which is the number one weather related killer in the us

Answers

Answer 1

The answer is heat. It is the number 1 weather related killer in the U.S.


Related Questions

Which best describes a tsunami?

large powerful wave caused by an earthquake
when the waves hit the shore at an angle and transport sand
alternating rise and fall of the ocean
an irregular climate event caused by ocean currents in the Pacific Ocean

Answers

Answer:

a) large powerful wave caused by an earthquake

Explanation:

took the test

A tsunami is a large powerful wave caused by an earthquake.

What is a tsunami?

A tsunami is a powerful wave in a water body as a result of displacement of a large body of water. Causes of a tsunami are earthquakes and volcanic.

Effects of a tsunami includes:

floodswave impact on structures erosionfloating debris

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Could there be an edge of the Universe?

Answers

Answer:

As far as we know, universe is an infinite space with no limit. So there is a great possibility of existence of aliens, who knows? Maybe they already know us but G0v. decide to hid it from us...

Explanation:

A main absorber of ultraviolet radiation in the atmosphere is ________.

A) argon

B) neon

C) ozone

D) carbon dioxide

Answers

A main absorber of ultraviolet radiation in the atmosphere is ozone. Ozone is a gas that has three oxygen atoms combined into a single molecule (O3). The correct option is c.

It's typically produced in the atmosphere when sunlight reacts with nitrogen oxides and hydrocarbons, which are pollutants produced by human activity. In the atmosphere, ozone absorbs ultraviolet (UV) radiation from the sun, which is harmful to life on the planet by creating cancer, damage to crops, and other problems.A key absorber of ultraviolet radiation in the atmosphere is ozone. Ultraviolet (UV) radiation from the sun is absorbed by ozone in the Earth's stratosphere, which extends from about 10 to 50 kilometers above the surface, in a layer called the ozone layer, which absorbs most of the sun's harmful UV radiation before it reaches the Earth's surface. UV radiation has the ability to harm living organisms, including humans, by damaging their genetic material and causing cancer.

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Mt. Everest is 29,032 feet high. Air pressure at the top is 228mmHg. Assuming that the proportion of gases in air at that altitude is the same as at sea level, what is the partial pressure of oxygen at the top of Mt. Everest, rounded to the nearest whole number?
O 20mmHg O 46mmHg O 48mmHg
O 207mmHg
O 218mmHg
O 585mmHg O 606mmHg
O 627mmHg O 1297mmHg O 4777mmHg

Answers

The correct answer is C, The partial pressure of oxygen at the top of Mt. Everest is approximately 48 mmHg.

First, let's find the total atmospheric pressure at the top of Mt. Everest:

Total atmospheric pressure = Air pressure at the top of Mt. Everest = 228 mmHg

Now, we can calculate the partial pressure of oxygen:

The partial pressure of oxygen = Proportion of oxygen * Total atmospheric pressure

The proportion of oxygen = 20.9% (which can be written as 0.209)

Partial pressure of oxygen = 0.209 * 228 mmHg ≈ 47.6 mmHg

Rounding this value to the nearest whole number, the partial pressure of oxygen at the top of Mt. Everest is approximately 48 mmHg.

Everest, also known as Mount Everest, is the highest peak in the world and a majestic mountain located in the Himalayas. Standing at a towering height of 8,848.86 meters (29,031.7 feet), Everest is situated on the border between Nepal and China (Tibet Autonomous Region). It is a part of the greater Himalayan range and has captivated the imagination of mountaineers and adventurers for centuries.

The first successful ascent of Everest was achieved by Sir Edmund Hillary of New Zealand and Tenzing Norgay, a Sherpa of Nepal, in 1953. Since then, climbing Everest has become a significant goal for mountaineers from around the globe, but it remains an incredibly challenging and dangerous feat. The harsh weather conditions, extreme altitude, and treacherous terrain make it a daunting undertaking, requiring physical endurance, technical skills, and careful planning.

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Outline two physical features which influence the distribution of population in the Caribbean

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Areas with good weather conditions and easy mobility attract more people and are highly populated. Whereas, fewer people occupy places with extreme climatic conditions and restricted mobility.

Coastlines and mountains are two physical features influencing the population distribution in the Caribbean. People prefer to live along the coastlines and large rivers because they provide them with fertile soil, thus food production, pleasant climate, easy transportation of goods, easy traveling, good connectivity, etc.

On the contrary, the high mountains, or deserts don't offer good living conditions, so naturally, people avoid them. The climate is very harsh, some or most of the resources are scarce, and connectivity and movement are challenging.

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help i'm not good at this stuff.
I need to put them in order.

help i'm not good at this stuff.I need to put them in order.

Answers

1) the pressure of the hydrogen gas increases and the gas reaches extreme temperatures
2) bare nuclei collide with each other due to massive amounts of heat
3) the colliding neuclei fuse to form larger helium atoms having two protons and two neutrons
4) hydrogen atoms shed their electrons
This could be wrong so don't fully trust this answer

Which of the following provides the best definition of the term line segment? O A. The distance between two points O B. The straight path between two points O C. The point where two sides of a polygon meet • D. The angle measure between two rays

Answers

The best definition of a line segment is "A. The distance between two points."

A line segment is a fundamental concept in geometry and is defined as the portion of a line that connects two distinct points. It is important to note that a line segment has a definite length and is finite, unlike a line which extends indefinitely in both directions.

Option A, "The distance between two points," provides the most accurate and concise definition of a line segment. A line segment represents the shortest path between two points and is often represented by a line segment symbol (e.g., AB) or by labeling the two endpoints (e.g., segment AB).

Option B, "The straight path between two points," is a partial definition that describes a general characteristic of a line segment but does not explicitly mention its finite length.

Option C, "The point where two sides of a polygon meet," is incorrect as it describes the definition of a vertex, which refers to the point where two sides of a polygon intersect.

Option D, "The angle measure between two rays," is incorrect as it describes the definition of an angle, which is formed by two rays sharing a common endpoint.

In summary, the best definition of a line segment is that it represents the distance between two points, highlighting its finite length and connecting nature.

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then how high would the highest mountains be relative to the mean surface radius of the earth?

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The highest mountains on Earth are relative to the mean surface radius of the Earth.

The mean surface radius of the Earth is a measure of the average radius of the Earth's surface. It represents the average distance from the center of the Earth to the points on its surface. The highest mountains on Earth, such as Mount Everest and K2, are measured relative to this mean surface radius.

To determine how high the highest mountains are relative to the mean surface radius, we need to compare their elevation (height above sea level) with the radius of the Earth. Mount Everest, for example, has an elevation of approximately 8,848 meters (29,029 feet) above sea level. The mean surface radius of the Earth is approximately 6,371 kilometers (3,959 miles).

To calculate the height of Mount Everest relative to the mean surface radius, we can divide the elevation of Mount Everest by the mean surface radius of the Earth:

Height of Mount Everest relative to mean surface radius = 8,848 meters / 6,371,000 meters

This gives us a ratio that represents the fraction of the Earth's radius that Mount Everest's height represents. The result would be a very small fraction, indicating that the highest mountains are relatively small compared to the size of the Earth.

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why does temperature increase with altitude in the stratosphere

Answers

The pattern of temperature increase with height in the stratosphere is the result of solar heating as ultraviolet radiation in the wavelength range of 0.200 to 0.242 micrometre dissociates diatomic oxygen (O2). The resultant attachment of single oxygen atoms to O2 produces ozone (O3).

hope this helps!

To what extent is it possible to increase agricultural production by the use of modern methods?

Answers

Answer:

The agricultural system is now viewed as community of agro farms.

Explanation:

Modern agriculture started in the late 20th century due to the rising needs and demands of food, by the world population.  

The boost of food production has mainly due to scientific advances and newer technology. That includes the developments of varying crop yields along with the use of the pesticides and the fertilizers. The construction of large irrigation systems.

Some practices like the monocropping application of inorganic fertilizers and intensive tillage. Chemical pest control irrigation techniques. The agriculture is now viewed as an agroecosystem and is developed to produce and promote the viable farming communties

Explanation:

1) know the yield potential

2) utilize the best quality fertilizers

3) use best quality seeds

4) use water sprinkler for irrigation

7. Which of these words does NOT describe obsidian?
A. igneous
B. glass-like
C. large grained
D. extrusive

Answers

Answer:

C

Explanation:

Obsidian has a very small grain size

Resource and development class 10- reseaech base questions

Answers

Resource and development is an important subject for students in class 10, as it deals with the utilization and conservation of natural resources. Research-based questions in this subject can help students to develop critical thinking skills and improve their understanding of the subject.

Here are some research-based questions that students can explore:
1. What are the major natural resources in your region, and how are they utilized?
2. How has the use of technology impacted the utilization of natural resources?
3. What are the different methods of conservation of natural resources, and how effective are they?
4. What are the economic and environmental impacts of exploiting natural resources, and how can they be mitigated?
5. How can sustainable development be achieved, and what role do individuals and governments play in this process?
To answer these questions, students can conduct research using various sources, such as books, articles, and online resources. They can also gather data through surveys, interviews, and field trips.

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The distribution of alkaline and acidic soils in the United States is essentially divided by the___-inch annual precipitation isohyet. а) 60. b) 50. с) 20. d) 30. е) 40.

Answers

The distribution of alkaline and acidic soils in the United States is essentially divided by the d) 30-inch annual precipitation isohyet.

This means that regions that receive less than 30 inches of annual precipitation tend to have alkaline soils, while regions that receive more than 30 inches of annual precipitation tend to have acidic soils.

This distribution is due to several factors. For example, in regions with low precipitation, the soil tends to be alkaline because there is less water to dissolve and transport minerals, such as calcium and magnesium, which increase soil alkalinity. Conversely, in regions with high precipitation, the soil tends to be acidic because rainfall dissolves minerals such as aluminum and iron, which increase soil acidity.

Understanding the distribution of alkaline and acidic soils is important for agriculture, as different crops require different soil pH levels for optimal growth. For example, crops such as blueberries and potatoes prefer acidic soils, while crops such as wheat and barley prefer alkaline soils. By understanding the distribution of soil types, farmers can choose crops that are better suited to their region's soil pH levels, leading to more productive and sustainable agriculture.

Therefore, the correct answer is d) 30.

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Long-term patterns or trends of meteorological conditions in a given area refer to its _________. group of answer choices climate weather forecast variability

Answers

Answer:

Climate

Explanation:

Climate refers to the long-term patterns or trends of meteorological conditions in a specific place, such as temperature, precipitation, humidity, and wind. It is a measure of average conditions over a 30-year or longer timeframe. Several factors influence climate, including latitude, altitude, topography, ocean currents, and atmospheric circulation. These factors interact to provide a distinct climate for each region of the globe.

Weather, on the other hand, refers to the short-term atmospheric conditions that occur daily or hourly, such as temperature, humidity, precipitation, wind, and cloud cover. Weather can be highly variable and unpredictable, changing quickly over short intervals.

Predicting future weather conditions based on current data and computer models is called a forecast. Natural fluctuations in weather and climate patterns that occur throughout time, such as El Nio and La Nia occurrences, can cause changes in temperature, precipitation, and other meteorological variables.

how did confilcts in society lead to independence for spain colonies

Answers

The way that the conflict that was in the society led to the independence was that the Napoleonic war between Spain and Napoleon made the Spanish colonies to begin to question the allegiance that they had to Spain.

What is the meaning of independence?

This is the term that is used to refer to the freedom that nations would have to be able to have their own self rule, that is the nations that are being governed by other nations would have the liberty to be able to determine the ways that they would want to run the affairs of their own governments.

The Peninsular war that they had with France had made Napoleon to occupy Spain. This made the Creoles to begin to question the allegiance that they had to the Spanish people that were in their nations.

Hence the push and the fight for independence in all of these colonies of Spain.

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Identify three reasons why photo evidence alone may not provide the full picture of a natural disaster.

Answers

Can’t see all indirect and direct losses
May not be able to determine what natural disaster it is
Can’t see what is going on after the picture is taken

When traveling, judging the date of
arrival can be difficult for locations
A. close to the Date Line
B. near the Equator
C. near the Prime Meridian
D. during the summer

Answers

Answer:

The date can be hard for judging close to the Date Line.

Explanation:

The world is divided into meridians, which are also used for setting up time zones. The time zones are set up on every 15 degrees of longitude. All of them can be problematic when it comes to time if we travel between time zones. This is due to that if we travel between time zones we lose or gain hours, depending do we travel east or west.

One of these lines is problematic in particular because it is not just the time but also the date that can change by crossing it. That line is the Date Line. This line is located on the opposite side of the Prime Meridian, stretching north to south across the Pacific Ocean. This is the line when each new day starts, so not just the time but the dates start here as well. Basically, by going across this line, not just an hour that can be lost or gained, but a day can be lost or gained as well.

what is a climatologist?

Answers

Answer:

A climatologist studies weather patterns over a period of time. Their work is similar to that of meteorologists but focuses on a much longer timescale, studying trends over months, years or even centuries.

Explanation:

basically someone who studies weather patterns in one area for a while, aka climate

Answer:

Climatology is the study of the atmosphere and weather patterns over time. This field of science focuses on recording and analyzing weather patterns throughout the world and understanding the atmospheric conditions that cause them. ... Scientists who specialize in this field are called climatologists.

Calculate What is the diver's gravitational
potential energy just before the dive?

Answers

The diver's gravitational potential energy just before the dive is 0 Joules.

Given,

Mass = 80kg

Height = 10m

Gravitational potential energy= mgh

Gravitational potential energy = 80×9.8×0

Gravitational potential energy = 0 Joules.

Gravitational ability strength is the strength possessed or acquired through an item because of exchange in its position when it's far present in a gravitational area. In easy terms, it can be stated that gravitational capability strength is an energy that is related to gravitational pressure or to gravity.

Gravitational power or gravitational potential energy is the ability of electricity a huge object has when it comes to another large item because of gravity. it's far the potential electricity associated with the gravitational field, that's released whilst the gadgets fall towards each different.

Disclaimer: your question is incomplete, please see below for the complete question.

An 80 kg diver jumps from a 10 m high platform. What is the gravitational potential energy of the diver right before they jump (top of platform)

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This layer of the atmosphere is known for having temperatures as low as -90C. (A Mesosphere (B Thermosphere (C Ionosphere (D Exosphere

Answers

Answer:

A. Mesosphere

Explanation:

Describe or define natural hazards and give at least 3 examples.

Answers

Answer:

A natural disaster is a major adverse event resulting from natural processes of the Earth; examples include firestorms, duststorms, floods, hurricanes, tornadoes, volcanic eruptions, earthquakes, tsunamis, storms, and other geologic processes.

Answer:

A natural hazard is an event in the environment that occurs naturally that could cause harm to humans, economic assets or environment.

Explanation:

Natural hazards can be categorized into 3 types on the basis of their origin on earth.

1. Geological hazards : Earthquakes, Tsunami

2. Climatic hazards : Cyclones, Droughts

3. Biological hazards : Epidemics, Extinction of flora or fauna on a large scale

what features are abundant on callisto and ganymede and almost absent on europa and io? a. volcanoes b. markings that show the surface is made of ice c. impact craters d. lakes and pools of liquid ammonia e. rings

Answers

The features that are abundant on Callisto and Ganymede and almost absent on Europa and Io are impact craters. Option C

What features are abundant on callisto and ganymede and almost absent on europa and io?

Callisto and Ganymede have heavily cratered surfaces due to their weak geological activity and lack of erosion. Europa and Io, on the other hand, have active geological processes that erase the impact craters.

Both Callisto and Ganymede are heavily cratered and have ancient, heavily pockmarked surfaces, while Europa and Io have more active surfaces with fewer impact craters.

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How does U.S. Foreign policy evolve in the post-WWI era?

Answers

Answer:

What ensued was a radical shift in U.S. foreign policy, which promoted a stance of isolationism that would last until World War II. Warren Harding won the 1920 presidential election on the promise of staying out of global affairs, and by arguing that the United States needed normalcy and a focus on internal problems.

Canada should increase the number of immigrant acceptances?

Answers

Answer:

Yes I think they should

South
hottest crustal temperature
surements would most likely
Found at location

Southhottest crustal temperaturesurements would most likelyFound at location

Answers

The place that would have the hottest crustal temperature would most likely be location 3. C.

Why would the ocean ridge be the hottest location?

The ocean ridge is a location in the Atlantic ocean where the seafloor spreads as a result of there being a small distance between the mantle and the crust.

As a result, the high tempratures from the mantle makes this area hotter thanks to the high amount of lava available.

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Which is the most explosive type of volcanic eruption?.

Answers

The largest and most violent of all the types of volcanic eruptions are Plinian eruptions. They are caused by the fragmentation of gassy magma, and are usually associated with very viscous magmas

if the composition of the upper atmosphere were altered to permit a greater amount of terrestrial radiation to escape, earth would be group of answer choices quite unaffected. warmer. cooler. none of the above

Answers

Earth would be warmer if changes were made to the upper atmosphere's chemical makeup to allow more terrestrial radiation to escape. Option 2 is Correct.

Earth's thermal energy, which manifests as infrared waves, is known as terrestrial radiation. The temperature on Earth would drop as a result of heat loss if the composition of the atmosphere were altered to allow more terrestrial radiation to escape.

Methane, ozone, nitrous oxide, and water vapour are a few of them. Earth would be an ice wasteland if there were no greenhouse gases. By retaining a portion of the heat energy that would otherwise escape into space, greenhouse gases make our world habitable. Option 2 is Correct.

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Correct Question:

If the composition of the upper atmosphere were altered to permit a greater amount of terrestrial radiation to escape, earth would be group of answer choices

1. quite unaffected.

2. warmer.

3. cooler.

4. none of the above.

Why can’t we see glittering in the sky very often in large cities

Answers

Answer: Light pollution.

Explanation: This is often due to light pollution, in cities such as New York (example) city lights outshine stars in the sky. New York is known as "The city that never sleeps" which means that some lights stay on 24/7. This is a problem that occurs in many large cities, which is why it is hard to see stars at night.

which of the following terms is defined as the location of industrial or other activities away from established businesses in response to growing costs of congestion, competition, and regulations?
O Deglomeration
O Deindustrialization
O Agglomeration
O Fordism

Answers

The term defined as the location of industrial or other activities away from established businesses in response to growing costs of congestion, competition, and regulations is "deglomeration."

Deglomeration refers to the process of dispersing industrial or other activities from concentrated areas, such as established business centers, in response to various factors. As cities become more congested and face increased competition and regulatory pressures, businesses may choose to relocate to less crowded areas. Deglomeration can involve moving production facilities, offices, or other operations to suburban or rural locations where land and labor costs are lower, and there is less congestion and regulatory burden.

This phenomenon can occur as a result of several factors. Growing costs of congestion, such as traffic congestion and overcrowded infrastructure, can make it challenging for businesses to operate efficiently and cost-effectively in established business districts. Competition among businesses in concentrated areas can drive up costs, making it attractive for some companies to seek lower-cost alternatives elsewhere. Additionally, regulations imposed by governments, such as zoning restrictions or environmental regulations, can incentivize businesses to relocate away from established business centers.

Overall, deglomeration is the process of dispersing industrial or other activities away from established businesses in response to the increasing costs of congestion, competition, and regulations. It is a strategic decision made by businesses to seek more favorable conditions in terms of cost, efficiency, and regulatory environment by relocating to areas that offer these advantages.

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What is the image of the point (1,5) after a rotation of 180∘counterclockwise about the origin?

Answers

the image of the point (1, 5) after a 180-degree counterclockwise rotation about the origin is (-1, -5).

To find the image of the point (1, 5) after a rotation of 180 degrees counterclockwise about the origin, we can use the following transformation rule:

For a rotation of θ degrees counterclockwise about the origin, the coordinates (x, y) of a point are transformed to (-x, -y).

Applying this rule to the point (1, 5) for a 180-degree counterclockwise rotation, we have:

(-1, -5)

Thus, the image of the point (1, 5) after a 180-degree counterclockwise rotation about the origin is (-1, -5).

To understand this transformation visually, imagine a Cartesian coordinate plane with the origin at (0, 0). The point (1, 5) is located in the first quadrant, above the x-axis and to the right of the y-axis. After a 180-degree counterclockwise rotation, the point will be reflected across both axes and end up in the third quadrant, below the x-axis and to the left of the y-axis. The x-coordinate changes from 1 to -1, and the y-coordinate changes from 5 to -5.

This transformation can also be visualized by imagining a line connecting the origin to the point (1, 5) and rotating it 180 degrees counterclockwise. The line will flip and extend in the opposite direction, resulting in the new position of the point (-1, -5).

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