why is it so hard for a living tree to ignite, and how many conditions in the atmosphere influence this?

Answers

Answer 1
A living tree is difficult to ignite because of its high moisture content, which makes it difficult to reach the temperature required for combustion. The moisture in the tree regulates its temperature and keeps it from drying out, which keeps it from igniting. Furthermore, because living trees have a low surface-to-volume ratio, they have less exposed surface area to heat up and potentially ignite.

Temperature, humidity, wind, and precipitation are all atmospheric conditions that can influence a tree's ignition. High temperatures can increase the likelihood of ignition by drying out the tree and making it more flammable. Low humidity can also contribute to a tree's drying out and increase the likelihood of fire. Wind can fan the flames and spread the fire, whereas rain can reduce the risk of ignition by increasing the moisture content of the tree and surrounding vegetation.

The type and condition of the vegetation surrounding the tree, the presence of ignition sources such as lightning or human activity, and the terrain and topography of the surrounding area are all factors that can influence a tree's ignition. While living trees are less likely to catch fire than dead or dry vegetation, they can still be affected by wildfires and other natural disasters, which can have serious consequences for ecosystems and communities.




Answer 2

A living tree is difficult to ignite due to its high moisture content and several atmospheric conditions that influence this resistance. Moisture within a tree acts as a heat sink, absorbing energy and preventing combustion. As a living tree continuously takes up water from its roots, the cells remain hydrated and less prone to catching fire.


Atmospheric conditions play a significant role in a tree's flammability. These conditions include humidity, temperature, and wind. High humidity levels increase the moisture content in the air, which helps keep the tree's cells hydrated and less susceptible to ignition. Conversely, low humidity can cause a tree to lose moisture, making it more vulnerable to fire.

Temperature also impacts the flammability of a living tree. Higher temperatures increase the likelihood of ignition by providing more energy to initiate combustion. However, a living tree will still be more resistant to fire than dead or dry wood at the same temperature due to its moisture content.

Wind is another atmospheric factor influencing a tree's vulnerability to fire. Strong winds can spread fire quickly and reduce the moisture content of the tree by increasing evaporation rates. Calm wind conditions, on the other hand, are less likely to contribute to a tree's ignition.

In summary, a living tree is harder to ignite due to its high moisture content, and atmospheric conditions like humidity, temperature, and wind significantly influence this resistance.

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Related Questions

International co-operation is the only way to protect rainforests in the future. Do you agree with this statement?​

Answers

Title: International Cooperation in Protecting RainforestsRainforests are critical ecosystems that provide numerous benefits, including regulating the Earth's climate, supporting biodiversity, and providing resources for human use. However, they are increasingly threatened by deforestation, climate change, and other human activities. Protecting these valuable ecosystems requires a coordinated and collaborative effort at the global level. In this essay, I will discuss the importance of international cooperation in protecting rainforests and whether it is the only way to do so.The Importance of International Cooperation :International cooperation can play a vital role in protecting rainforests in the future. Many countries share rainforest regions, and coordinated efforts are necessary to address the drivers of deforestation and ensure sustainable forest management practices. Collaborative initiatives, such as the United Nations' Reducing Emissions from Deforestation and Forest Degradation (REDD+) program, aim to reduce emissions from deforestation and forest degradation and promote sustainable forest management practices. The program provides financial incentives for developing countries to reduce emissions from deforestation and forest degradation.Furthermore, international cooperation can facilitate knowledge-sharing and capacity-building, promoting best practices in forest management, and ensuring sustainable development. It can also help to raise awareness of the importance of rainforests globally, mobilizing public and private stakeholders to take action to protect these valuable ecosystems.Is International Cooperation the Only Way?While international cooperation is necessary, it may not be sufficient to protect rainforests in the future. Local communities and indigenous peoples who depend on rainforests for their livelihoods and cultural identity must also be included in efforts to protect these ecosystems. They possess traditional knowledge and practices that can contribute to sustainable forest management and must be involved in decision-making processes.Additionally, effective policies and regulations must be put in place at the national and local levels to address the drivers of deforestation, such as agricultural expansion, logging, and mining. Governments must enforce laws and regulations to protect rainforests and prevent illegal activities that contribute to deforestation. Private sector actors must also commit to sustainable practices and avoid activities that contribute to deforestation.COUNTER CLAIM :

international cooperation is an essential component of efforts to protect rainforests in the future. However, it must be coupled with local involvement, effective policies, and regulations to address the drivers of deforestation and ensure sustainable forest management practices. Protecting rainforests requires a multi-stakeholder approach, and all actors must work together to protect these valuable ecosystems for future generations.

it has been found that surface winds in a hurricane can be accurately estimated by: group of answer choices measuring the winds aloft at the flight level of a hurricane hunting aircraft and then taking 90% of that number. measuring them with instruments onboard a very low-flying hurricane hunter aircraft.

Answers

Surface winds in a hurricane can be accurately estimated by measuring the winds aloft at the flight level of a hurricane hunting aircraft and then taking 90% of that number. This method allows for a more precise estimate of the wind speeds at the surface.


Hurricane hunter aircraft are equipped with sophisticated instruments that measure various meteorological parameters, including wind speeds, at different altitudes. By flying at a safe altitude, they can gather valuable data on the structure and intensity of the hurricane. These measurements help meteorologists understand the storm's behavior and forecast its future development more accurately.

When the hurricane hunter aircraft measures the wind speeds at its flight level, researchers can apply a conversion factor, which is typically around 90%, to estimate the actual wind speeds at the surface. This conversion is based on the understanding that wind speeds decrease as you get closer to the surface due to the friction between the air and the ground.

This method of estimating surface winds has been proven to be quite accurate and is widely used by meteorologists and hurricane forecasters. It provides vital information for public safety and helps authorities make informed decisions about evacuations and other emergency measures during a hurricane event.

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the satellite whose surface is characterized by a smooth icy crust with a complex network of cracks is:

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The satellite whose surface is characterized by a smooth icy crust with a complex network of cracks is Europa, one of Jupiter's moons.

Europa is believed to have a subsurface ocean beneath its icy crust, which has made it an intriguing target for astrobiological research. The cracks on Europa's surface are thought to be caused by the gravitational interactions between Europa and Jupiter, as well as tidal forces within the moon itself.

The smooth icy surface suggests that the moon's surface is relatively young, with ongoing geologic activity that could be linked to the underlying ocean.

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although excavations at olduvai gorge have yielded abundant archaeological traces, no hominin remains have ever been found there. group of answer choices true false

Answers

The statement "Although excavations at Olduvai Gorge have yielded abundant archaeological traces, no hominin remains have ever been found there" is true.

Olduvai Gorge is a steep-sided ravine in Tanzania's Great Rift Valley. It is one of the world's most renowned prehistoric sites and has yielded a wealth of information about early humans, plants, and animals.

The site is often known as the "Cradle of Mankind." Olduvai Gorge is an essential prehistoric archaeological site.

It is critical to human evolutionary studies because it has one of the most extensive records of human evolution. It is also where Homo habilis was discovered for the first time. This hominid species was believed to be the first to use stone tools.

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(q011) drilling mud group of answer choices is used to cool the drill bit and to flush rock cuttings up and out of the drill hole. is created when the drill bit scratches and gouges out the rock. is a slurry of water and sand. decreases the surface tension of the oil in the drill hole and can sometimes cause gushers.

Answers

The FALSE statement decreases the surface tension of the oil in the drill hole and can sometimes cause gushers.

What is drilling mud?

Drilling mud is a specialized fluid that is pumped down the drill pipe and into the wellbore during drilling operations. Its main purpose is to cool the drill bit, lubricate the drill string, and balance the pressure in the wellbore.

Drilling mud is typically made up of water or oil mixed with various chemicals, such as clays and polymers, to provide the desired properties for drilling. It can also contain solid particles, such as barite, to increase its density and weight.

Drilling mud is pumped down the center of an oil-drilling pipe, is used to cool the drill bit and to flush rock cuttings up and out of the drill hole, and is a slurry of water and clay. However, it does not decrease the surface tension of the oil in the drill hole and can never cause gushers.

Complete question:

Identify the FALSE statement. Drilling mud

Choose one:

A. is pumped down the center of an oil-drilling pipe.

B. decreases the surface tension of the oil in the drill hole and can sometimes cause gushers.

C. is used to cool the drill bit and to flush rock cuttings up and out of the drill hole.

D. is a slurry of water and clay.

The true answer is B.

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Explain how the data above support the hypothesis that a destabilized polar jet stream caused the cold spell seen in the midwest.

Answers

The evidence put forth refutes the claim that the cold snap experienced in the Midwest was caused by a destabilised polar jet stream.

How has the polar jet stream been disrupted by climate change?

The alteration warms higher latitudes and lessens the temperature disparity between the arctic regions and the warmer mid-latitude zones. Polar air is brought further south as a result of the weakening and destabilisation of the polar jet stream, which causes it to dip into lower latitudes.

How are the polar jet stream and polar vortex related?

The polar front, or polar jet stream, is located at the lowest edge of the vortex. The northeastern regions of North America are frequently struck the hardest by polar vortex weather because the polar jet stream flows from west to east.

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HELP NOWW!!!! PLEASEEE

Answers

Answer:

I think it would be the first one.

Explanation: Hope this helps good luck bae! c;

which is not a true statement about lakes?
a. Most lakes have existed for more than 10,000 years.
b. Most lakes affect the nearby climate conditions in the same area. c. Most lakes contain freshwater. d. Most lakes are impacted by sedimentation from streams.

Answers

The statement that is not true about lakes is that "Most lakes affect the nearby climate conditions in the same area.

"While lakes can have some influence on nearby climate conditions, this is not a universal characteristic of lakes. Factors such as the size, depth, and location of a lake can all impact its ability to affect climate conditions.Lakes are large bodies of water that are surrounded by land.

They can be found all over the world and come in a variety of sizes and shapes. Most lakes contain freshwater, which is an essential resource for humans and wildlife. Many lakes have existed for thousands of years and play an important role in local ecosystems.

Some lakes are impacted by sedimentation from streams, which can cause problems such as eutrophication. This occurs when excessive nutrients, such as phosphorus and nitrogen, build up in a lake and cause excessive growth of algae and other aquatic plants.

As these organisms die and decompose, they consume oxygen and create a dead zone that can harm fish and other aquatic life.

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Coal is a very important resource in South Asia. Which country has the world’s fourth-largest coal reserves?
A.
India
B.
the Philippines
C.
Iran
D.
Bangladesh


Please select the best answer from the choices provided

A
B
C
D

Answers

Answer:

A

Explanation:

Answer: A. India

Explanation: Coal is the most important and abundant fossil fuel in India. It accounts for 55% of the country's energy need. The country's industrial heritage was built upon indigenous coal.

HELPPPP ASAPPPP!!!!!

Answers

Answer:

Explanation:

Hello Im here to help the answer is E my dear friend

what are midlatitude cyclones? what are midlatitude cyclones? stationary low-pressure cells that move in the band of the easterlies migrating low-pressure cells that move in the band of the westerlies stationary low-pressure cells that move in the band of the westerlies migrating low-pressure cells that move in the band of the easterlies

Answers

Answer:

Midlatitude cyclones, also known as extratropical cyclones or wave cyclones, are migratory low-pressure weather systems that occur in the middle latitudes (around 30 to 60 degrees latitude) of both the Northern and Southern Hemispheres. They are characterized by a rotating counterclockwise circulation (in the Northern Hemisphere) and are often associated with fronts, which are boundaries between different air masses. Midlatitude cyclones are responsible for much of the day-to-day weather variability in these regions, bringing rain, snow, and wind to many areas. Therefore, the correct answer is migrating low-pressure cells that move in the band of the westerlies.

Midlatitude cyclones are migrating low-pressure cells that move in the band of the westerlies

Midlatitude cyclones are migrating low-pressure cells that move in the band of the westerlies. They are also known as extratropical cyclones or wave cyclones. They form in the middle latitudes, between the polar and tropical regions, and are characterized by their counter-clockwise rotation in the Northern Hemisphere and clockwise rotation in the Southern Hemisphere.Midlatitude cyclones usually form along the boundaries between warm and cold air masses and can cause a variety of weather conditions, including precipitation, strong winds, and temperature changes. They play a crucial role in the Earth's climate system by redistributing heat and moisture from the tropics to higher latitudes.

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Any name suggestions for the Wanderer in Genshin Impact?​

Answers

Answer:

i think zukade!

Explanation:

i think it suits him!

I would say kodomowa kazeno which means children of wind

the correct labeling from the air lyer closest to earth's surface to the one farthest from the surface would be

Answers

The correct labeling of the atmospheric layers closest to Earth's surface to the one farthest from the surface is: Troposphere, Stratosphere, Mesosphere, Thermosphere, and Exosphere.

The Troposphere is the closest layer to the Earth's surface and is the layer in which all weather occurs. It extends from the Earth's surface to an altitude of about 7 miles (11 km). The Stratosphere is the second layer of the atmosphere and extends from the tropopause to an altitude of about 30 miles (50 km). Here, ozone absorbs ultraviolet radiation from the Sun, preventing it from reaching the Earth's surface.

The Mesosphere extends from the stratopause to an altitude of about 53 miles (85 km). This is the coldest layer of the atmosphere, with temperatures dropping to -90°C. The Thermosphere extends from the mesopause to an altitude of about 310 miles (500 km). This is the layer where the aurora borealis occurs.

The Exosphere is the outermost layer of the atmosphere and extends from the thermospause to an altitude of about 6,200 miles (10,000 km). This is the region where the Earth's atmosphere merges with space.

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In which language category do the languages
of the Guinea coast peoples fit?

Answers

Answer:

French

Explanation:

They speak french as their main language.

Which are characteristics of Antarctica?

Select all that apply.

Responses

It is located near the equator.
It is mostly covered by an ice sheet.
Its landmass includes an archipelago.
Its landscape is about 98% bare rock.

Answers

Answer:

It is mostly covered by an ice sheet.

Explanation:

(q023) a cumulonimbus cloud group of answer choices is filled with updrafts, not downdrafts of air. may extend to the top of the stratosphere. produces rain. has a sheet-like or layered shape.

Answers

The cumulonimbus cloud group of answer choices that matches the given description is a "stratiform" cumulonimbus cloud.

These clouds are characterized by their layered or sheet-like shape and are filled with updrafts of air. They can extend to the top of the stratosphere and produce rain.

A cumulonimbus cloud is a dense, towering vertical cloud characterized by its large size, vigorous convection, and flat base. The clouds are typically accompanied by heavy precipitation, thunderstorms, and lightning. A cumulonimbus cloud produces rain.

Cumulonimbus clouds are formed by a combination of atmospheric moisture, heat, and rising air. As air rises, it cools, causing water vapor to condense into water droplets or ice crystals, which forms a cloud. The cloud grows as more moisture and heat are added to the system.

Eventually, the cloud reaches the point where it can no longer hold the weight of its own moisture, and it begins to rain.

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the increasing need for irrigation of crops is one of the reasons for the growing need for fresh water use. how could these demands be reduced?

Answers

By cultivating plants immune to drought. The overabundance of nutrients introduced to a freshwater environment is known as eutrophication. This can reduce the increasing need for irrigation.

The process of eutrophication involves the gradual enrichment of a body of water, or portions of it, with minerals and nutrients, especially nitrogen and phosphorus. It can also be described as a rise in phytoplankton productivity brought on by nutrients.

The capacity of a plant to continue producing biomass under arid or drought circumstances is known as drought tolerance. Some plants have defense systems like desiccation tolerance, detoxification, or xylem embolism repair that enable them to survive in dry environments.

Dry-climate plants have evolved xeromorphic characteristics to minimize transpiration when drought stress is present. Under drought stress circumstances, leaf shedding as well as a reduction in leaf quantity, leaf size, and branching can also reduce transpiration.

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what statement accurately describes the analysis phase of the waterfall model? group of answer choices

Answers

In the Waterfall Model of software development, the Analysis phase is the first phase in which the project requirements are defined, documented, and analyzed. The quotient operator produces an interger while the division operator produces a float. In this case option A is correct

During this phase, the project team works closely with stakeholders to gather and define the requirements for the software system.

The analysis phase involves the following activities:

Gathering and documenting the requirements of the software system

Analyzing the requirements to ensure they are complete, unambiguous, and consistent

Defining the overall system architecture and design

Preparing the project plan and schedule

The output of the analysis phase is typically a requirements document, which serves as a foundation for the subsequent phases of the Waterfall Model.

Therefore, the statement that accurately describes the analysis phase of the Waterfall Model is that it involves defining and analyzing the requirements of the software system in collaboration with stakeholders, and producing a requirements document as its output.

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what statement accurately describes the analysis phase of the waterfall model? group of answer choices

The quotient operator produces an interger while the division operator produces a float

The quotient operator produces an interger while the division operator produces a swim

a cold front, stretching across several states, would be an example of what scale of atmospheric motion? group of answer choices global scale mesoscale microscale synoptic scale

Answers

A cold front, stretching across several states, is an example of synoptic-scale atmospheric motion.

Synoptic-scale refers to weather patterns and atmospheric motions that occur on a regional scale, typically covering an area of several hundred to a few thousand kilometers.

Synoptic-scale weather systems, such as cold fronts, are the result of interactions between large-scale atmospheric features, such as high and low-pressure systems, and the Earth's rotation.

In contrast, microscale atmospheric motion refers to very small-scale weather patterns, typically less than a few kilometers in size, such as the turbulence caused by a gust of wind.

Mesoscale atmospheric motion refers to weather patterns that occur on a larger scale than microscale but smaller than synoptic-scale, such as thunderstorms or sea breezes.

Global scale atmospheric motion refers to weather patterns and atmospheric motions that occur on a global scale, such as the jet stream or the movement of tropical cyclones.

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Gore argues that we need to focus not only on individual actions, but also on changing the laws and policies to protect the earth. Do you agree or disagree with him? Why?

Answers

Answer: Yes, although changing certain law can lead to the depression of some companies, the better option would to change the laws and policies and individual actions.

Explanation: Good Luck :)

what is a cyclone? what is a cyclone? a center of high atmospheric pressure a center of high atmospheric temperature a center of low atmospheric temperature a center of low atmospheric pressure

Answers

A cyclone is a center of low atmospheric pressure. It is a weather phenomenon that is characterized by a system of winds that rotates around a center of low pressure.

Cyclones are typically associated with storms, heavy rainfall, and strong winds, and they can occur in various parts of the world, including tropical areas and mid-latitudes. The opposite of a cyclone is an anticyclone, which is a center of high atmospheric pressure

A cyclone is a weather system characterized by low atmospheric pressure, winds that spiral inward, and an area of the Earth's surface covered by strong winds and thunderstorms.

When the winds rotate around a stable center, a cyclone becomes a more organized system. Cyclones are referred to by various names depending on the region they occur in, including hurricanes in the Atlantic and eastern Pacific oceans, typhoons in the western Pacific, and tropical cyclones in the Indian Ocean region.

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The correct option is “The basalt formed by partial melting of peridotite, then the liquid basalt portion erupted, taking fragments of unmelted mantle peridotite with it.

The basalt lava formed deep in the lower mantle, and as it erupted it passed through the upper mantle, incorporating samples of peridotite as it rose.

The xenoliths in this sample are providing evidence of the composition of the mantle because they are fragments of unmelted mantle rock that were brought to the surface by volcanic activity.

Specifically, the most likely scenario based on the given answer choices is that the basalt formed by partial melting of peridotite, then the liquid basalt portion erupted, taking fragments of unmelted mantle peridotite with it. Peridotite is a rock type that is believed to be a major constituent of the Earth's mantle, so the composition of the xenoliths can be used to infer the composition of the mantle. By studying the chemical and mineralogical composition of the xenoliths, scientists can gain insights into the temperature, pressure, and other conditions that exist deep within the Earth.

The study of xenoliths provides scientists with a window into the Earth's mantle, which is otherwise inaccessible. The composition of the mantle can be inferred from the composition of xenoliths. Therefore, the xenoliths in this sample are providing evidence of the composition of the mantle.

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solar flare
how would it appear on x-ray

Answers

Solar flares are abrupt bursts of brilliant light that penetrate the sun's atmosphere. In this instance, it may appear as a white light inside an x-ray image.

How do solar flares look in X-ray images?

Flares emit radiation that spans the electromagnetic spectrum, albeit at varying intensities. They can be quite brilliant at specific spectral lines but are not very strong in visible light. They typically emit synchrotron emission in radio and bremsstrahlung in X-rays.

The entangled magnetic field lines snap when they are overtwisted, much like an elastic band which snaps when overtwisted. A solar flare emits energy that is more than one million times more powerful than an eruption of an Earth volcano.

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Give 1-2 examples of the way cultures spread and 1-2 examples of the way cultures develop.

Please be accurate! Thank you very much!

Answers

Cultures spread as they interact with eachother, and cultures develop with all the ways of their arts,beliefs and population

water has been cycling on this planet for approximately 3.8 billion years. when earth was formed 4.6 billion years ago, water was not present. at some point, most likely due to the action of volcanoes, hydrogen and oxygen gases were released from molten rock forming water vapor and the first clouds in the atmosphere. what was the next step that had to occur in order for the water cycle to begin? a. clouds would have precipitated cooling the surface of earth. b. lightning from the clouds would have fixed nitrogen in the atmosphere. c. clouds would have dissipated due to the extreme heat of the earth's surface. d. some of the oxygen in the atmosphere would interact with uv radiation to form ozone.

Answers

The next step that had to occur in order for the water cycle to begin after the formation of the first clouds was for the clouds to precipitate and cool the surface of the Earth.

As the water vapor in the atmosphere cooled, it condensed into liquid droplets, forming clouds. These clouds then released their moisture in the form of precipitation, such as rain, which fell to the Earth's surface. This precipitation cooled the surface of the Earth and allowed the water cycle to begin.

The water cycle refers to the constant circulation of water around the earth's surface, which includes the earth's surface and atmosphere, as well as between the ground and the sky. The water cycle describes the complete journey of water, which is continually being cycled from the atmosphere to the earth's surface and back again.

Option B, lightning from the clouds fixing nitrogen in the atmosphere, is a process that can occur in the atmosphere, but it is not a necessary step for the water cycle to begin.

Option C, clouds dissipating due to the extreme heat of the Earth's surface, is not a necessary step for the water cycle to begin as the presence of clouds is what allows for the water cycle to begin in the first place.

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the tonga trench in the pacific ocean is 36,000 feet deep. assuming that sea water has an average density of 1.04 g/cm3, calculate the absolute (total) pressure at the bottom of the trench in atmospheres. (1.00 in

Answers

The absolute pressure at the bottom of the Tonga Trench is approximately 118.8 atmospheres.

The absolute pressure at the bottom of the Tonga Trench can be calculated using the following formula:

P = ρgh + Patm

Where:

P = absolute pressure (in atmospheres)

ρ = density of seawater (1.04 g/cm3)

g = acceleration due to gravity (980 cm/s2)

h = depth of the trench (36,000 feet or 10,973 meters)

Patm = atmospheric pressure at sea level (1 atm or 1.00)

First, we need to convert the depth of the trench from feet to meters:

36,000 feet x 0.3048 meters/foot = 10,973 meters

Now we can plug in the values and solve for P:

P = (1.04 g/cm3) x (980 cm/s2) x (10,973 m) / (1 atm) + 1.00 atm

P = 118.8 atm

Therefore, the absolute pressure at the bottom of the Tonga Trench is approximately 118.8 atmospheres.

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which of the following is an example of a common resource that could be affected by the tragedy of the commons? select all that apply: oceans and lakes private parks forests food

Answers

Answer: forests private parks

Explanation:

brain

"Oceans and lakes" are an example of common resources that could be affected by the tragedy of the commons. The correct option is a) Oceans and lakes.

The tragedy of the commons is a situation that arises when a group of people use a common resource in such a way that it is depleted or degraded to the point that it is no longer useful. This occurs because each person acting in their own self-interest may use more of the resource than is sustainable, leading to overuse and depletion of the resource.

Oceans and lakes are common resources that are often overused and degraded due to human activities such as overfishing, pollution, and climate change. Private parks and forests are less likely to be affected by the tragedy of the commons because they are owned by individuals or organizations who have a stake in their preservation and are therefore more likely to manage them sustainably.

Food is not a common resource in the sense that it is not a shared resource that can be depleted or degraded by overuse. However, the production and distribution of food can have negative impacts on the environment and other common resources such as water and land.

If the tragedy of the commons is to be avoided, it is important to establish rules and regulations that limit the use of common resources and encourage sustainable management. This can be done through the use of incentives such as taxes and subsidies, as well as the establishment of property rights that assign ownership and responsibility for the management of common resources.

By taking action to prevent the tragedy of the commons, we can ensure that our shared resources are used sustainably and for the benefit of all.

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complete question

which of the following is an example of a common resource that could be affected by the tragedy of the commons? select all that apply: a) oceans and lakes b) private parks c) forests d) food

what can you learn about past environments from sediments and sedimentary rocks? group of answer choices a tiny amount, primarily whether the land was green or brown. a tiny amount, primarily whether they were deposited in the ocean or on land. a tiny amount, primarily whether rivers or waves made the sediment. a huge amount, including whether the environment was land or water, whether it was warm enough for crocodiles or cold enough for ice, and much more. nothing.

Answers

Through sediments and sedimentary rocks, you may learn a great deal about former habitats, such as whether they were land- or water-based, if they were warm enough for crocodiles or cold enough for ice, and much more. Option 4 is Correct.

Sedimentary rocks provide information on previous surface-level climates. As a result, they serve as the main witnesses to historical changes in climate, life, and significant occurrences on Earth's surface. A certain sort of sediment is deposited in each type of habitat as a result of specific processes that take place there.

Sedimentary rocks are a typical place to find fossils. Fossils offer significant information, including proof of former life forms on environments and how life has changed throughout the course of the planet's history. Option 4 is Correct.

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Correct Question:

what can you learn about past environments from sediments and sedimentary rocks? group of answer choices

1. a tiny amount, primarily whether the land was green or brown.

2. a tiny amount, primarily whether they were deposited in the ocean or on land.

3. a tiny amount, primarily whether rivers or waves made the sediment.

4. a huge amount, including whether the environment was land or water, whether it was warm enough for crocodiles or cold enough for ice, and much more. nothing.

which of the following is the approximate projected rate of change in renewable energy consumption from 2010-2040 ? responses 4.33 quadrillion btus per year 4.33 quadrillion b t us per year 2.33 quadrillion btus per year 2.33 quadrillion b t us per year 2.00 quadrillion btus per year 2.00 quadrillion b t us per year 0.733 quadrillion btus per year

Answers

Option B, According to the US Energy Information Administration's 2016 International Energy Outlook Study, the estimated rate of change in green energy consumption from 2010 to 2040 is 2.33 quadrillion BTUs per year.

During this period, the use of green energy has increased by an average of 2.3% per year. Although fossil fuels will dominate the energy mix, the study predicts that renewable energy consumption will grow faster than non-renewable energy in the coming decades.

Technological breakthroughs, falling costs, supportive policies, and growing public awareness of the need to address climate change are driving the global transition to renewable energy.

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The question is -

Which of the following is the approximate projected rate of change in renewable energy consumption from 2010-2040?

A). 4.334.33 quadrillion BTUsBTUs per year

B). 2.332.33 quadrillion BTUsBTUs per year

C). 2.002.00 quadrillion BTUsBTUs per year

D). 0.7330.733 quadrillion BTUsBTUs per year

what are two reasons why a coastal community would not choose beach nourishment as a good solution to the city's beach erosion problem brainly

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Two reasons why a coastal community might not choose beach nourishment as a solution to their beach erosion problem are the high costs involved and potential environmental impacts. 1) beach nourishment can be quite expensive
2) beach nourishment can have negative environmental consequences


Firstly, beach nourishment can be quite expensive. This method involves adding large amounts of sand to the eroded beach, which usually requires transportation of sand from other locations. The costs of obtaining the sand, transporting it, and redistributing it on the beach can be significant, especially for communities with limited budgets.

Furthermore, beach nourishment is not a permanent solution, as the added sand may eventually be eroded away, necessitating repeat nourishment efforts. This ongoing expense may be unfeasible for some communities.

Secondly, beach nourishment can have negative environmental consequences. The process of extracting and transporting sand can disturb local ecosystems, as it may involve the removal of sand from other beaches, dunes, or offshore sources. This can result in habitat destruction, reduced biodiversity, and other detrimental impacts on the environment.

Additionally, the introduction of new sand to an eroded beach may alter the natural sediment composition and negatively affect local species, such as plants, birds, and marine life that rely on specific sand types or conditions.

In conclusion, coastal communities may avoid beach nourishment as a solution to beach erosion due to the high costs and potential environmental impacts associated with this method. Alternatives such as coastal planning, dune restoration, or the installation of erosion-control structures might be considered instead, depending on the community's specific needs and resources.

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which of the following brought the muslim empire into contact with ideas from around the world

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Trade, conquest, and the translation movement during the Abbasid period brought the Muslim Empire into contact with ideas from around the world.

Explain each of the factors in brief?Trade: The Muslim Empire was a major center of trade, with merchants from all over the world coming to its markets to buy and sell goods. Through trade, the empire was exposed to new products, technologies, and ideas.Conquest: The Muslim Empire expanded rapidly in its early years, conquering territories from Spain to India. In the process, it came into contact with diverse cultures and ideas, which it absorbed and synthesized into its own traditions.Translation movement: The Muslim Empire became a center of translation during the Abbasid period (8th-13th centuries), when scholars worked to translate works from Greek, Persian, and Indian into Arabic. This movement allowed the empire to access a wealth of knowledge from these cultures, which it then incorporated into its own intellectual traditions.

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