Two doors are each 36 inches wide. Door A is opened to a 11° angle. Door B is opened to

a 62° angle. Which door's outer edge is farther from its closed position? Justify your

answer.

Answers

Answer 1

Answer:

Door B.

Explanation:

The outer edge of the door B is farther from its closed position because of high angle. The door which have a greater angle has more outer edge from its closed position as compared to the door with lower angle. Here, the door A is open with an angle of 11 degree while on the other hand, the door B is pen with an angle of 62 degree so the door B has higher angle so we can say that door B has farther outer edge as compared to door A .


Related Questions

beach sand moves along the shore in a movement of materials called spit organization. T/F

Answers

No, the above statement is false. Beach sand does not move along the shore in a movement of materials called "spit organization."

Spit formation refers to the deposition of sediment along a coastline in a linear or hook-shaped feature. It occurs when longshore drift, the movement of sediment along the shoreline due to wave action, transports sediment and deposits it in a protruding formation. This creates a spit, which is typically composed of sand or gravel.

However, the movement of beach sand along the shore is primarily influenced by the action of waves, tides, and currents. This movement, known as longshore drift, is responsible for the lateral transport of sediment along the coast. Longshore drift can result in the erosion of sand from one area and the deposition of sand in another, leading to changes in the shape and size of beaches over time.

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why didn't lincon free slaves in all of the united states

Answers

Answer:

The Civil War was fundamentally a conflict over slavery. However, the way Lincoln saw it, emancipation, when it came, would have to be gradual, as the most important thing was to prevent the Southern rebellion from severing the Union permanently in two.

Explanation:

Answer:

The way Abraham Lincoln saw it, emancipation needed to be gradual. He thought this because at the time, the most important thing was to prevent the Southern rebellion from severing the Union permanently in two.

Contrast relative-age dating with absolute-age dating.

Answers

Answer:

Absolute dating is more precise than relative age dating

Explanation:

Relative age Dating

It is relative and hence is less precise

It is not scientific but more of observational nature where the age of the fossil is determined by looking at the position of the rock layers.  

Shows relative order in which the oldest layer is at the bottom and the youngest lies at the top

Absolute age Dating

It determines the numeric age of fossil in numbers and hence it is more precise

Scientific in nature as the age is determined by using radiometric dating  

Used in rocks that have isotopes  

using radiometric dating.

maximizing utilization of each resource pool is an exercise in futility. T/F

Answers

The statement "Maximizing utilization of each resource pool is an exercise in futility." is false as maximizing utilization can help in improving efficiency.

In certain circumstances, maximizing the use of each resource pool can be a good objective. Depending on the organization's goals and the particular context. Maximizing resource use occasionally can result in greater effectiveness, cost savings, and better overall performance.

It is crucial to remember that pursuing maximum utilization blindly without taking other aspects like flexibility, resilience and sustainability into account can have unfavorable effects. Striking a balance and taking into account the trade offs between resource use, productivity and the organization's long term objectives is crucial.

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what are two ways we can detect interstellar dust clouds?

Answers

Interstellar dust is dust that exists between the stars in a galaxy. It consists of tiny particles of carbon, silicon, and other elements.

Here are two ways we can detect interstellar dust clouds:

1. Absorption Spectroscopy: Absorption spectroscopy is a technique for detecting the presence of interstellar dust. This method is based on the fact that when light from a star passes through interstellar dust, some of it is absorbed by the dust. This absorption produces dark lines in the spectrum of the star, which can be used to determine the properties of the dust.

2. Scattering of Light: The second method for detecting interstellar dust clouds is by observing the way they scatter light. Interstellar dust clouds scatter light in a way that produces a distinctive pattern of brightness and polarization. By observing this pattern, astronomers can determine the size, shape, and composition of the dust particles in the cloud.

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Which of the following is NOT a benefit of typhoons? Typhoons______________.
A. water plantations
B. move air pollution into the atmosphere
C. replenish freshwater resources in mountains, rivers, and lakes
D. disperse heat in tropical and subtropical regions by bringing down rain

Answers

Answer:

B

Explanation:

HELP ASAP (20 points)
whats zambias Political information: Political System, Civil Rights: freedoms or restrictions, any interesting laws within the country.

Answers

Answer:

See the Freedom in the World 2020 score and learn about democracy and freedom ... Zambia's political system features regular multiparty elections, and some civil ... to the National Democratic Congress (NDC) party, led by former information ... use of the Public Order Act to restrict opposition events, and political violence.

Explanation:

Which of the following radiation detection methods , which uses
a superheated liquid?
a. could champer
b. electroscope
c. bubble chamber

Answers

The radiation detection method that uses a superheated liquid is Bubble chamber.

What is radiation detection?

Radiation detection is the science of detecting ionizing radiation, including gamma rays, alpha and beta particles, and neutrons. Radiations are detected by devices called radiation detectors, which can convert radiation energy into measurable electric pulses.

There are various types of radiation detectors that are used to detect radiation, such as Geiger counter, Scintillation detector, Ionization chamber, and Bubble chamber.What is a bubble chamber?A bubble chamber is a device used to observe subatomic particles in a liquid medium. It was developed in the 1950s and 60s, but has since been mostly replaced by more modern technologies such as the electronic particle detector.

In a bubble chamber, subatomic particles pass through a superheated liquid and leave a trail of ionization behind them. This ionization causes the liquid to boil along the path of the particle, creating a trail of bubbles that can be photographed.

By analyzing the properties of the bubbles, scientists can determine the characteristics of the particle that created them.In the given options, the radiation detection method that uses a superheated liquid is the bubble chamber. Therefore, the correct option is option c) Bubble chamber.

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The radiation detection method which uses a superheated liquid is option (c) Bubble Chamber. The Bubble Chamber is a device that was used for studying particle physics in the mid-20th century.

A superheated liquid, typically liquid hydrogen, is used in the bubble chamber to detect and observe charged particles moving through it. The following radiation detection methods use a superheated liquid: The Bubble Chamber is a radiation detection device that uses a superheated liquid to detect charged particles moving through it. As the particles move through the liquid, they create small bubbles that can be observed and studied. The Bubble Dosimeter is a device that uses a superheated liquid to measure the amount of radiation exposure that a person has received. The device is filled with a superheated liquid that is sensitive to radiation, and when radiation is absorbed by the liquid, it causes bubbles to form that can be counted to determine the amount of exposure. The Superheated Emulsion Detector is a device that uses a superheated liquid to detect high-energy particles. The device is filled with a superheated liquid that is sensitive to high-energy particles, and when a particle passes through the liquid, it causes a chain reaction of bubbles to form that can be observed and studied. In summary, the Bubble Chamber is a radiation detection method that uses a superheated liquid. The device was used in the mid-20th century to study particle physics by detecting and observing charged particles moving through the liquid.

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Define what a map is

Answers

Answer:

Map actually has different definitions depending on what is the context.

Here are the definitions:

1. a diagrammatic representation of an area of land or sea showing physical features, cities, roads, etc.

2. a person's face

3. represent (an area) on a map; make a map of.

how is the sun very important for organisms​

Answers

Answer:

It radiates light and heat, or solar energy, which makes it possible for life to exist on Earth. Plants need sunlight to grow. Animals, including humans, need plants for food and the oxygen they produce. Without heat from the sun, Earth would freeze

Explanation:

On the map of Africa, the star is marking which of the following countries?

Answers

the answer to your question is egypt

A full paragraph about how drinking is harmful is just stay the same age limit

Answers

Answer: Excessive drinking by adolescents aged 20 and younger has been related to brain injury and impaired brain function, according to medical studies. Early drinking before the age of 21 raises the risk of potential substance misuse, traffic accidents, and attacks, among other alcohol-related concerns.

Answer:

Here's a thesis to get you started! Hope this helps.

Explanation:

Thesis:

Drinking is harmful to people of all ages because it deteriorates your motor skills it spikes your blood sugar levels.

The nonlinear relationship between temperature and saturation makes it possiblefor two unsaturated air samples to mix and form a new saturated air sample. Jet contrails are one example ofthis as warm exhaust containing moisture mixes with cold air. Some contrails disappear quickly, others linger. What do you think determines the life span of contrail? ANSWER The the surrounding air, the rapidly the ice crystals will , making the contrail disappear. Select the correct answer

A - DRIER / WARMER B - LESS / MORE C - CONDENSE/SUBLIME "Check spelling before submitting your answer.

Answers

The life span of a contrail is primarily determined by the characteristics of the surrounding air. The correct answer is option A - DRIER / WARMER.

Contrails are formed when the warm exhaust from aircraft engines containing moisture mixes with the colder air in the atmosphere. The key factor influencing the life span of a contrail is the relative humidity and temperature of the surrounding air.

When the surrounding air is drier and warmer, the ice crystals in the contrail will evaporate more quickly, leading to a shorter life span. In this case, option A - "DRIER / WARMER" is the correct choice.

On the other hand, if the surrounding air is more humid and colder, the ice crystals in the contrail will persist for a longer duration. This is because the colder air promotes the condensation and persistence of the ice crystals, allowing the contrail to linger in the sky for a longer time.

Therefore, the correct answer is option A - DRIER / WARMER.

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Explain what causes the seasons on Earth: name two things that make it hotter in the summer, versus cooler in winter. How do seasons in the northern hemisphere differ from those in the southern hemisphere, in terms of time of year? Does distance from the Sun play a role in our seasons? If Earth were tilted completely on its side, how would our seasons differ- would we have any?

Answers

The seasons on Earth are caused by the tilt of its axis as it orbits the Sun. Two factors that make it hotter in the summer and cooler in winter are the angle of sunlight and the length of daylight hours.

The tilt of Earth's axis is the primary cause of the seasons. As Earth orbits the Sun, different parts of the planet receive varying amounts of sunlight throughout the year. During summer in a particular hemisphere, that hemisphere is tilted towards the Sun, resulting in more direct sunlight, longer daylight hours, and warmer temperatures. In contrast, during winter, the hemisphere is tilted away from the Sun, leading to less direct sunlight, shorter daylight hours, and cooler temperatures.

In the northern hemisphere, summer occurs around June solstice, while winter occurs around December solstice. In the southern hemisphere, the seasons are reversed, with summer occurring around December solstice and winter around June solstice.

This is because when it is summer in one hemisphere, it is winter in the other due to the opposite tilt of the hemispheres towards or away from the Sun.

Although distance from the Sun does have a small effect on seasons, it is not the primary factor. Earth's elliptical orbit does cause it to be slightly closer to the Sun during its winter in the northern hemisphere. However, the angle of sunlight and the length of daylight hours are the main contributors to the variation in seasons.

If Earth were completely tilted on its side, there would be no distinct seasons. Without the tilt, the angle of sunlight would remain constant throughout the year, resulting in a more uniform distribution of sunlight and temperature across the planet. The variation in seasons as we know them would be eliminated.

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Cosmological models indicate that the dark matter in the Universe is because the Universe Fill in for the first blank O Baryonic Hot O Cold Fill in for the second blank Has no small structures. has lots of undetected black holes. exhibits structures on scales from dwarf galaxies to galaxy supercluster. O is very cold.

Answers

Cosmological models indicate that the dark matter in the Universe is because the Universe is very cold and has no small structures.

This is in contrast to baryonic matter, which consists of ordinary atoms and is usually hot. Dark matter is believed to account for most of the mass in the universe, making up about 85 percent of all matter. It is also believed to be the main component responsible for the formation of large-scale structures, such as galaxies and cosmic filaments.

Since dark matter does not interact with light, it is difficult to observe directly. Astronomer rely on data from gravitational lensing observations and cosmological simulations to infer the distribution and properties of dark matter in the Universe. In conclusion, dark matter has multiple implications for understanding the composition and evolution of the Universe.

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Jupiter has many moons. The grid below shows the 4 largest moons of Jupiter.

Which moon appears to be located at (4, 2) on the grid? OCallisto

Answers

Answer:

Ganymede, since it’s four over and two up.

Ganymede

Explanation:

go over 4 to the right on the x axis and up 2 on the y axis.

so your right

Mountains, plateaus, and plains are types of _____.


magma


crust


ridges


land forms

Answers

The answer is Ridges

"Latitude is the most important factor in determining temperature". Support your answer.

Answers

Answer:

please give me brainlist and follow

Explanation:

Many factors influence the climate of a region. The most important factor is latitude because different latitudes receive different amounts of solar radiation. The Equator receives the most solar radiation. ... Sunlight filters through a thick wedge of atmosphere, making the sunlight much less intense.

Why do you think the population
density is so high in the UK?

Answers

Answer:i have no clue

Explanation:

Formation of the delta is dependent on? Choose all that apply (there are 2) A. Volume of transport B. Coastal currents C. Ocean life
D. Temperature of surrounding land

Answers

The formation of the delta is dependent on the volume of transport and temperature of surrounding land. Therefore, options A and D are the correct answers to the given question.

What is a delta?

A delta is a landform created by sediment deposition, which occurs where a river meets an ocean or lake and the water slows down, causing the sediment to settle. Deltas are wetlands that play an important role in the ecosystem and are constantly changing due to the natural forces of water flow, wind, and sediment deposition.

The processes that control delta formation are controlled by different factors, including volume of transport, temperature of surrounding land, and more.

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Analyze the map and use your knowledge to answer the question that follows. Map is pictured below.




Which is not a country of Latin America?

Answers

DO NOT CLICK THE ANSWER FROM THE OTHER GUY ITS A SCAM!!!!

Which of the following is not an example of methods used for short-term climate reconstructions? lake core analysis ocean sediment core analysis dendrochronology cave formation (speleothem) analysis carbon isotope analysis

Answers

Among the provided options, carbon isotope analysis is not an example of methods used for short-term climate reconstructions.

The other methods mentioned, including lake core analysis, ocean sediment core analysis, dendrochronology, and cave formation (speleothem) analysis, are commonly employed techniques for reconstructing short-term climate variations. Carbon isotope analysis, on the other hand, is typically used to study carbon cycling, sources, and sinks, but it is not a primary method for directly reconstructing short-term climate variations.

Dendrochronology utilizes tree rings to reconstruct past climate conditions, as the width and characteristics of tree rings can provide insights into temperature and precipitation patterns. Cave formation (speleothem) analysis involves studying the growth and composition of mineral deposits in caves, which can offer information about past climate changes.

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Submit a 1-2 page paper addressing the following questions:
What pros and cons do you see for globalization? Why?
What changes to globalization would you like to see? Why?

Answers

Some changes in globalization would be to have stricter environmental regulations to prevent environmental degradation, improve working conditions, and promote workers' rights to prevent exploitation.

Here are some of the pros and cons of globalization:

Pros of globalization:Increased economic growth: Globalization has provided more significant opportunities for companies and businesses to grow their products and services. It has created markets for more goods and services in different countries and created employment opportunities for people in several countries.Rapid advancement in technology: Technological advancements, innovations, and investments have improved the quality of life of people around the world. For example, the internet has made communication faster and easier, making it possible for people to connect with anyone worldwide.Increased standard of living: Globalization has improved the standard of living of people in various countries. For instance, by providing access to new products, advanced medical technologies, and educational opportunities.

Cons of globalization:Exploitation of workers: Globalization has led to an increase in the exploitation of workers in developing countries. Multinational corporations use sweatshops to produce goods at the lowest possible cost, leaving workers with meager wages and poor working conditions.Environmental degradation: Globalization has led to increased environmental degradation and pollution. Multinational corporations move their production to countries with weaker environmental regulations and standards. It results in the degradation of natural resources and pollution, leading to environmental problems.

Globalization leads to the concentration of power and wealth in the hands of a few individuals or countries. It can result in the marginalization and exclusion of people, particularly in developing countries. In conclusion, some changes in globalization would be to have stricter environmental regulations to prevent environmental degradation, improve working conditions, and promote workers' rights to prevent exploitation.

Developing countries can also be given more voice in international trade negotiations. Doing so will ensure that everyone benefits from the opportunities presented by globalization.

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A supernova remnant is now 2.65 pc in radius and is expanding at 4,100 km/s. Approximately how many years ago did the supernova occur? (Note: 1 pc = 3.1 ✕ 1013 km and 1 yr = 3.2 ✕ 107 s.) years ago

Answers

A supernova remnant is now 2.65 pc in radius and is expanding at 4,100 km/s. Approximately 625 years ago the supernova occur.

We have the given data of a supernova remnant as the radius and the velocity of expansion. We need to find the time since the occurrence of the supernova. The time when a supernova occurred can be calculated from the current radius of the supernova remnant and its rate of expansion.

In the given scenario, a supernova remnant has a radius of 2.65 pc, and it is expanding at a rate of 4,100 km/s.

The equation to find the distance covered by the supernova remnant after a time t is given as:

r = vt

where

r is the distance covered

v is the velocity

t is the time

Therefore, the time taken to travel a distance r at a velocity v is given as:

t = r/v

Here, we have the radius as 2.65 pc and the velocity as 4100 km/s. The radius needs to be converted into km as the velocity is in km/s.

1 pc = 3.1 × 1013 km

So,

2.65 pc = 2.65 × 3.1 × 1013 km

            = 8.215 × 1013 km

Now, we have:

r = 8.215 × 1013 km

v = 4100 km/s

Substituting the values in the formula we get:

t = r/v

 = (8.215 × 1013 km) / (4100 km/s)

 = 2 × 1010 s

Now, we need to convert this time into years.

1 yr = 3.2 × 107 s

Therefore, the time in years

= 2 × 1010 s / (3.2 × 107 s/yr)

≈ 625 years

Thus, the supernova occurred approximately 625 years ago.

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How would an object in Earth's atmosphere be deflected as a result of Earth's rotation? How would an object in Earth's atmosphere be deflected as a result of Earth's rotation? to the left in the Northern Hemisphere, and to the left in the Southern Hemisphere to the right in the Northern Hemisphere, and to the left in the Southern Hemisphere to the left in the Northern Hemisphere, and to the right in the Southern Hemisphere to the right in the Northern Hemisphere, and to the right in the Southern Hemisphere

Answers

Answer:

to the right in the Northern Hemisphere, and to the left in the Southern Hemisphere

Explanation:

Rotation is the movement that the earth makes around itself every day, allowing for different times between day and night in the two hemispheres. Like the earth, the bodies are also in motion, but the force of inertia present in them causes an effect known as the Coriolis Force, which is the inertial force present in these bodies. The effect of the Coriolis force is perpendicular to the movement and this interferes with the way an object would be deflected by the rotation movement. In this case, the coriolis force would induce an object to be deflected to the right in the northern hemisphere and to the left in the southern hemisphere.

How was the pompeii discovered?

Answers

Answer: Pompeii was first rediscovered in 1599 by Domenico Fontana.

Explanation: He was digging for a new course for a river when he found the city.

Which of the following would not create a tsunami? O Submarine Landslide O Subduction Zone Earthquake O High Tide O Meteorite Impact into the Ocean

Answers

The option that would not create a tsunami is:

O High Tide

What is high tide?

High tide is a natural occurrence caused by the gravitational forces of the Moon and the Sun. It does not generate a tsunami.

A tsunami, on the other hand, is typically caused by seismic activity such as a submarine landslide, subduction zone earthquake, or a meteorite impact into the ocean. These events can displace large volumes of water and create powerful tsunami waves.

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What body systems that are most directly responsible for delivering oxygen to an animal's cells

Answers

Answer:

The respiratory and circulatory systems, for example, work together to provide oxygen to cells and remove carbon dioxide produced by the cells. The circulatory system takes oxygen from the lungs and delivers it to the tissues, then reverses the process with carbon dioxide.

What is the general trend of the radioactive parent isotope? A. increasing B. decreasing C. staying constant​

Answers

Answer:

B. decreasing

Explanation:

From the graph provided, we can see that the amount of Parent isotope decreases as the age of the Parent isotope increases (the general trend has a downward slope).

When two plates that differ in _______ collide, volcanoes often form nearby.

Answers

Answer:

thickness

Explanation:

source: quizlet.com

Answer:Density

Explanation: just choose that one

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