temperatures of the objects near the ground often cool below the dew point at night.
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between 0.7 micrometers and 1.0 micrometers are some of the ________ wavelengths.
Between 0.7 micrometers and 1.0 micrometers are some of the infrared wavelengths.
1. The electromagnetic spectrum is a range of all types of electromagnetic radiation, including radio waves, microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays.
2. Each type of radiation within the electromagnetic spectrum is categorized based on its wavelength, which is the distance between two successive crests or troughs of a wave.
3. Infrared radiation is the type of electromagnetic radiation with wavelengths longer than visible light but shorter than microwaves.
4. The infrared region is divided into three sub-regions: near-infrared (NIR), mid-infrared (MIR), and far-infrared (FIR).
5. The near-infrared sub-region has wavelengths ranging from 0.7 micrometers to 1.4 micrometers, which includes the range mentioned in your question (0.7 micrometers to 1.0 micrometers).
In summary, the content loaded between 0.7 micrometers and 1.0 micrometers are some of the infrared wavelengths, specifically within the near-infrared sub-region of the electromagnetic spectrum.
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Both land erosion and sea-level changes can shape a coastline. (True or False)
True. Both land erosion and sea-level changes can shape a coastline. Land erosion occurs when the land is worn away by wind, water, or other natural processes, which can result in the formation of cliffs, beaches, and other coastal features.
Sea-level changes, on the other hand, occur when the level of the sea rises or falls, which can lead to the creation of new coastal features or the submergence of existing ones. Over long periods of time, the combined effects of land erosion and sea-level changes can significantly alter the shape and character of a coastline.
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Why is the north-south extend of India larger than the east-west extend of India?
Due to the following factors, the North-South of India extent is greater than the East-West extent: While the distance between the two longitudes decreases as one gets closer to the poles, the distance between the latitudes remains constant throughout.
Latitudes are equally spaced apart, but as one proceeds from the equator to the poles, the distance between longitudes gets smaller, giving the appearance that the east-west extent is smaller than the north-south extent.
The length of India from Ladakh to Cape Comorin, which is close to Kanyakumari, is 3214 kilometres. India's longitudinal boundaries are 68°7'E and 97°25'E. The length of India from Sir Creek in Gujarat to Chaukan Pass in Arunachal Pradesh is 2993 km.
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the basic unit of area for the study of stream processes is the __________.
The basic unit of area for the study of stream processes is the catchment area.
In the study of stream processes, the catchment area is a fundamental unit used to analyze the hydrological characteristics of a watershed. This unit refers to the area of land that is drained by a single stream or river system. It is considered an essential aspect of understanding stream processes as the water, sediment, and nutrients that are transported by a stream are all influenced by the characteristics of the catchment area. Researchers use various methods to quantify the size and shape of a catchment area, including topographic maps, satellite imagery, and GIS tools. By analyzing the catchment area, researchers can better understand how stream processes are affected by changes in land use, climate, and other environmental factors.
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Where, through a year, is the greatest total oceanic primary productivity?
a. in the tropics
b. in the temperate zones
c. in the polar regions
d. productivity is about equal at all latitudes
The greatest total oceanic primary productivity occurs in the tropics.
The warm and stable conditions in the tropics provide ideal conditions for the growth of phytoplankton, which are the base of the ocean food chain. These phytoplankton thrive in abundant sunlight and warm temperatures, which leads to high rates of photosynthesis and primary productivity. In contrast, polar regions have very short growing seasons and low sunlight levels, which limit primary productivity. The temperate zones have intermediate productivity levels, which can vary depending on factors such as nutrient availability and seasonal changes. However, overall, the tropics have the highest total oceanic primary productivity.
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a system of streams that connect to one primary river is called a _____.
the global hydrologic cycle supports a net flow of atmospheric water vapor __________.
The global hydrological cycle supports a net flow of atmospheric water vapor from areas of high concentration to areas of low concentration.
In this cycle, water evaporates from Earth's surface, such as oceans, lakes, and rivers, and enters the atmosphere as water vapor.
This atmospheric water vapor then moves across the globe due to wind patterns and other atmospheric factors. Eventually, it condenses into clouds and falls back to the Earth's surface as precipitation, replenishing the water sources.
This continuous process of evaporation, transportation, condensation, and precipitation helps distribute water resources around the world and maintains a balance in the Earth's water system.
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Sketch, label, and describe the different vertical habitats within a rain forest. Sketch, label, and describe the different vertical habitats within a rainforest. Upload your concept sketch using the upload tool.
FILL IN THE BLANK. which disaster was caused (in part) by rock layers that tilt down into (toward) a valley?
Answer:
I think the answer is
Explanation:
Landslide
The disaster that was caused (in part) by rock layers that tilt down into (toward) a valley is a landslide.
A landslide is a type of mass movement in which a mass of soil, rock, or debris moves down a slope. The movement is often caused by the gradual or sudden displacement of material due to factors such as gravity, erosion, or human activity. When rock layers tilt down into a valley, it can create a situation in which the force of gravity is pulling material downslope, increasing the risk of landslides. Landslides can be extremely dangerous and can cause significant damage to property and infrastructure.
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Describe the different types of waves that form during earthquakes.
P-waves, S-waves, and surface waves are the three main categories of seismic waves.
P- and S-waves are frequently referred to as body waves. P-waves, also known as pressing factor waves or essential waves, go through the Earth at the fastest rate. They manifest as sound waves as they move through the air. Surface waves, which travel just below the Earth's surface, are similar in nature to ocean waves. They frequently occur when an earthquake's source is nearby the surface of the Earth.
Surface waves are the most devastating kind of seismic wave because they can have a significantly bigger amplitude, move more slowly than S-waves, and travel farther. An earthquake is any shaking or quick motion of the solid layer of the Earth. Rocks are stressed by plate tectonics, which causes them to shatter, and the energy released by the broken rocks creates earthquakes.
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what is a large, flattish mass of independently floating ice that has broken away from other ice?
An ice floe refers to a large, flat mass of floating ice that has detached from other ice.
How does ice floe occurSuch formations usually occur when larger bodies of ice like sheets and shelves break apart due to natural sources like temperature changes, wind, and waves.
Ice floes could range in magnitude from small pieces to huge chunks covering several square kilometers or bigger regions. These outgrowths may exist not only in polar areas such as the Arctic and Antarctic but also beyond them in cooler waters of oceans and lakes. As they are prone to drifting with ocean currents and altering their size and shape regularly, they can cause navigation problems.
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based on the lidar images of elevations (showing coastal new jersey before and after hurricane sandy), how has lidar data helped scientists understand this shoreline?
Answer:
-Data show large changes in erosion and deposition of sediment in different areas along the coast
-Data demonstrate that this coastline is at high risk for storm damage
Explanation:I
I hope I'm correct?
Lidar data has been essential in helping scientists understand the changes to the shoreline of coastal New Jersey before and after Hurricane Sandy.
Lidar data provides scientists with a precise and accurate view of the landscape, which allows them to map out changes in elevation, such as the erosion or deposition of sand along the coastline. This information is crucial in understanding how natural disasters like hurricanes can impact the shoreline, and in developing strategies to mitigate the effects of future storms.
LiDAR, or Light Detection and Ranging, is a remote sensing technology that uses laser light to measure distances and generate high-resolution, 3D maps of the Earth's surface. By comparing LiDAR images of elevations of coastal New Jersey before and after Hurricane Sandy, scientists can:
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what does the radial pattern of the canadian eskers indicate about the geography of the north american continental glaciation during the last glacial period?
The radial pattern of the Canadian eskers indicates that during the last glacial period, the geography of the North American continent experienced significant glaciation.
Eskers are formed when meltwater from glaciers flows through subglacial tunnels and deposits sediment in a linear pattern. The radial pattern of eskers in Canada suggests that glaciers were present in multiple locations across the continent and that they flowed outward from a central point. This is consistent with the theory that during the last glacial period, large ice sheets covered much of North America and that the movement of these ice sheets created the radial pattern of eskers that we see today. Overall, the presence of eskers in Canada is a clear indication of the powerful and far-reaching effects of continental glaciation during the last ice age.
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the wind belt(s) with strong, reliable, generally easterly winds is (are) the:
The wind belt(s) with strong, reliable, generally easterly winds is (are) the Trade Winds. Trade Winds are steady, prevailing winds that blow consistently from the east towards the west, mainly in the tropical regions.
They are found in the latitudes between 30 degrees north and 30 degrees south of the equator. The term "trade" in their name originates from the historical use of these winds for trade routes during the age of sail.
These winds are generated due to the Earth's rotation and the uneven heating of its surface by the sun. In the tropics, the sun heats the air near the equator, causing it to rise. As the air rises, it cools and spreads out towards the poles.
Eventually, it descends back towards the Earth's surface at around 30 degrees latitude, creating a high-pressure zone. This descending air is then drawn back towards the equator due to the pressure difference, generating the easterly Trade Winds.
Trade Winds are characterized by their consistent strength and reliability, making them an essential component of global weather patterns and ocean currents. In addition, these winds have a significant impact on climate and ecosystems in the regions where they are present.
In summary, the wind belt(s) with strong, reliable, generally easterly winds are the Trade Winds, which play a crucial role in shaping the weather patterns, ocean currents, and overall climate in the tropical regions of the world.
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by looking at the graph, what can we say about the galaxies that have the lowest speeds?
By looking at the graph, we can say that the galaxies with the lowest speeds are those that are closest to the origin or have the least amount of radial velocity.
These galaxies, typically located in the lower-left corner of the graph, are either relatively stationary or moving at slower speeds compared to other galaxies.
There could be a few reasons for their lower speeds. One possibility is that these galaxies are located closer to our own galaxy, the Milky Way, which makes their relative motion appear slower.
Another possibility is that these galaxies might be part of a local group of galaxies bound by gravity, causing them to move at a more uniform and relatively slower pace compared to galaxies outside the group.
In conclusion, by analyzing the graph, we can determine that galaxies with the lowest speeds are typically closer to the origin, indicating either their proximity to our galaxy or their membership in a gravitationally bound group.
Their lower speeds can be attributed to their relative motion compared to our galaxy or the influence of gravitational forces within a local group of galaxies.
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The force that would cause a stationary parcel of air to begin to move horizontally is called thea. Coriolis force.b. pressure gradient force.d. centripetal force.e. frictional force
The force that would cause a stationary parcel of air to begin to move horizontally is the b. pressure gradient force.
The pressure gradient force is a force that is exerted on the air particles due to differences in pressure across a region. Air naturally flows from areas of high pressure to areas of low pressure, and this pressure difference creates a force that causes the air to move horizontally.
The greater the difference in pressure, the stronger the pressure gradient force, and the faster the air will move.
The Coriolis force is a force that is caused by the rotation of the Earth, and it influences the direction of motion of the air masses, but it doesn't cause stationary air to start moving.
The centripetal force is a force that acts perpendicular to the direction of motion, and it is not directly related to the motion of stationary air. The frictional force is a force that opposes the motion of air, and it acts to slow down air masses that are already in motion, rather than causing stationary air to start moving.
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Fishermen in Newfoundland, Canada had beenexperiencing declining cod harvests for years when asudden change was announced in 1992. What wasthe change? Mark it with a line on the graph.
The sudden change announced in 1992 for the fishermen in Newfoundland, Canada was a complete moratorium on cod fishing in the region.
This meant that all fishing for cod was prohibited, in an effort to allow the cod population to recover after years of declining harvests. This decision was made by the Canadian government after years of unsuccessful attempts to manage the cod fishery, and was based on scientific evidence that showed the cod population was dangerously low and needed time to replenish.
The moratorium had a significant impact on the fishing industry and the communities that relied on it, as many people lost their jobs and livelihoods. It also had wider environmental and economic implications, as the cod fishery was a major source of food and income for many people in the region.
The decision to impose the moratorium was a difficult one, but it was necessary to ensure the long-term sustainability of the cod population and the fishing industry. Today, the cod population in the region is slowly recovering, and efforts are being made to ensure that fishing practices are sustainable and do not lead to another collapse in the future.
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How does a biome relate to a climate zone
Biomes are geographical areas on earth that share similar climatic characteristics as well as flora and fauna. Climate is the longer-term weather trend that establishes the yearly average for weather patterns. As a result, biomes and climate zones vary.
Climate refers to the distinctive features of the atmosphere close to the surface of the planet at a particular location. It is the region's long-term (at least 30 years) weather. This comprises the general weather patterns, seasons, and weather extremes like hurricanes, droughts, or wet spells that occur in the area. The air temperature and the amount of precipitation are two of the key elements that determine a region's climate.
The sort of vegetation that develops in a region depends on the environment.
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