The UN reports that how many children die each day from unsafe water and lack of basic sanitation?
a) 400
b) 4000
c) 100
d) 40000
e) 10000

Answers

Answer 1

According to the United Nations (UN), approximately 4,000 children die each day from unsafe water and lack of basic sanitation. Option B is correct.

This staggering number highlights the dire consequences of inadequate access to clean water and basic sanitation facilities, particularly for vulnerable populations such as children.

Unsafe water and lack of basic sanitation can lead to various waterborne diseases, such as diarrhea, cholera, and typhoid, which are major causes of mortality and morbidity, especially in developing countries. Children, in particular, are more vulnerable to these diseases due to their weaker immune systems and limited access to healthcare.

Several factors contribute to the lack of access to safe water and basic sanitation, including inadequate infrastructure, lack of proper sanitation facilities, pollution of water sources, and socio-economic disparities. Poor water quality and inadequate sanitation also impact other aspects of children's lives, such as education, as children may miss school due to illness or spend significant time fetching water instead of attending school.

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Related Questions

comparing the visible and the infrared types of light, which would you say has an easier time getting through our atmosphere? which experiences more absorption?

Answers

In general, visible light has an easier time getting through our atmosphere compared to infrared light.

Infrared light, on the other hand, absorbs more than visible light as it travels through the atmosphere. This is due to the fact that atmospheric gases (such as water vapour, carbon dioxide, and methane) are more efficient in absorbing longer wavelength light, such as infrared radiation.

The greenhouse effect occurs when these gases capture part of the heat radiated from the Earth's surface and re-emit it back towards the surface, causing the lower atmosphere to warm.

In some cases, visible light may also experience absorption or scattering as it passes through the atmosphere, particularly during times of high pollution or in areas with high concentrations of aerosols or other particles.

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what is the source of the variations in Jupiter's dark belts and bright zones

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The variations in Jupiter's dark belts and bright zones are primarily caused by the planet's rapid rotation and its dynamic atmospheric processes.

The dark belts represent areas of lower atmospheric pressure, while the bright zones signify regions of higher pressure. These features are formed by the interaction of Jupiter's powerful jet streams and convection currents, which drive the circulation of gases within the atmosphere.

The jet streams on Jupiter move at varying speeds, creating shearing forces that lead to the formation of alternating belts and zones. These jet streams are powered by the planet's rapid rotation, which completes a full turn in just under 10 hours. This fast rotation causes the Coriolis effect to be particularly pronounced, which influences the atmospheric motion and contributes to the development of the belts and zones.

Additionally, the convection currents in Jupiter's atmosphere play a crucial role in shaping the belts and zones. Rising warm gases from the interior create upwelling currents in the bright zones, while sinking cool gases produce downwelling currents in the dark belts. These convection processes result in variations in temperature, pressure, and chemical composition between the belts and zones.

In summary, the source of variations in Jupiter's dark belts and bright zones can be attributed to the planet's rapid rotation and dynamic atmospheric processes, including jet streams and convection currents, which create distinctive temperature, pressure, and chemical compositions within the atmosphere.

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3) Sediments that are poorly sorted were most likely deposited by ________. A) a river delta
B) the wind
C) a volcanic eruption
D) a glacier E) organisms

Answers

Sediments that are poorly sorted were most likely deposited by a volcanic eruption. Option C is the correct answer.

Streams located near or on volcanoes may get enormous amounts of sediment such as sand and gravel as a result of eruptions and later erosional processes. Mobilized material has the ability to travel quickly as massive slurries of boulders and debris (lahars), which can demolish buildings in their path and leave behind enormous amounts of silt down a valley floor. Option C is the correct answer.

Flood-transported sediment can inflict harm over a longer time span than eruption-related sediment, and post-eruption sediment transport may have greater negative socioeconomic effects than eruption-related sediment. The length of an eruption's destructive consequences can be significantly extended by the release of excessive sediment from watersheds that have been affected by volcanic activity. Option C is the correct answer.

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: 1 70) An unconformity in which the strata on either side are essentially parallel is termed a(n) ________.

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An unconformity in which the strata on either side are essentially parallel is termed a disconformity.

In a disconformity, there is a break in the sedimentary record, where a layer of sedimentary rock was deposited on an eroded surface of an older layer of sedimentary rock.

However, the layers on either side of the unconformity are parallel to one another, indicating that there was no significant deformation or tilting of the rock layers during the unconformity-forming event. In contrast, an angular unconformity is characterized by tilted or folded rock layers on one side of the unconformity, and flat-lying rock layers on the other side.

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An unconformity in which the strata on either side are essentially parallel is termed a disconformity.

A disconformity is a type of unconformity that occurs between two parallel layers of sedimentary rocks of different ages. It represents a period of erosion or non-deposition, during which time the older rock layer was exposed to the surface and eroded while the younger layer continued to accumulate on top of it. Disconformities can be difficult to recognize because the layers above and below the unconformity appear to be parallel, making it hard to identify the gap in time represented by the missing layer. However, geologists can use a variety of techniques, including radiometric dating and fossil analysis, to determine the relative ages of the rocks and the time gap represented by the disconformity.

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A convergence of winds near the surface is associated with cloud production because it:
-increases the wind speed.
-forces the air to rise.
-increases the dew point.
-creates a vortex or spiral pattern.
-increases the lapse rate.

Answers

A convergence of winds near the surface is associated with cloud production because it forces the air to rise. Therefore the correct option is option B.

When winds converge, air is forced to pile up, causing it to rise. As the air rises, it cools and its moisture content might achieve saturation, resulting in cloud formation.

When winds diverge, air is forced to flow away from a location, causing sinking motion and drying out of the air, which suppresses cloud formation.

In conclusion, the convergence of winds at the surface is associated with cloud formation because it causes the air to rise, which can result in the formation of clouds. Therefore the correct option is option B.

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Anthropogenic pollution is caused by
a) people
b) animals
c) climate
d) rocks
e) anthropologists

Answers

Answer: Second-hand cigarette smoke (people)

Explanation: Most air pollution is created by people, taking the form of emissions from factories, cars, planes, or aerosol cans. Second-hand cigarette smoke is also considered air pollution. These man-made sources of pollution are called anthropogenic sources.

The deepest trenches in the world exceed what depth?
a) 15000 feet
b) 25000 feet
c) 35000 feet
d) 50000 feet
e) 250000 feet

Answers

The deepest trenches in the world exceed a depth of d) 50000 feet. Therefore the correct option is option D.

The Mariana Trench is the world's deepest known trench, located in the western Pacific Ocean. The deepest known point in the Earth's waters, the Challenger Deep, reaches a maximum depth of roughly 36,070 feet (10,994 metres).

The Tonga Trench, Kermadec Trench, and Peru-Chile Trench are other well-known deep ocean tunnels reaching depths of 30,000 feet (9,144 metres).

Finally, the deepest trenches in the world reach a depth of 50,000 feet, with the Mariana Trench reaching a maximum depth of roughly 36,070 feet. As a result, option D is the proper choice.

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Why did most ancient Greeks travel in groups when traveling by land?

Answers

Answer:

They had to supply their own food when they stayed at inns.

Explanation:

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china, with its large population, has the highest per capita energy consumption in the world. T/F

Answers

This is true

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Clouds are classified and named according to their altitude and:
-temperature.
-form or appearance.
-size of droplets in the cloud.
-water content.
-amount of precipitation produced.

Answers

Clouds are classified and named according to their altitude and form or appearance, such as their shape, texture, and colour.

According to their height and shape or appearance, clouds are categorised and given names. Low, medium, and high clouds are the standard categorizations for altitude, with some clouds forming at very high elevations above these categories. The shape, texture, and colour of clouds all contribute to their form or appearance.

Common cloud types include cumulus, stratus, and cirrus. Temperature, water content, and droplet size are further factors that influence clouds. Additionally, certain clouds are notorious for bringing rain or thunderstorms, as indicated by names like nimbostratus and cumulonimbus.

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Why does the canyon effect have implications for building design and town planning?

Answers

The canyon effect have implications for building design and town planning as when designing tall buildings, architects and engineers must consider the potential wind tunnel effect.

A wind tunnel effect caused by tall buildings on either side of a street is known as the canyon effect. or it can have a significant impact on the local weather pattern, air quality, road comfort. When designing tall buildings, architects and engineers must consider the potential wind tunnel effect.  

Town planners must take the canyon effect's potential effects on walking comfort and safety into account.  Because it can trap pollutants and worsen their effects on human health, the canyon effect can also have an impact on air quality.

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64) The term referring to the size and shape of sediment particles is ________. A) texture
B) angularity
C) composition
D) provenance E) fabric

Answers

The term referring to the size and shape of sediment particles is texture. Option A is the correct answer.

The size, shape, and three-dimensional arrangement of the grains that make up sediment or sedimentary rock are referred to as texture. Both the weathering of rocks and the erosion of surface materials can produce these particles. Particles from a rock face that have been eroded by wind, rain, glaciers, and other natural forces are transported away as sediment. Option A is the correct answer.

A rock's texture is a small-scale characteristic, yet it plays a substantial role in many of its important characteristics, including bulk density, porosity, and permeability. The accumulation of particles that wind, water, and ice can carry away is known as an sediment. Option A is the correct answer.

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True of False: Rain shadow deserts typically form on the windward sides of mountains.

Answers

Answer:

False

Explanation:

Because This barrier causes the prevailing winds to lose their moisture on the windward side of the mountain ranges thereby causing the leeward side to be dry.

an asteroid with an orbit lying entirely inside earth's

Answers

An asteroid with an orbit lying entirely inside Earth's orbit is known as an inner-earth asteroid. These types of asteroids are classified as Atira asteroids and are often considered a potential hazard to Earth's safety due to their close proximity to our planet.

Scientists closely monitor their movements to predict potential collisions and devise strategies to divert them away from Earth's orbit. The path the Earth takes as it circles around the Sun is known as its orbit. It is an elliptical orbit, which implies that rather than being totally circular, it has an elliptical form. An astronomical unit (AU) is the measurement of the average distance between the Earth and the Sun, which is approximately 93 million miles (149.6 million kilometers). The gravitational influence of other planets in the Solar System, especially Jupiter and Saturn, on the geometry of Earth's orbit can result in minute changes in the orbit's shape and location over time. Seasons change on Earth as the planet revolves around the Sun due to the tilt of the Earth's orbit with respect to the plane of the solar system.

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the process by which venus became so much hotter than the earth is called: a. the twisted sister effect b. the runaway greenhouse effect c. ozone depletion d. radioactivity e. tectonic displacement

Answers

Correct option is (b)

This is the runaway greenhouse effect in which the greenhouse gases present in the atmosphere trap enough heat to boil away the oceans.

Venus followed a different evolutionary path from Earth. Venus receives far more sunlight as it is closer to the Sun than Earth. Due to this, the early oceans of Venus evaporated, the UV rays broke apart the water-vapor molecules, and hydrogen gas escaped to space.

As the surface was left with no water, the carbon dioxide present in the atmosphere led to the runaway greenhouse effect. The temperature of the planet's surface raised turning the planet into a much hotter one than Earth. Due to this runaway greenhouse effect, there was more incoming heat than outgoing heat. The planet from where heat is not able to escape, will eventually get hotter.

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Final answer:

Venus became hotter than Earth due to the Runaway Greenhouse Effect, which is when a planet's atmosphere contains gases that absorb and re-radiate heat back to the planet's surface.

Explanation:

The process by which Venus became so much hotter than Earth is referred to as the Runaway Greenhouse Effect.

This process occurs when a planet's atmosphere contains heat-trapping gases, such as carbon dioxide, which absorb and re-radiate heat back to the planet's surface. On Venus, this process went unchecked, leading to continuously rising temperatures that veered into extremes. The lack of a significant 'carbon sink', like Earth's oceans, to help regulate this heating effect exacerbated conditions, making Venus the hottest planet in our solar system.

This Runaway Greenhouse Effect demonstrates the potential dangers of uncontrolled global warming on Earth, reminding us of the importance of managing our carbon output.

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How did some ancient Greek farmers deal with their land's limitations?

Answers

Ancient Greek farmers dealt with their land's limitations by implementing various strategies to overcome the challenges posed by the terrain and resources available. For example-

Terrace farming to maximize the use of hilly and mountainous terrain, farmers built terraces or stepped fields, which helped control soil erosion and allowed them to cultivate a larger area.
Ancient Greek farmers practiced crop rotation to maintain soil fertility. They would alternate planting different crops in the same field each season to reduce nutrient depletion and prevent the buildup of pests and diseases.
To address water scarcity, farmers developed irrigation systems like aqueducts, canals, and wells to distribute water from rivers or springs to their fields.
Farmers in Ancient Greece understood the importance of maintaining soil fertility. They would use organic materials such as manure and compost to nourish the soil and support crop growth.
Ancient Greek farmers would select and breed plants and animals with desirable traits, such as high yield or resistance to diseases, to improve the overall productivity of their farms.

These strategies allowed Ancient Greek farmers to adapt to the land's limitations and cultivate a variety of crops, contributing to the prosperity of their society.

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after world war ii, what was discovered about the ocean floor? after world war ii, what was discovered about the ocean floor? earthquakes occur at extreme depths at oceanic ridges. there is no oceanic crust that is younger than 180 million years old. a deep-sea trench system winds through the centers of all the major oceans. the seafloor is much thicker than was previously expected. there is no oceanic crust older than 180 million years old.

Answers

what was discovered about the ocean floor after World War II is that scientists found that the oceanic crust was much older than previously believed, with no crust younger than 180 million years old.

Additionally, they discovered that earthquakes occur at extreme depths at oceanic ridges, and that there is a deep-sea trench system that winds through the centers of all the major oceans.

It should be noted that these discoveries were made through the use of new technologies such as sonar and submersibles, which allowed scientists to explore the ocean floor in greater detail than ever before. The discovery of the age of the oceanic crust helped to support the theory of plate tectonics, which posits that the Earth's crust is made up of a series of shifting plates that move and interact with each other. The discovery of the deep-sea trench system also provided evidence for this theory, as it was believed that these trenches were formed by the subduction of one tectonic plate beneath another. Overall, the discoveries made about the ocean floor after World War II represented a major step forward in our understanding of the Earth's geology and the processes that shape our planet.

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Folding can make a local mountain by _______.

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Folding can make a local mountain by the horizontal compression of two or more layers of rock lying in the plate boundary. This usually leads to the formation of Fold Mountains at the point of convergence of the two plates through a process called Orogeny.

The process of folding occurs when two or more tectonic plates are continuously pushing against each other resulting in the formation of an enormous amount of force leading to the bending of rock layers instead of breaking. At a point when the strain becomes unmanageable, the layers of rock in the heavier plate get subducted and the layers of rock on the lighter plate thrust upwards resulting in fold mountains.  

These mountains can reach incredible heights (e.g. the Himalayas) but at the same time, they are very much prone to various man-made disasters and natural disasters like earthquakes and landslides. This is attributed to the fact that they are very unstable geologically.

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Give an example of an environmental lapse rates that would produce an absolutely unstable atmosphere (given MALR = 6 degrees)

Answers

The correct answer is b) ELR = 7 degrees Celsius per kilometer, as it would produce an absolutely unstable atmosphere since it is greater than the given MALR of 6 degrees Celsius per kilometer.

The environmental lapse rate (ELR) refers to the rate at which the temperature changes with altitude in the actual atmosphere.

If the ELR is greater than the MALR, the atmosphere is considered to be absolutely unstable, which means that parcels of air will continue to rise and accelerate without any external lifting mechanism.

In this case, the given MALR is 6 degrees Celsius per kilometer. To determine if the atmosphere is absolutely unstable, we need to compare the MALR with the ELR.

a) ELR = 5 degrees Celsius per kilometer: The ELR is less than the MALR, so the atmosphere is not absolutely unstable.

b) ELR = 7 degrees Celsius per kilometer: The ELR is greater than the MALR, so the atmosphere is absolutely unstable.

c) ELR = 3 degrees Celsius per kilometer: The ELR is less than the MALR, so the atmosphere is not absolutely unstable.

d) ELR = 6 degrees Celsius per kilometer: The ELR is equal to the MALR, so the atmosphere is not absolutely unstable.

e) ELR = 2 degrees Celsius per kilometer: The ELR is less than the MALR, so the atmosphere is not absolutely unstable.

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Complete Question

Given a moist adiabatic lapse rate (MALR) of 6 degrees Celsius per kilometer, which of the following environmental lapse rates would produce an absolutely unstable atmosphere?

a) ELR = 5 degrees Celsius per kilometer

b) ELR = 7 degrees Celsius per kilometer

c) ELR = 3 degrees Celsius per kilometer

d) ELR = 6 degrees Celsius per kilometer

e) ELR = 2 degrees Celsius per kilometer

how much real-world area does a 3 x 3 10-m raster grid cover?

Answers

A 3 x 3 10-m raster grid covers a real-world area of 900 square meters.

A 3 x 3 10-m raster grid consists of 9 cells, each of which has an area of 10 meters by 10 meters, or 100 square meters. To determine the total area covered by the grid, we can simply multiply the area of one cell by the number of cells:

Total area = area of one cell x number of cells

Total area = 100 square meters/cell x 9 cells

Total area = 900 square meters

A raster grid is a regular arrangement of cells or pixels, where each cell represents a specific area on the ground. In this case, we have a 3 x 3 10-m raster grid, which means that it consists of 3 rows and 3 columns of cells, and each cell has a dimension of 10 meters by 10 meters. This is a common format for representing spatial data in geographic information systems (GIS) and remote sensing applications.

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Question 77
Landfill sites should be at least __ from streams, lakes or other surface bodies of water
a. 200 feet
b. 2000 feet
c. 200 yards
d. 100 feet

Answers

Landfill sites should be at least 2000 feet from streams, lakes or other surface bodies of water.

Option B is correct

The minimum distance of landfill sites from streams, lakes or other surface bodies of water may vary depending on local regulations and environmental conditions.

However, as a general guideline, a distance of at least 2000 feet (or 609.6 meters) is recommended to minimize the risk of contamination of water sources from landfill leachate or other pollutants. Therefore, option b. 2000 feet is the most appropriate answer.

Option B is correct

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Landfill sites should be at least 2000 feet from streams, lakes or other surface bodies of water.

This is because landfills can contain harmful chemicals and pollutants that can seep into the surrounding environment and contaminate nearby water sources. The distance helps to minimize the risk of pollution and protect the quality of the water. It is important to follow proper guidelines and regulations when siting a landfill to ensure that it is located in a safe and responsible manner. Additionally, regular monitoring and maintenance of the landfill is necessary to prevent any potential harm to the surrounding ecosystem.

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In Canada in 2010, which age classes contained the largest number of people?

Answers

In Canada in 2010, the age classes that contained the largest number of people were those in the age range of 40 to 44 years old and 45 to 49 years old. According to the data from Statistics Canada, in 2010, there were approximately 4.3 million people aged 40 to 44 years old, and 4.1 million people aged 45 to 49 years old in Canada. These age groups had the largest number of people because they represent the cohort born during the post-World War II baby boom, which occurred from 1946 to 1965. This group is often referred to as the baby boomer generation and has had a significant impact on Canadian society and the economy.

Which two nations are both among the top five consumers of oil, coal, and natural gas?
a) Russia and China
b) Russia and the United States
c) China and the United States
d) India and the United States

Answers

C, china and the United States

what days of the year do all latitudes of earth experience the same amount of daylight and darkness? multiple select question. the september equinox new year's day the march equinox the december solstice the june solstice

Answers

The days of the year when all latitudes of the earth experience the same amount of daylight and darkness are the March equinox and the September equinox.

The March equinox and September equinox, also known as the Vernal and Autumnal Equinox respectively, are the two days in a year when the amount of daylight and darkness is nearly equal at all latitudes of the Earth. During these equinoxes, the Earth's axis is tilted neither towards nor away from the sun, resulting in equal illumination of both the Northern and Southern Hemispheres. The March equinox occurs around March 20 or 21, marking the beginning of spring in the Northern Hemisphere and autumn in the Southern Hemisphere. The September equinox occurs around September 22 or 23, marking the beginning of autumn in the Northern Hemisphere and spring in the Southern Hemisphere.

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Why is the key bet pass an important physical location

Please help meee

Answers

The Key Bet Pass is an important physical location because it is a high mountain pass located in the Sierra Nevada mountain range in California.

Where is Key Bet Pass ?

It sits at an elevation of over 9,000 feet and provides a critical link between the Owens Valley to the east and the San Joaquin Valley to the west.

Historically, the Key Bet Pass was an important transportation route for indigenous peoples, early explorers, and settlers in the region. It was also a key location during the California Gold Rush, as it provided a critical link between the gold mines in the eastern Sierra Nevada mountains and the markets and ports in the west.

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The defining characteristic of potable water is that ita. can be consumed without risk of harm. b. Potable water is of a sufficiently high quality and purity that it lacks pathogens or contaminants that might otherwise pose a hazard to humans.

Answers

The defining characteristic of potable water is that it Potable water is of a sufficiently high quality and purity that it lacks pathogens or contaminants that might otherwise pose a hazard to humans. Therefore the correct option is option B.

While it is true that potable water is safe to drink, this is due to the fact that it is free of hazardous bacteria and pollutants.

Potable water is safe to drink and meets the minimal quality criteria established by regulatory authorities such as the World Health Organisation to protect the public's health and well-being. Therefore the correct option is option B.

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order the steps in the formation of an angular unconformity

Answers

The formation of an angular unconformity involves several steps, which can be listed in the following order:

Deposition of horizontal sedimentary layers over an older, tilted rock layer.Uplift and exposure of the layered rocks due to tectonic activity or erosion.Erosion of the exposed rock layer, removing some of the overlying horizontal sedimentary layers and creating a flat, eroded surface.

There are multiple steps involved in the creation of an angular unconformity, which might be enumerated in the following order:

Horizontal sedimentary layers are deposited over an older, inclined rock layer.Tectonic activity or erosion causes uplift and exposing of stratified rocks.Erosion of the exposed rock layer, resulting in the removal of some of the overlying horizontal sedimentary layers and the formation of a flat, eroded surface.Subsidence and fresh sedimentary layer deposition over the degraded surface result in a new set of horizontal layers that are parallel to each other but not to the older, tilted layer below.The contact between the older, inclined layer and the overlying horizontal layers results in an angular unconformity with evident angular discordance between the two sets of strata.

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large deposits of sediment at the mouths of rivers are called: question 38 options: barrier flats. barrier islands. bay-mouth bar. deltas. tombolos.

Answers

Deltas

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salt is a weak rock that can flow; therefore, it forms ______.

Answers

Salt is a weak rock that can flow; therefore, it forms salt domes or diapirs.

Salt is a Weak Rock: Salt is a type of sedimentary rock that is formed from the evaporation of seawater or the precipitation of dissolved salts in underground brine reservoirs.

Compared to other rocks like granite or limestone, salt is relatively soft and weak. It has a crystalline structure that allows its individual salt grains to move past each other under pressure, giving it a characteristic plastic or ductile behavior.

This property makes salt capable of flowing over geologic timescales, especially under the influence of pressure and temperature.

Flowing Salt Forms Salt Domes or Diapirs: Due to its plastic behavior, salt can flow and deform over long periods of time, often in response to tectonic forces or the weight of overlying sediments.

When thick layers of sedimentary rocks are deposited on top of salt layers, the weight of the overlying rocks causes the underlying salt to flow and move upwards through fractures or weaknesses in the overlying rocks. This upward movement of salt is known as salt doming or salt diapirism.

Formation of Salt Domes: Salt domes are formed when the upward movement of salt creates a rounded or dome-shaped structure in the overlying rocks.

The salt pushes and deforms the sedimentary layers above it, causing them to arch and form a distinctive dome-like shape. Salt domes can vary in size from small structures to massive features that can extend for kilometers in diameter.

They are typically found in areas with thick salt deposits, such as the Gulf of Mexico, the Persian Gulf, and other salt basins around the world.

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Salt is a weak rock that can flow; therefore, it forms salt domes or salt structures over time.

Salt is a type of sedimentary rock that can be deformed and flow over geological time scales, which can lead to the formation of salt domes or structures. Salt deposits often occur in thick layers in sedimentary basins, and over time they can be buried by additional layers of sediment. Under the pressure of the overlying sediments, the salt can begin to flow and deform, much like a viscous fluid. As the salt moves, it can form dome-shaped structures that rise up through the overlying rock layers. These structures can vary in size and shape, and can sometimes contain deposits of oil or gas trapped within them. Salt domes can also be associated with geological hazards, such as sinkholes or subsidence, as the movement of the salt can cause the overlying rock layers to collapse or shift. Overall, salt structures are important features of the geology of many sedimentary basins and can have significant economic and environmental implications.

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The term Mesozoic refers to life forms intermediate in complexity between early and much later, more modern-looking life forms.A. TrueB. False

Answers

The given statement, "The term Mesozoic refers to life forms intermediate in complexity between early and much later, more modern-looking life forms." is true as The Mesozoic had a fluctuating climate with phases of warming and cooling.

The Mesozoic (252–66 million years ago), well known as the time of the dinosaurs, is defined as "middle life." The Triassic, Jurassic, and Cretaceous Periods are all included in this period. It came to an end when a huge meteorite struck Earth, causing a global extinction that wiped out the dinosaurs and up to 80% of all life.

The Permian-Triassic extinction event marked the start of the Mesozoic era, which ended with the Cretaceous-Paleogene extinction event, which claimed the non-avian dinosaurs, pterosaurs, mosasaurs, and plesiosaurs as its victims. The Permian-Triassic extinction event was the largest well-documented mass extinction in Earth's history. During this time, the supercontinent Pangaea gradually split into two different land masses that would later move into their current locations.

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The statement "The term Mesozoic refers to life forms intermediate in complexity between early and much later, more modern-looking life forms" is False. The Mesozoic Era is a geological time period that occurred approximately 252 to 66 million years ago, characterized by the presence of dinosaurs and other distinct flora and fauna, not specifically the complexity of life forms.

The Mesozoic Era, also known as the Age of Reptiles, was a geological era that spanned from about 252 to 66 million years ago. It is divided into three major periods: the Triassic, Jurassic, and Cretaceous. During the Mesozoic Era, the supercontinent Pangaea began to break apart, leading to the formation of new land masses and ocean basins. The era is known for the evolution and dominance of dinosaurs, as well as the emergence of birds, mammals, and flowering plants. The end of the Mesozoic Era was marked by a mass extinction event that wiped out the dinosaurs and many other species, paving the way for the rise of mammals and the modern world as we know it.

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