What is a midlatitude cyclone

Answers

Answer 1

Answer:

They are weather systems that happen to spin in a counterclockwise direction in the Northern Hemisphere from low pressure points. They form between two big cold fronts when their temperatures are very different compared to each other. These air masses will blow past each other in opposite directions when it is formed.


Related Questions

Which action would be the most effective in slowing
deforestation in the Brazilian Amazon?
O moving cattle ranches to other areas
O placing severe restrictions on logging
O stopping the expansion of urban areas
O combining smaller farms into larger farms

Answers

Answer:

placing restrictions on logging

Explanation:

Answer:

Moving cattle ranches to other areas

Explanation:

70% of formerly forested land in the Amazon, and 91% of land deforested since 1970, is used for livestock pasture. The Brazilian government initially attributed 38% of all forest loss between 1966 and 1975 to large-scale cattle ranching.

paricutin is an example of a . group of answer choices shield volcano composite volcano cinder cone lava dome

Answers

Paricutin is an example of a Cinder Cone volcano. It is located in the state of Michoacan, Mexico, and it is considered one of the most famous and studied examples of a cinder cone volcano in the world.

Cinder cones are the simplest type of volcano and are characterized by steep conical hills formed from the accumulation of loose volcanic fragments called cinders or scoria. These fragments are ejected from a single vent and accumulate around the vent to form a cone-shaped hill. Cinder cone volcanoes are typically small in size and have a relatively short lifespan compared to other types of volcanoes such as shield and composite volcanoes. Cinder cone volcanoes are relatively small in size and are formed by explosive eruptions that eject volcanic materials, such as cinders, ash, and rocks, into the air. As these materials fall back to the ground, they accumulate around the vent to form a cone-shaped hill. Cinder cones typically have steep slopes and a small summit crater that may or may not contain a lava dome or other type of volcanic feature.

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you can use a landslide hazard map to help buy a piece of property by using it to determine if

Answers

A landslide hazard map helps assess the risk of landslides and determine the suitability of a property for purchase.

A landslide hazard map can be a useful tool for determining if a property is suitable for buying, especially when taking the danger of landslides into account. You can learn more about the potential landslip hazards in a given area or region by looking at a map of landslip hazards.

Landslide hazard maps often give a general overview of places that are vulnerable to landslides based on pertinent geological information such as slope steepness, soil composition, historical landslide occurrences, and others. These maps might classify regions into landslip risk categories ranging from low to high.

You can determine whether a property is situated inside a high-risk landslide zone or nearby places with a history of landslides by consulting a landslide hazard map. You can use this information to decide whether the property is a good investment after considering all of the possible hazards and contributing variables.

A landslip hazard map is only one tool in the assessment process, it's crucial to remember that. It should be utilised along with other elements, including site-specific geotechnical surveys, regional laws, and professional guidance from geologists or civil engineers who specialise in landslip dangers. These experts can offer more thorough analyses and suggestions that are particular to the property you are thinking about.

In order to make an informed choice about the danger of landslides, a thorough assessment of the property's suitability should take into account a variety of elements, including but not limited to the data provided by a landslide hazard map.

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The complete question is -

"Can a landslide hazard map be utilized to assess the suitability of a property for purchase, particularly regarding the risk of landslides?"

How are countries divided into East and West?

Answers

The prime meridian, or 0 degrees longitude, and the International Date Line, 180 degrees longitude, divide the Earth into Eastern and Western hemispheres?

Define the Quaternary period(4 marks)

Answers

Answer:

The Quaternary Period is the third and last of the three periods of the Cenozoic Era. You and I are living in this period, which began only 2.58 million years ago. The Quaternary Period is divided into two epochs, from youngest to oldest: the Holocene and Pleistocene. We are living in the Holocene.

What are the effects/impact on the environment?

Answers

Answer:

Humans impact the physical environment in many ways: overpopulation, pollution, burning fossil fuels, and deforestation. Changes like these have triggered climate change, soil erosion, poor air quality, and undrinkable water.

In which country was Sidhartha Guayana born?

Answers

Answer:

Lumbini, Shakya Republic

Explanation:

Answer:

Nepal

Explanation:

Lumbini, Nepal was where they were born

Mohomed lives in Texas, where there is limited moisture. What type of climate does he live in? Aquic Aridic Udic Ustic

Answers

Answer:

Ustic

Explanation:

Ustic is the term used to describe a soil moisture regime where moisture is limited, but it is present in an intermediate amount between the regime without moisture and a regime with high humidity. In other words, "ustic" represents soil with moisture, in small amounts. Although this type of soil can supply water for some plants, there is a need for irrigation for the installation of agricultural crops, since the evaporation of this humidity is high.

investigate abaout tools used by geographers

Answers

At its heart, a map is a representation of a physical location on Earth. Various charts perform various tasks. From a world map showing nations to a comprehensive strolling plan of every route on a college campus, the most fundamental map displays the physical characteristics of a location. Other maps can provide additional information about a region, such as a landmass that has been color-coded according to the languages spoken on it or the main exports, or a map that shows the relative altitudes in a hilly region.

The Precision of Surveying Equipment

You've probably seen these tools used by building workers while stuck in traffic, but geographers use them to do the same thing for their employment. The most well-known is the theodolite, a level lens mounted on a tripod that aids in measuring relative distance and elevation. Geographers use the theodolite in conjunction with a plumb line and measuring ruler to precisely evaluate even minor details of an area.

GPS stands for Global Positioning System.

Global Positioning Systems (GPS) aid navigation by providing comprehensive information about your location and the geographical environment around you. This may be the geography tool you are most familiar with, aside from maps. Global Information Systems and Global Directional Systems are tools that work in tandem. GIS is a library of geographic information that is constantly updated by scholarly, commercial, and military sources, whereas GPS aids navigation by using a database rather than a live satellite feed. Geographers use all three methods to gain access to what is already known about the Earth in order to aid in ongoing study.

Photographic Evidence from Remote Imaging

Geographers had to make maps based on observations and measurements taken on the ground until the middle of the twentieth century. Geographers can now draw maps and make observations based on photos taken from the same perspective as a map of the area, thanks to the invention of reliable air travel and, later, satellite imaging. Geographers can now use remote images to record information beyond the visible spectrum, such as magnetic activity, infrared temperature, and subterranean water levels, thanks to advances in technology.

Geographers had to create maps based on observations and readings made on the ground until the mid-twentieth century. Geographers can now create maps and make notes based on photographs taken from the same viewpoint as a map of the region, thanks to the advent of dependable air travel and, later, satellite imagery. Geographers can now use distant pictures that capture information beyond the visible range, such as magnetic activity, infrared temperature, and underground water levels, thanks to advances in technology.

The photo shows Old Faithful in Yellowstone National Park. A column of water being blown into the air. Which statement correctly identifies Old Faithful and explains how it formed? It is a caldera formed from a vent collapsing. It is a mud pot formed from pools of boiling, acidic mud. It is a volcanic neck that formed as a result of magma that never erupted. It is a geyser that formed due to water heated by magma erupting at Earth’s surface.

Answers

Answer:

The only statement that correctly identifies the Old Faithful and explains how it's formed is a geyser that formed due to water heated by magma erupting at Earth's surface.

Explanation:

According to the photo of the Old Faithful in Yellowstone National Park, people see the Geyser was formed due to the water heated by magma erupting at Earth's surface.

The statement correctly identifies Old Faithful and explains how it formed It is a geyser that formed due to water heated by magma erupting at Earth’s surface. Thus the correct option is D.

What is the inference?

Inference in any literature piece refers to achieving the conclusion of any subject with the support of facts and evidence present in the particular piece of literature.

In the given case, it is described as the photo illustrating the Old Faithful in Yellowstone National Park. It also states how water is blown into the air like a fountain.

People might recognize that the Old Faithful Geyser at Yellowstone National Park was formed as a consequence of the water being heated by magma exploding at the surface of the earth. 

Therefore, option D is appropriate.

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Please I need help you don’t have to do it for me, you can just explain it to me so that I can do it myself (Part 1)

Please I need help you dont have to do it for me, you can just explain it to me so that I can do it myself
Please I need help you dont have to do it for me, you can just explain it to me so that I can do it myself
Please I need help you dont have to do it for me, you can just explain it to me so that I can do it myself
Please I need help you dont have to do it for me, you can just explain it to me so that I can do it myself
Please I need help you dont have to do it for me, you can just explain it to me so that I can do it myself

Answers

Answer:

Can you try clarifying this. :)

Explanation:

It has been two weeks since Amaya drenched her soil. Her plants have been growing quickly despite the fact that it has not rained and she has not been able to water her garden. The sensor at 3 inches reads −100kP and the one at 6 inches reads −70kPa. How was water lost from the soil after drainage stopped? a Transpiration b Percolation c Evaporation d Osmosis

Answers

The correct option among a transpiration, b percolation, c evaporation, and d osmosis is option C (Evaporation).

Evaporation is a natural phenomenon in which water is converted from a liquid state to a vapor state. This is due to the heat energy of the surrounding atmosphere. When water is exposed to air, it begins to evaporate. As a result, water from Amaya's soil evaporated despite the fact that it had been two weeks since she soaked it.Transpiration is the procedure in which water vapour is emitted from the surface of a plant. Osmosis is a process in which water moves from a region of high concentration to one of low concentration through a semi-permeable membrane.Percolation is the process of water seeping down through the soil due to gravity.

It is important for plants because it replenishes the groundwater and helps to prevent soil erosion. Percolation, however, has nothing to do with water loss from soil after drainage stops. In conclusion, the water from Amaya's soil evaporated due to the high temperature, and that's why her plants are growing quickly despite the fact that it hasn't rained and she hasn't been able to water her garden.

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What rivers forms the southern boundary of Romania?

Answers

it’s the Danube river

The Danube River........................................................................

gimme brainliest

What is the difference between Climate Mitigation and Climate Adaptation? Give one example of climate mitigation action in the US and one climate adaptation action in the US. 12. Marijuana farming in Oregon consumes a lot of water. Oregon is getting warmer and drier due to climate change. More than one-third of Oregon, on average, has been in severe drought in 2020-2022, according to the fifth and latest Oregon Climate Assessment. Three-quarters of the state remained in severe drought or worse this week. What might be a climate adaptation measure in Oregon's agriculture sector.

Answers

Climate mitigation refers to actions taken to reduce greenhouse gas emissions and minimize the impacts of climate change, while climate adaptation refers to measures taken to adjust and prepare for the existing or anticipated impacts of climate change.

Example of Climate Mitigation in the US: The implementation of renewable energy sources, such as solar and wind power, to replace fossil fuel-based energy generation is an example of climate mitigation in the US. By reducing reliance on carbon-intensive energy sources, it helps to decrease greenhouse gas emissions and mitigate climate change.

Example of Climate Adaptation in the US: In the agriculture sector in Oregon, a climate adaptation measure could be the adoption of water-efficient irrigation techniques and technologies. Farmers can implement precision irrigation systems, use drought-resistant crop varieties, and improve water management practices to adapt to the increasing water scarcity and ensure efficient use of water resources.

Climate mitigation focuses on reducing greenhouse gas emissions and preventing further climate change. It involves actions like transitioning to renewable energy, improving energy efficiency, and adopting sustainable practices to minimize the carbon footprint.

On the other hand, climate adaptation involves preparing for and adapting to the impacts of climate change that are already occurring or anticipated. This includes measures to protect vulnerable communities, infrastructure, and natural resources from the effects of climate change.

In the given example, Oregon's agriculture sector can implement climate adaptation measures to address the increasing water scarcity caused by climate change. Adopting water-efficient irrigation techniques and technologies would help farmers optimize water use, reduce water consumption, and better manage drought conditions.

Climate mitigation focuses on reducing greenhouse gas emissions and preventing further climate change, while climate adaptation involves preparing for and adapting to the impacts of climate change. An example of climate mitigation in the US is the adoption of renewable energy sources, while an example of climate adaptation in the agriculture sector in Oregon could be the implementation of water-efficient irrigation techniques and technologies to address increasing water scarcity caused by climate change. These measures are essential in combating climate change and building resilience to its impacts.

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Transit:
a. Planet b and planet c are both orbiting the same star K2-21. These planets were detected thanks to the transit method using the K2 mission. The transit depths of both planets are 0.1% and 0.13% (assuming the star brightness to correspond to 100%), respectively. Planet b radius is 2 REarth. What is the radius of planet c (per unit of Earth radius)?
b. The masses of both planets b and c are 1.5 MEarth and 4 MEarth, respectively. What are their densities? Compare their densities to our Solar System planet densities? Comment?
c. Comment on the physical and orbital characteristics of the most likely planets to be detected via the transit method.

Answers

a) The radius of planet c (per unit of Earth radius) is approximately 2.59 Earth radii.

b) Planet b has a density of 4.17 g/cm³, making it denser than any planet in our Solar System. Planet c has a density of 3.05 g/cm³, similar to Earth's density, suggesting a rocky composition for planet c.

c) The transit method is most likely to detect planets that are close to their host stars and have short orbital periods. Larger planets are more easily detectable, but highly inclined orbits make detection less likely.

a) The radius of planet c (per unit of Earth radius) can be calculated using the formula:

Radius of planet c / radius of Earth = √(transit depth of planet c / transit depth of planet b) * (radius of planet b / radius of Earth)

The transit depths of planet b and planet c, and the radius of planet b, we can calculate the radius of planet c.

Radius of planet c / radius of Earth = √(0.13% / 0.1%) * (2 REarth / radius of Earth) = 1.295 * 2 = 2.59 REarth

Therefore, the radius of planet c (per unit of Earth radius) is approximately 2.59 Earth radii.

b) The densities of planets b and c can be calculated using the formula:

Density = mass / volume,

where volume = 4/3 * π * radius³.

Using the given masses and the radius of planet b, we can calculate the densities of both planets.

Density of planet b = 1.5 MEarth / (4/3 * π * (2 REarth)³) = 4.17 g/cm³

Density of planet c = 4 MEarth / (4/3 * pi * (2.59 REarth)³) = 3.05 g/cm³

Comparing these densities to those of the planets in our Solar System, we can see that planet b is denser than any planet in our Solar System, whereas planet c has a similar density to Earth. This suggests that planet b is likely composed of denser materials, such as iron, while planet c is more likely to have a rocky composition.

c) The transit method is most likely to detect planets that are relatively close to their host stars and have relatively short orbital periods. This is because the transit method relies on detecting the dip in brightness as a planet passes in front of its host star. Therefore, planets that are further away from their stars and have longer orbital periods are less likely to produce detectable transits.

The transit method is also more likely to detect larger planets, as they will produce a larger dip in brightness. However, the transit method is less effective at detecting planets that have highly inclined orbits, as they are less likely to pass directly in front of their host stars.

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The group of processes that change rocks exposed to the Earth's surface, these rocks are subjected to destructive forces such as: wind, water, acids, etc.

Answers

Weathering is the breaking down or dissolving of rocks and minerals on Earths surface.

Weathering and People Weathering is a natural process, but human activities can speed it up. For example, certain kinds of air pollution increase the rate of weathering. Burning coal, natural gas, and petroleum releases chemicals such as nitrogen oxide and sulfur dioxide into the atmosphere. When these chemicals combine with sunlight and moisture, they change into acids. They then fall back to Earth as acid rain. Acid rain rapidly weathers limestone, marble, and other kinds of stone. The effects of acid rain can often be seen on gravestones, making names and other inscriptions impossible to read. Acid rain has also damaged many historic buildings and monuments.

Once a rock has been broken down, a process called erosion transports the bits of rock and minerals away. Water, acids, salt, plants, animals, and changes in temperature are all agents of weathering and erosion.

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the forces that deform rock are different in different directions and are referred to as .

Answers

The forces that deform rock in different directions are referred to as stress. Stress can be defined as the force per unit area acting on a material.

When rocks are subjected to stress, they can undergo different types of deformation, including compression, tension, and shearing. Compression occurs when rocks are squeezed together, while tension occurs when rocks are pulled apart. Shearing occurs when rocks are pushed in opposite directions along parallel planes. The type of deformation that occurs depends on the type of stress and the strength of the rock. Over time, this deformation can lead to the formation of geological structures such as faults, folds, and mountains.

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WHATS denser then a star

WHATS denser then a star

Answers

Answer:

Quark stars are bizarre theorized objects that are even denser than neutron stars, where even neutrons can't survive and they melt down into their constituent quarks A black hole with a SR the same radius as a Neutron Star, must have much more mass than the Neutron Star (or it would be a Neutron Star)… thus, a black hole is denser than a Neutron Star the same size.

Explanation:

Why does the equatorward bending of height contours for the 500 mb level imply the presence of a trough?

Answers

The equatorward bending of height contours for the 500 mb level imply the presence of a trough because  this represents a region of overall lower heights. A valley and a trough are hence equivalent in the upper air flow.

A trough is a linear structural depression with lateral length that occurs in geology. A trough can be a small basin or a natural rift, albeit it is lower than a trench. At the edge of tectonic plates, these landforms frequently form.

Trough, an extended depression in the seafloor that differs from oceanic trenches in that it is shallower, shorter, narrower, and topographically more mild. The Papuan Trough's maximum depth is 2,300 m (7,500 feet), while the Banda Trough's maximum depth is 7,440 m.

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Which of the following planets is a terrestrial planet?

Answers

Answer:

Venus Earth Mercury and Mars

Explanation: trust me ma boy

the discovery of seafloor spreading provided the mechanism that was missing in wegener's hypothesis of

Answers

continental drift. Seafloor spreading was discovered through the study of the ocean floor, using sonar and magnetic field measurements. This discovery provided evidence of plate tectonics and the movement of the Earth's crust, which supported Wegener's hypothesis of continental drift. The discovery of seafloor spreading showed that the Earth's continents were not stationary, but instead moved and changed over time as a result of plate tectonics. This provided the missing mechanism for Wegener's hypothesis and helped to explain how the continents could have been connected in the past and have since moved apart over time.

Which geographic features best enabled migration in the interior of Africa? Click or tap all that apply.


A.
Atlas Mountains


B.
Congo River


C.
Great Rift Valley


D.
Kalahari Desert


E.
savannas


F.
tropical rain forests

Answers

Answer:

C. Great Rift Valley and  E. savannas

Answer:  A,D,F

Explanation:

Because the Atlas mountains, Kalahari Desert, And the tropical rain forests, are all best enabled migration in the interior of Africa. And plus I am a straight A students and we just learnt this 2 weeks ago so....And I took this test.

Why aren’t all the islands of Hawaii the same age?

Answers

Answer:

they are't all the same age cuz they were fond at different times

Explanation:

what percentage of 4​m is 20cm

Answers

Ur answer should be between 3% and 15%

how are earthquakes, tsunamis, and tectonic plate movements alike?

Answers

Earthquakes and Tsunamis occur due to movement of tectonic plates, when the tectonic plates under the surface of earth move on the land, earth quakes occur, and when they move under water, tsunamis occur.

3. What physical features might be present in countries that have large numbers of people concentrated in relatively small areas?​

Answers

Answer:

The physical features might include fresh water, fertile soil, and friendly to life. Way of life of a group of people who share beliefs and similar customs.

Answer:

well i misunderstood the question, so. physical feautures you may see is smaller amounts of clean water, really big apartment building, theres also a lot of soil.

Explanation:

A student uses clay to build a model of a


mountain. The student uses dental floss to


make horizontal cuts through the mountain.


What do the horizontal cuts through the


mountain represent in this model? (8. 3B)

Answers

The horizontal cuts made through the mountain in the clay model represent different elevation levels or layers of the mountain.

When the student makes horizontal cuts through the mountain using dental floss, it allows them to create distinct layers within the model. Each horizontal cut represents a specific elevation level or layer of the mountain. By creating these layers, the student can depict the varying height and shape of the mountain more accurately.

These horizontal cuts help to represent the geological structure of the mountain. In real mountains, layers of rock and sediment are stacked on top of each other, often formed through geological processes such as folding, faulting, or volcanic activity. By making horizontal cuts, the student is simulating these layers and showcasing the different materials and formations that make up the mountain.

The horizontal cuts also provide a visual representation of the mountain's topography. They allow the student to highlight the contours and shape of the mountain, emphasizing its ridges, valleys, and slopes. This technique adds depth and realism to the clay model, making it a more accurate representation of a mountain's physical characteristics.

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what conclusion can you draw about the impact of urban heat islands on climate change? support your ideas with two pieces of evidence.

Answers

Urban heat islands (UHIs) are areas of increased temperatures as a result of human activities, such as the burning of fossil fuels, that contribute to the overall warming of the planet.

UHIs can occur in both urban and rural areas, but tend to be more pronounced in urban areas due to the presence of more buildings and other infrastructure. The first piece of evidence that supports the conclusion that UHIs have an impact on climate change is the fact that UHIs can significantly contribute to the warming of the planet.

UHIs can produce a heat island effect, which is the process by which the air near the ground can be heated up to 10°F to 20°F above the surrounding area. This creates a localized hot spot that can have a significant impact on the overall temperature of the planet.

The second piece of evidence that supports the conclusion that UHIs have an impact on climate change is the fact that UHIs can create localized areas of more intense precipitation. This is due to the fact that the air near the ground is heated to a greater degree, which causes it to rise more quickly and cause more intense precipitation. This increased precipitation can lead to an increase in the risk of flooding, particularly in urban areas, which can have a cascading effect on the local environment and the overall climate.

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The layer of the atmosphere that contains weather is the

Answers

Answer: crust

Explanation: it the outer most layer of the arth

Answer:

troposphere

Explanation:

The troposphere is the lowest layer of the atmosphere. This is the layer where we live and where weather happens.

How is radar used to forecast weather?

A. It shows areas of high and low pressure.
B. It collects data in the upper atmosphere.
C. It collects weather data as part of a network around the country.
D. It locates and tracks storms, and follows the path of storm systems.

Answers

Answer:

B

Explanation:

Answer:

B. It collects data in the upper atmosphere.

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