Define the term:​
Built attraction​

Answers

Answer 1

Answer:

places which have been built specifically to attract tourist

Answer 2

Answer: I hope this helps you out

Explanation:

The term “built attraction” refers to the process of gradually developing an emotional or physical attraction to someone or something over time. This can happen through repeated interactions, shared experiences, and the building of trust and familiarity. In a romantic context, building attraction might involve getting to know someone’s personality, interests, and values, while in a business context it might involve building trust and rapport with a potential client or partner.


Related Questions

where is this monument designed to look like a castle?

Answers

The monument in Spain that is designed to look like a castle is  located in the city of Granada.

The Nasrid dynasty, the last Muslim dynasty to conquer Spain, constructed the palace and fortress complex known as the Alhambra in the 14th century. It is also known for its unusual Islamic architecture, which includes exquisite tilework, complicated geometric designs, and horseshoe arches.With strong walls and towers enclosing lush gardens, courtyards, and ornate chambers, the Alhambra was intended to serve as both a protective castle and an opulent palace. It also resembles a castle because of its conspicuous position atop a hill overlooking the city of Granada. A well-known tourist destination and UNESCO World Heritage Site, the AlhambraIt is regarded as one of the best examples of Islamic architecture in the world.

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What is the intensity of radiation emitted by a hot desert (330k) relative to that emitted by the stratosphere over the south pole during july (190k)?

Find the ratio of the radiation intensities. A. 9:1 b. 1. 73:1 c. 3:1

d. 1:1

Answers

9:1 is the intensity of radiation emitted by a hot desert (330k) relative to that emitted by the stratosphere over the south pole during july (190k)

What is radiation?

Energy that emanates from a source and moves through space at the speed of light is referred to as radiation. This energy has wave-like qualities and is accompanied by an electric field and a magnetic field.

Depending on the energy of the radiated particles, radiation is frequently divided into ionizing and non-ionizing categories. More than 10 eV is carried by ionizing radiation, which is sufficient to ionize atoms and molecules and rupture chemical bonds.

Due to the significant differences in how toxic these substances are to living things, this distinction is crucial. Radioactive substances that generate radiation in the form of helium nuclei, electrons or positrons, or photons are frequently sources of ionizing radiation.

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Define the term:​
Natural attraction​

Answers

Answer:

is the named features which appeal to tourists because of the nature of the landform of the beauty of the landscape in which the attraction is set

Which sentence describes why polygon MNOP is congruent to polygon JKLP

Answers

Congruence between two polygons can be established if their corresponding sides and angles are equal.

What is Congruence?

Generally, Congruence is a term used in geometry to describe the relationship between two geometric figures that have the same shape and size. Two figures are considered congruent if they have the same size and shape, which means that all of their corresponding sides and angles are equal.

When two figures are congruent, they can be superimposed on each other so that all their corresponding parts coincide perfectly. Congruent figures are denoted by the symbol ≅. For example, if two triangles are congruent, we would write them as ΔABC ≅ ΔDEF.

Congruence is an important concept in geometry because it allows us to prove that two figures are identical without measuring every side and angle. Instead, we can use the properties of congruence to show that corresponding parts of the figures are equal, which is a powerful tool for solving geometry problems.

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When contrasting lava from composite volcanoes to lava from shield volcanoes.?
1)composite volcanoes most often produce basaltic lavas with high viscosities, whereas shield volcanoes produce silica-rich lavas with low viscosities.
2)both types of volcano produce silica-rich lavas, but the lavas of composite cones have low viscosities, whereas the lavas of shield volcanoes have high viscosities.
3)composite volcanoes most often produce silica-rich lavas with low viscosities, whereas shield volcanoes produce basaltic lavas with high viscosities.
4)composite volcanoes most often produce silica-rich lavas with high viscosities, whereas shield volcanoes produce basaltic lavas with low viscosities.
5)composite volcanoes most often produce basaltic lavas with low viscosities, whereas shield volcanoes produce silica-rich lavas with high viscosities.

Answers

Shield volcanoes create basaltic lavas with low viscosities, whereas composite volcanoes typically produce silica-rich lavas with high viscosities. The answer is option (4).

What are Composite volcanoes?

The moniker "composite volcano" refers to these volcanoes' composite stratified sequential structure. They are distinguished by the layers of volcanic materials that emerge in succession as a result of effusive and explosive volcanism. These are cone-shaped constructions, the summit of which may have collapsed.

At the convergent plate borders, when an oceanic plate subducts beneath a continental or another oceanic plate, composite volcanoes are typically encountered. At these locations, water from the subducting oceanic plate is released into the asthenosphere at great depths. This water causes melt and lowers the surrounding materials' melting points. 

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What is the longest river in the world?

Answers

The Nile is the longest river in the world.

Answer:

The Nile is a major north-flowing river in northeastern Africa. It flows into the Mediterranean Sea. The Nile is the longest river in Africa and has historically been considered the longest river in the world, though this has been contested by research suggesting that the Amazon River is slightly longer.

the entire life cycle of an extra-tropical cyclone lasts ...

Answers

An extra-tropical cyclone's complete life cycle normally lasts a few days, frequently between 3 and 10 days, depending on many aspects including the storm's intensity, location, and atmospheric properties.

An extra-tropical cyclone's life cycle typically starts with the creation of an atmospheric disturbance, which may be brought on by a number of variables such as variations in temperature, elevation, or moisture. The disturbance may transform into a cyclonic structure with a low-pressure core and spinning winds as it grows and strengthens.

The storm's winds and precipitation might get stronger as it matures, and as it advances, the low-pressure core might get deeper.

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why do the northern and southern hemispheres experience opposite seasons?

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The Northern and Southern Hemispheres experience opposite seasons because of the tilt of the Earth's axis in relation to its orbit around the sun.

The Earth's axis is tilted at an angle of approximately 23.5 degrees relative to its orbital plane. This means that during half of its orbit around the sun, the Northern Hemisphere is tilted towards the sun, while during the other half, it is tilted away from the sun. At the same time, the Southern Hemisphere experiences the opposite tilt: when the Northern Hemisphere is tilted towards the sun, the Southern Hemisphere is tilted away from the sun, and vice versa.

When the Northern Hemisphere is tilted towards the sun, it receives more direct sunlight, resulting in longer days, higher temperatures, and summer weather. Conversely, when the Northern Hemisphere is tilted away from the sun, it receives less direct sunlight, resulting in shorter days, lower temperatures, and winter weather. The opposite is true for the Southern Hemisphere.

The seasonal changes occur due to the Earth's annual revolution around the sun, with the changes in daylight hours and sunlight intensity being most noticeable near the equator and least noticeable near the poles. This annual cycle of changing seasons is one of the many factors that contribute to the Earth's diverse climate patterns.

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(5 pts) based on the scale you choose for the topography (vertical axis) in question 8, calculate the amount of vertical exaggeration on the topographic profile you constructed above. show your work.

Answers

A prevalent practise in geographic profiles of various vertical and horizontal scales is known as vertical exaggeration.

What is an example of topography?

The analysis of the land outer layer is referred to as topography. It creates the groundwork for a landscape in particular. For instance, topography describes the surface's peaks, valleys, rivers, or craters.

What makes topography so special?

Topography is the study of how the land's surface is shaped, including all of its peaks and valleys. The Greek words "topo" (for place) and "graphia" (for writing or recording) are the origins of the word topography. Topographic maps are those that depict topography.

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which physical feature of this region is a natural boundary between europe and asia?

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The Ural Mountains is the physical feature that is a natural boundary between Europe and Asia.

The Ural Mountains are a range that runs approximately 2,500 kilometers from the Arctic Ocean in the north to the Ural River and the Caspian Sea in the south. The range is considered to be a natural boundary between Europe and Asia because it separates the two continents in terms of geology, ecology, and culture. The western side of the Ural Mountains is part of Europe, while the eastern side is part of Asia. The mountains are also important for their rich mineral resources, including coal, iron ore, and precious metals, which have been mined in the region for centuries. The Ural Mountains have played an important role in the history and development of Russia and continue to be an important region for industry and trade in the country.

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explain how energy flows through an ecosystem, while chemical components are continually cycled within it. on a planet-wide scale, why is it like this, and not the other way around?

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In an ecosystem, energy flows through the food chain, from producers (plants) to consumers (animals) to decomposers (bacteria and fungi). This flow of energy occurs through the consumption and digestion of organic matter.

In contrast, chemical components such as carbon, nitrogen, and phosphorus are continually cycled within the ecosystem. These elements are taken up by producers from the environment and used to build organic molecules through photosynthesis. Consumers then obtain these molecules by consuming producers or other consumers, and the chemical elements are broken down and released back into the environment through processes such as respiration, excretion, and decomposition. This creates a closed loop of chemical cycling within the ecosystem.

On a planet-wide scale, this is because the Earth is a closed system with finite resources. The energy that powers life on Earth ultimately comes from the sun and is continually replenished, but the chemical elements that make up living organisms are limited in quantity and cannot be created or destroyed. Therefore, it is necessary for these elements to be continually cycled within the ecosystem to support life. Without this cycling, the available resources would become depleted, and life as we know it would not be able to persist.

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What is a nautical mile called?

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A "geographical mile" or "sea mile" are other names for a nautical mile. It is a unit of measurement used in navigation to determine distances on the ocean's or other body of water's surface.

One nautical mile is equivalent to 1.1508 miles or 1.852 kilometers. As one minute of arc along an Earth meridian corresponds to one nautical mile, using nautical miles in navigation is preferred because it makes navigation calculations easier.

When measuring distances at sea, navigators use nautical miles as their unit of measurement. It is based on the equatorial radius and corresponds to an arc of one minute along a meridian. A nautical mile is equivalent to 1.151 statute miles or 1.852 kilometers.

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distinguish among a conduit, a vent, and a crater.

Answers

Magma moves from the magma chamber to the vent through a tube known as a conduit. It is from the volcano's vent that magma is released. At the volcano's summit, there is a depression called a crater.

Between a vent and a crater, what is the difference?

A vent is a location where magma can flow through to reach the Earth's surface. A volcano's crater is a circular depression within it.

How do conduits and vents on volcanoes differ from one another?

Conduit - The conduit or tube, which may have a pipe-like structure, that carries lava from a reservoir or chamber to the vent at the surface where it erupts. A molten rock eruption onto the Earth's surface known as a lava flow

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How does burial depth relate with to temperature conditions

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The burial depth relates with temperature conditions because the deeper a material is buried, the more it is insulated from temperature variations on the surface.

How do burial depth and temperate correlate ?

Burial depth can affect the temperature conditions experienced by buried materials such as organic matter or archaeological artifacts.

For example, if an artifact is buried deep enough, it may be protected from temperature variations that would otherwise cause it to deteriorate or decay. In contrast, if an artifact is buried too shallowly, it may be exposed to temperature and moisture fluctuations that can cause it to degrade or be destroyed.

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do the sun refract when they enter the earth atmosphere​

Answers

Answer:Sunlight refracts as it travels from the vacuum of space into Earth's atmosphere. As its wavefronts graze the upper atmosphere, light bends downward (Figure 4). This means we see the Sun higher in the sky than it actually is.

Explanation:

Brazil's ________ was the major destination for Portuguese slave ships.
A) Northeast
B) West
) East
D) Central region
E) South

Answers

The answer is, A) Northeast

light colored rocks that are high in sio2 are typically called

Answers

Light colored rocks that are high in SiO2 are typically called "felsic rocks."

Felsic rocks are a category of igneous rocks that are rich in feldspar and silica (SiO2). They are typically light-colored, ranging from white to light gray or pink. Felsic rocks have a high concentration of silica, which makes them viscous and resistant to flowing. This high silica content also makes them more explosive when they erupt. Felsic rocks are found in continental crust and are associated with tectonic activity such as volcanic eruptions, mountain building, and plate collisions. Common types of felsic rocks include granite, rhyolite, and obsidian. Felsic rocks have a lower density than mafic rocks, which are rich in iron and magnesium and have a darker color. Felsic rocks are important because they provide clues to the history and composition of the Earth's crust and mantle. Studying felsic rocks can help scientists understand the formation of continents, the evolution of the Earth's crust, and the processes that drive plate tectonics.

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which of these u.s. government agencies forecasts weather and monitors ocean conditions?

Answers

The National Oceanic and Atmospheric Administration (NOAA) is a U.S. government agency that is responsible for forecasting weather and monitoring ocean conditions.

NOAA is a scientific agency that operates under the Department of Commerce, and it is responsible for providing accurate and timely information about the state of the atmosphere and the oceans. NOAA's responsibilities include operating the National Weather Service, which provides weather forecasts and warnings for the United States and its territories, as well as conducting research on the Earth's atmosphere and climate. NOAA also operates a variety of programs related to ocean monitoring and conservation, including the National Marine Fisheries Service, which manages the nation's fisheries and protected marine species, and the National Ocean Service, which is responsible for monitoring coastal and ocean conditions and providing data on water levels, tides, and currents.

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We can calculate that a country would raise, or increase, its physiological density by ?A) increasing the amount of agricultural land.B) limiting the number of farmers.C) increasing the areas of its urban centers.D) increasing the size of its population.E) limiting the number of farm animals.

Answers

We can calculate that a country would raise, or increase, its physiological density by  D) increasing the size of its population.

Physiological density is a measure of the population pressure on a country's arable land.It is calculated by dividing the total population of a country by its arable land area.This density can provide insights into a country's food security and resource sustainability.A higher physiological density indicates a higher demand for arable land to support the population, which can lead to environmental degradation and food shortages.In contrast, a lower physiological density may indicate a lower demand for arable land per capita, which may be more sustainable in the long run.Physiological density can also be used to compare population densities between countries with different land areas.However, it is important to note that physiological density does not take into account the quality of the arable land or the technological advancements in agriculture

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Sort the following characteristics by the type of volcano they are associated with. 1) pillow basalt 2) lahars 3) strombolian eruption 4) pyroclastic flow

Answers

Strombolian eruptions are observed in cinder cone volcanoes, pillow basalt are seen in shield volcanoes and pyroclastic flows and lahars are found in stratovolcanoes.

A cinder cone or a scoria cone is basically a steep conical hill which is made up of loose pyroclastic fragments which include the volcanic clinkers, volcanic ash, or the scoria which has been basically built around a volcanic vent. Strombolian eruptions are characteristics of these volcanoes.

Shield volcanoes are large, broad and shield like volcanoes which are characterized by the pillow basalt lava and stratovolcanoes or the composite volcanoes are triangular in shape and are characterized by the pyroclastic flow and lahars.

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Why is Mars considered to be a potentially habitable world?
a. We have evidence that liquid water existed on its surface in the past.
b. Robotic rovers have found evidence of microscopic organisms in the surface soil.
c. It is in our solar system, and all worlds in our solar system are potentially habitable.
d. It is about the same size as Earth.

Answers

Mars considered to be a potentially habitable world as we have evidence that liquid water existed on its surface in the past. Correct option is A.

Mars has water patterns that are the closest to those of Earth of any world in the solar system. Mars has signs of water channels resembling those on Earth today, as well as polar ice caps that increase and decrease with the seasons.

Numerous instances of deltas that developed in Martian waters have been discovered. A clear indication that Mars once had a lot of liquid water is the discovery of deltas. In order to form, deltas typically need deep water over a lengthy period of time. In order to prevent sediment from draining away, the water level must also be constant.

Mars is the most habitable world in our solar system after the Earth for a number of reasons: You can extract water from the earth. It isn't too cold or too hot. Gravity on Mars is 38% that of our Earth's, which is believed by many to be sufficient for the human body to adapt to.

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What problems are known to be caused by heat waves in Europe and Asia? (Select all that apply.)
A.Fires caused as vegetation dies and dries out
B.Worsening air pollution
C.Heat-related deaths

Answers

The problems known to be caused by heat waves in Europe and Asia include fires caused as vegetation dies and dries out, worsening air pollution, and heat-related deaths.

Therefore the answers are A, B and C.

Heat waves are periods of abnormally high temperatures that can have a range of negative impacts on human health, the environment, and infrastructure. In Europe and Asia, heat waves have been associated with an increase in wildfires, as dry and hot conditions can cause vegetation to dry out and become more susceptible to ignition. This can lead to significant damage to forests, homes, and other structures. Heat waves can also worsen air pollution, as high temperatures and stagnant air can trap pollutants in the atmosphere and increase their concentration. This can exacerbate respiratory problems and other health issues. Finally, heat waves can be deadly, particularly for vulnerable populations such as the elderly, young children, and those with underlying health conditions. Heat-related deaths can result from a range of factors, including dehydration, heat exhaustion, and heat stroke. Overall, the negative impacts of heat waves highlight the need for proactive measures to mitigate their effects, including improved urban planning, public health strategies, and efforts to reduce greenhouse gas emissions.

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The example a cloud of stationary dots and a few moving dots was a demonstration of:
A. convolution of the dot cloud with a Gaussian impulse response function
B. lightness constancy
C. color constancy
D. Bayes' Theorem
E. the use of motion in figure-ground segmentation

Answers

Answer is E. the use of motion in figure-ground segmentation.

The example of a cloud of stationary dots and a few moving dots is a classic demonstration of how motion can aid in figure-ground segmentation. When a few dots move among a larger, stationary group of dots, our visual system tends to group the moving dots together as a distinct object or figure. This occurs because our visual system uses motion as a cue to separate foreground objects from a background. Therefore, we are able to perceive the moving dots as a separate object or figure from the stationary dots. This is an example of how our visual system uses multiple cues to segment visual scenes and identify objects.

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will heating up an object increase or decrease its density?

Answers

Answer: It will certainly decrease in its density

Explanation: When you heat an object up, the particles will soon move away from each other and constant moving in random directions. They spread apart and that is why it becomes less dense.

Heating a substance causes molecules to speed up and spread slightly further apart, occupying a larger volume that results in a decrease in density.

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the __________ line is an imaginary line at which the snow never melts.

Answers

The Snow line is an imaginary line at which the snow never melts.

It describes a hypothetical line on a mountain or glacier above which snow and ice never fully melt, even in the hottest months of the year. Latitude, elevation, and regional climate conditions are just a few examples of the variables that affect the snow line's precise elevation. The snow line distinguishes between habitats and ecosystems that are adapted to snow and ice and those that are not, making it a crucial ecological and geological boundary.

the lower topographic limit of a permanent snow cover is called the snow line. When melting and evaporation (melting and ablation) equal accumulation of snowfall, an irregular line known as the snow line is formed along the ground's surface. This line has wide altitude variations and is subject to numerous factors.

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how endism relates to supercontinent break up

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Endemism relates to supercontinent break up of Pangaea, continents broke apart in various pieces resulting in endemism.

Around 180 million years ago Pangea began to break up. Endemism was not at a high pace when Earth was formed as Pangaea, though with time it spread in smaller fragments where the endemism grew higher. The earth evolved over time with the rise of endemism, end of the dinosaur era and formation of new continents and other evolutions were observed with time.  The theory of continental drift is related with endemism at a wider level. The endemism usually refers to the end of certain period of time where the supercontinent break up into various parts which is responsible for the exotic global marine life.

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Why is it surprising that Mercury has a magnetic field?

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It is surprising that Mercury has a magnetic field as it has a small size as well as a slow rotation.

Mercury is the smallest planet which is present in our Solar System. It has a magnetic field which is about 1.1% as strong as the magnetic field of the Earth. The reason for this is that its core has solidified as well as cooled more quickly as compared to the Earth.

Before the year 1974, it was thought that Mercury has no magnetic field since it has a very small diameter. The magnetic field of the Mercury came as a surprise as it has a very small size as well as a very slow rotation which lasts for about 59 days.

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The amount and timing of precipitation a region receives is ultimately controlled by ______.
A. atmospheric motion
B. temperature
C. increases
D. Insolation

Answers

The amount and timing of precipitation a region receives is ultimately controlled by atmospheric motion. The Option A is correct.

How does atmospheric motion affect the globe?

Often, the atmospheric circulation transports heat across the Earth's surface, influencing the water cycle, including cloud formation and precipitation events. The movement of air masses determines our daily weather, and long-term circulation patterns determine regional climate and ecosystems.

Surface ocean current patterns are caused by wind pushing on the water's surface, and these currents also transport heat around the world. Changes in the amount and distribution of heat in the Earth system as a result of human-caused greenhouse warming are altering atmospheric and ocean circulation patterns, which in turn are altering environments around the world.

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FILL IN THE BLANK. winds occur when a stagnant high-pressure air mass flows downslope from a mountain range and descends as a warm, dry wind toward a low-pressure zone.

Answers

Downslope winds will occur when the stagnant high pressure air mass flows downslope from the mountain range and descends the warm, dry wind toward the low-pressure zone.

The Dry and the gusty winds were the blasted down the lee that is the downwind or the sheltered is   slopes of the mountain ranges in the numerous western states as the result of the weather front that will brought the unseasonably the cold air in to  Rocky Mountains.

The Downslope winds will occur when the stagnant high pressure air with the mass flows the downslope from the mountain range and the descends as the warm, the dry wind toward the low pressure zone.

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which phase of the moon comes between waxing crescent and waxing gibbous?

Answers

The phase of the moon that comes in between the waxing crescent and the waxing gibbous is the first quarter.

The Waxing Gibbous phase is the phase when the lit up the part of the Moon will grows from the 50.1% to the 99.9%. It will starts just after the phase of the First Quarter Moon and the lasts until the Full Moon. The  Waxing means the moon is getting bigger, while the gibbous means that the oval to the round shape.

The Waxing Crescent phase is the intermediate phase of the Moon phase that will starts after the New Moon and the lasts until the phase of the First Quarter.

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Read this sentence from lines 12 and 13.They also learned to play an identification game.What does the Latin root "ident" most likely mean?A togetherB sameC trustD speed Protons & electrons lab sheetPart 4Use the space on this page to pair up as many Element Model cards as youcan, based on the reactivity of their valence electrons. Write the combinations you come up with here. Remember, sometimes more than two elements can share electrons to equal a full outer shell!ANSWER ASAP FOR BRAINIEST Write 3 3 5 feet as a single fraction greater than one. Then, complete the expression what are the functional classifications of exocrine glands based on? when people want to suppress a thought, the automatic mind works to ____. how much is a pound of gold worth A patient has sustained an injury to his mediastinum. Based on the anatomy of his chest, which one of the following structures has been injured?A. DiaphragmB. LungsC. EsophagusD. Bronchus EG and HJ are parallel lines Which angles are adjacent angles ? What does Thomas low believe is an advantage to temporary work? Starting from rest, a 4-kg block slides 10m down a frictionless 30 incline.Determine the work done on the block by the force of gravity, the normal force, the net force, and the KE of the block at the end of the 10m slide when the government increases its purchases of goods and services and at the same time increases taxes, so that public saving is unchanged, then: The nurse is monitoring the fluid balance of an assigned client. The nurse determines that the client has proper fluid balance if which 24-hour intake and output totals are noted?1.Intake 1500 mL, output 800 mL2.Intake 3000 mL, output 2000 mL3.Intake 2400 mL, output 2900 mL4.Intake 1800 mL, output 1750 mL what are the issue/s presented in the song where is love which of the following kinds of studies would be the best to use to identify lifestyle factors that may be related to the development of liver cancer in an adult population? when an electron in an atom goes from a higher energy level to a lower energy level, the atom mayTrue or False The given SQL creates an Album and Song tables. The SHOW COLUMNS queries show information about the Album and Song table columns Modify the two CREATE TABLE statements. Add a primary key constraint to the Album table's ID column. Add a primary key constraint to the Song table's ID column, and add a foreign key constraint so the AlbumID column refers to the Album table's ID column. 1 -- Add a primary key 2 CREATE TABLE Album ID INT, 4 Title VARCHAR(60), 5 ReleaseYear INT 6); 7 8 -- Add primary and foriegn keys 9 CREATE TABLE Song 10 ID INT, 11 Title VARCHAR(60), 12 Artist VARCHAR(60), 13 AlbumID INT 14 ); 15 16 SHOW COLUMNS 17 FROM Album; 18 19 SHOW COLUMNS 20 FROM Song: Run Reset code Feedback? guard cells straighten our when water pressure Where is Tim put the pearls after poirot gave them to him? A student sits on a rotating stool holding two3 kg objects. When his arms are extendedhorizontally, the objects are 1 m from theaxis of rotation, and he rotates with angularspeed of 0.64 rad/sec. The moment of inertiaof the student plus the stool is 8 kg m2and is assumed to be constant. The student thenpulls the objects horizontally to a radius 0.3 mfrom the rotation axis. Calculate the final angular speed of thestudent. Answer in units of rad/s.part2: Calculate the change in kinetic energy of thesystem.Answer in units of J. . what should the nurse do when a pulse deficit is suspected?