Joints can be classified in two main ways by their structure and by their function.
1. Structural Classification of Joints:
This classification is based on the type of connective tissue that binds the bones together and the presence or absence of a joint cavity. There are three types of joints based on structural classification:
a. Fibrous Joints: These joints are held together by fibrous connective tissue and do not have a joint cavity. Examples include sutures in the skull and syndesmoses between the bones of the forearm and leg.
b. Cartilaginous Joints: These joints are held together by cartilage and do not have a joint cavity. Examples include the pubic symphysis and intervertebral discs.
c. Synovial Joints: These joints have a joint cavity filled with synovial fluid and are held together by a joint capsule and ligaments. Examples include the knee, elbow, and shoulder.
2. Functional Classification of Joints:
This classification is based on the degree of movement allowed by the joint. There are three types of joints based on functional classification:
a. Synarthroses: These joints are immovable. Examples include sutures in the skull and gomphoses in the teeth.
b. Amphiarthroses: These joints are slightly movable. Examples include the pubic symphysis and intervertebral discs.
c. Diarthroses: These joints are freely movable. Examples include the knee, elbow, and shoulder.
In conclusion, joints can be classified by their structure (fibrous, cartilaginous, or synovial) and by their function (synarthroses, amphiarthroses, or diarthroses).
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what type of energy is produced and wasted during most energy transformations?A. chemical B. electrical C. heat D. mechanical
Heat energy is produced and wasted most during any energy transformation. Energy transformation is a process through which one form of energy gets converted into another kind of energy.
The process of converting energy from one form to another is called energy transformation or energy conversion. In physics, energy is a property that gives one the ability to move an object, lift it, or produce heat. Energy can be transferred to another location or object in addition to being transformed, but it cannot be created or destroyed, in accordance with the rule of conservation of energy.
In many of its forms, energy can be used to drive mechanical work to power machines or to aid in natural processes like heating, cooling, and lighting. For instance, the furnace burns fuel to heat a house, converting the chemical potential energy of the fuel into thermal energy, which is then transmitted to change the temperature of the room
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Help... Which statement does not describe people's interactions with the environment? The ways that people alter the environment can be both harmful AND beneficial. Population growth and the environment are related. People adapt to their environment. The environment is seldom affected by technological advances.
The statement that does not describe people's interactions with the environment is the ways that people alter the environment can be both harmful and beneficial. Thus option (A) is correct.
What is an environment?Environment can be defined as a sum total of all the living and non-living elements and their effects that influence human life.
While all living or biotic elements are animals, plants, forests, fisheries, and birds, non-living or abiotic elements include water, land, sunlight, rocks, and air.
The statement that does not describe people's interactions with the environment is the ways that people alter the environment can be both harmful and beneficial. Therefore, option (A) is correct.
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Comets tend to be ________ than asteroids, and it is estimated that there are far ___________ large comets than large asteroids.
Comets tend to be faster than asteroids, and it is estimated that there are far more large comets than large asteroids.
There are reportedly far more massive comets than large asteroids, and comets are often faster than asteroids.
A comet would only need to be around 7 kilometers in diameter to contact Earth with enough energy to produce Chicxulub crater, but an asteroid would need to be a bigger 10 kilometers across because comets normally originate from farther off than asteroids do.
There are asteroids that are round, elongated, and even have satellites. A comet orbits the Sun similarly to an asteroid, however unlike an asteroid, it is made of ice and dust. Therefore, a comet's ice and dust content begin to evaporate as it approaches the Sun. Consequently, a comet appears blurry and/or has a tail when viewed through a telescope.
The coma of a comet can be up to 2 million miles across, despite the fact that the comet nucleus is typically less than 25 miles across. The asteroid Ceres is almost the same size as Texas. Vesta is an asteroid that is around the same size as Arizona.
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If a meteor with a 20 m in diameter impacts earth on land, approximately how big will the crater be?
The size of the crater created by a 20 m diameter meteor impacting the Earth will depend on several factors, including the velocity of the meteor, the angle of impact, and the type of material it strikes. On average, a 20 m diameter meteor is estimated to create a crater about 1.5 to 2 times its own diameter, so a crater of around 30 to 40 m in diameter can be expected. However, the actual size of the crater could be larger or smaller depending on the specific conditions of the impact.
What is a meteor?
A meteor is a small rock or piece of debris that travels through space and enters the Earth's atmosphere. When a meteor enters the Earth's atmosphere, it encounters friction and heat due to the atmospheric resistance, causing it to ignite and create a bright trail or shooting star in the sky. If a meteor reaches the surface of the Earth, it is called a meteorite. Most meteorites are relatively small, but some can be quite large and cause significant damage if they impact the Earth.
Hence, the answer is, a crater of around 30 to 40 m in diameter can be expected.
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What is an example of stimulus diffusion in AP Human Geography?
Stimulus diffusion in AP Human Geography is the process by which a specific trait or idea is spread from one culture or society to another, but is modified or adapted in the process.
This is different from other forms of cultural diffusion, such as relocation diffusion, in which the original trait or idea is directly transferred without any modification.
An example of stimulus diffusion in AP Human Geography can be seen in the spread of fast food restaurants around the world. While the concept of fast food originated in the United States, it has been adapted and modified in different countries to fit local tastes and cultural norms.
For example, in India, McDonald's offers a range of vegetarian options and does not serve beef or pork, in accordance with local religious beliefs. Similarly, in Japan, McDonald's offers a "Teriyaki Burger" made with a teriyaki sauce that is popular in Japanese cuisine. In both of these cases, the original idea of fast food has been modified to fit the local culture, illustrating the concept of stimulus diffusion.
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Explain how a plant grows. What are phototropism, thigmotropism, and gravitropism?
Plants grow through a process called germination, where a seed absorbs water and begins to sprout. During the germination process, the seed's embryonic shoot (plumule) and embryonic root (radicle) emerge from the seed coat and start to grow.
What is phototropism, thigmotropism, and gravitropism?1. A plant's reaction to light for growth is called phototropism. Positive phototropism, which describes how plants grow toward the light, and negative phototropism, which describes how they grow away from the light. The hormone auxin, which causes cell elongation and growth on the plant's shaded side, is the cause of this reaction.
2. Thigmotropism is a plant's response to touch in terms of growth. Plants are able to sense physical contact and change the direction of their growth in response. This reaction is brought on by adjustments in the hormone balance of the plant, including a rise in the concentration of auxin in the cells that come into touch with the foreign substance.
3. A plant's response to gravity is known as gravitropism. Stems grow against gravity whereas roots develop in its favor (positive gravitropism) (negative gravitropism). This reaction is brought on by the statoliths, heavier organelles containing starch, which settle down and cause the opposite side of the plant's cells to develop.
Together, these processes help the plant grow in the healthiest way possible so that it can thrive and adapt to its surroundings.
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Comets tend to be ________ than asteroids, and it is estimated that there are far ___________ large comets than large asteroids.
Comets tend to be faster than asteroids, and it is estimated that there are far more large comets than large asteroids.
Comets are frozen leftovers from the formation of the sun machine composed of dirt, rock, and ices. They variety from some miles to tens of miles wide, however as they orbit towards the Sun, they warmness up and spew gases and dirt right into a sparkling head that may be large than a planet. Scientists say it's miles fashioned on the top of the comet while large carbon-primarily based totally materials are damaged down via way of means of daylight because the comet techniques the sun. When diatomic carbon is worked up via way of means of ultraviolet rays, it offers off light, ensuing withinside the inexperienced coma that has been visible surrounding the nucleus of the comet.
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Facts about Avalanches?
Example:
Some facts about avalanches is given below:
Avalanches are sudden, rapid movements of snow down a slope.They are triggered by a variety of factors, including weather, terrain, and human activity.Avalanches can travel at speeds of up to 80 mph (130 km/h) and can carry masses of snow and debris weighing several tons.More facts about avalanchesThey are classified by their size, speed, and destructive potential.
Avalanches can be deadly, with an average of 28 deaths per year in the United States alone.
Avalanche safety equipment, such as beacons, shovels, and probes, can help increase survival rates in the event of an avalanche.
Avalanche forecasting and mitigation efforts are crucial for preventing and minimizing the impact of avalanches in mountainous regions.
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What's the pismo beach disaster?
The Pismo Beach disaster was a tragic event that occurred in Pismo Beach, California.
It involved a massive oil spill that contaminated the ocean and coastline, causing significant harm to wildlife and the local ecosystem. The spill was the result of an oil pipeline rupture, and cleanup efforts were extensive and costly.
The event had a lasting impact on the community and raised concerns about the safety and regulation of oil pipelines. Overall, the Pismo Beach disaster was a devastating event that highlighted the need for stricter regulations and better oversight of oil transportation and production.
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what is the name of a shipping lane with markings for the safe passage of ships?
The name of a shipping lane with markings for the safe passage of ships is called fairway.
Fairway refers to a part of a water body, such as bay, harbor, or river, that contains the navigable channel or a ship channel, which is a route that is suitable for ships of the larger size. It is the navigable channel in a river or harbor that is the safe passage of ships.
Usually, the term fairway means all of the navigable waters between the fairway buoys that indicate the ends of the channel, even the routes that are only accessible to the lighter-draft vessels.
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The day with the smallest number of daylight hours over the course of the year for a person living in the northern hemisphere is the? a. summer solstice (June 1)
b. vernal equinox (March 21) c. winter solstice (Dec. 22) d. autumnal equinox (Sept. 23) e. The number of daylight hours is always the same.
The day with the smallest number of daylight hours over the course of the year for a person living in the northern hemisphere is the option c. winter solstice (Dec. 22) .
The shortest day and longest night of the year are observed on the winter solstice. It occurs when the sun passes directly over the Tropic of Capricorn, which runs through Australia, Chile, southern Brazil, and northern South Africa at 23.5 degrees south of the equator in the Northern Hemisphere. The tilt of the Earth's axis and its orbit around the sun cause this.
The Northern Hemisphere experiences the least amount of daylight because the North Pole is tilted the furthest away from the sun on the winter solstice. The Southern Hemisphere, on the other hand, gets the most sunlight because the South Pole is angled toward the sun.
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as temperatures increase, which process is responsible for increasing the amount of water vapor in the atmosphere?
The conversion of liquid water into gaseous water is a process known as evaporation (water vapor). Water is moved from the Earth's surface to the atmosphere by evaporation.
More water vapor is taken into the air as a result of rising water vapor levels and warmer temperatures. As the temperature rises, more water is absorbed. Condensation, a process, transforms water vapor into liquid. It is the reverse of evaporation since it causes liquid water to become a vapor. Condensation occurs when the air either cools to its dew point or becomes too saturated with water vapor to contain any more water, depending on which scenario occurs first.. Plants may absorb the water and release it back into the atmosphere through transpiration and photosynthesis. The burning of plants in fossil fuels can also release water into the sky.
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The Greek philosopher who guessed that the Earth is a sphere because that is the most elegant and simple shape was
The Greek philosopher who guessed that the Earth is a sphere because that is the most elegant and simple shape was sphere.
One of the maximum well-known historic Greek philosophers, Aristotle, argued that the Earth became a sphere primarily based totally on his observations of the stars. Isaac Newton first proposed that Earth became now no longer flawlessly round. Instead, he counseled it became an oblate spheroid—a sphere this is squashed at its poles and swollen on the equator. By round 500 B.C., maximum historic Greeks believed that Earth became round, now no longer flat. But that they'd no concept how large the planet is till approximately 240 B.C., while Eratosthenes devised a smart technique of estimating its circumference. As early as 500 BC Pythagoras counseled that the Earth became a sphere because it became the 'best shape. ' Later Aristotle gave motives to agree with the Earth became round.
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at which of these times of day would you expect to find the sun in the west?
You would expect to find the sun in the west at sunset. the correct answer is B.
The Earth's rotation on its axis causes the sun's location in the sky to shift throughout the course of the day. The sun rises in the east in the morning, reaches its zenith in the sky around midday, and sets in the west in the late afternoon.
The term "sunset" refers to the moment the sun begins to sink below the horizon. From an observer on Earth, it seems as though the sun is setting in the west at this time. This is because the sun appears to rise in the east and set in the west since the Earth spins on its axis from west to east.
The observer's latitude and the season will affect the sun's precise direction during sunset.
Your question is incomplete but most probably your full question was
At which of these times of day would you expect to find the sun in the west?A) At morning B) At sunset C) At noon
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What are rheological properties of drilling fluids?
Rheological properties of drilling fluids refer to the characteristics of the fluids that affect their flow behavior.
These properties include viscosity, yield point, and gel strength.
Viscosity is a measure of a fluid's resistance to flow. It is an important property because it affects the rate at which the fluid can be pumped and the pressure required to move it through the drilling system.
Yield point is the amount of force required to initiate flow in a fluid. It is an important property because it affects the ability of the fluid to carry cuttings out of the wellbore.
Gel strength is the ability of a fluid to develop a structure that can support a load. It is an important property because it affects the ability of the fluid to suspend cuttings and prevent them from settling to the bottom of the wellbore.
In summary, the rheological properties of drilling fluids are important because they affect the ability of the fluid to carry cuttings, suspend solids, and maintain wellbore stability.
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Is continental crust thicker or thinner than oceanic crust?
Continental crust thicker than oceanic crust.
Oceanic crust is substantially thinner, ranging from 6 to 10 km thick, and is formed of denser material such as basalt. Continental crust is normally between 35 and 70 km thick and is composed of low-density material such as granite.
The Earth's lithosphere is made up of two separate layers: the continental crust and the oceanic crust. The marine crust is often thinner and less dense than the continental crust, which is normally thicker and denser.
The two forms of crust's composition account for a major portion of this density variation. The oceanic crust is made up of dense basalt and other heavy rocks, whereas the continental crust is made up of granite and other lighter rocks.
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Which of the following languages is spoken by the most people in the world today?
A.
Arabic
B.
English
C.
Spanish
D.
Mandarin
Answer: D) Mandarin
Explanation: The language spoken by the most people in the world today is Mandarin, also known as Standard Chinese or Putonghua. It is the official language of China, Taiwan, and Singapore, and it is also widely spoken in other countries such as Malaysia, Indonesia, and the Philippines. According to Ethnologue, a database of world languages, Mandarin has approximately 1.1 billion speakers worldwide. Therefore, the correct answer is D.
how did scientists first figure out plates could sink into the interior of the planet, since no one can see this happening?
Scientists first figure out that plates could sink into the interior of the planet through plate tectonic theory. The plate tectonic theory is based on the phenomenon of constructive and destructive boundaries.
In a constrained region where two plates move past one another at a transform plate boundary, sheared-up mountain ridges and valleys develop. And where a plate passes over a hotspot, a mountain range of volcanoes develops; as the volcanoes are moved away from the hotspot by the plate, they age and get lower.
Some of the evidence of plate tectonic theory is mentioned here:
Because plate boundaries meet with the US Pacific coast, there are earthquakes, volcanic eruptions, and emerging mountain ranges there.Plate convergence causes large chunks of continental crust (India and Asia) to clash, creating the Himalayas, the tallest mountains on Earth.Pacific ring of fire and earthquakes are also the result of plate tectonics.Know more about Plate tectonic theory here
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"Temperature, pressure, wind and moisture are measured through the depth of the
troposphere by what instrument?
(a) rawinsonde
(b) wind profiler
(c) Doppler radar
(d) GOES satellite"
Temperature, pressure, wind, and moisture are measured through the depth of the troposphere by a radiosonde. The correct answer is A.
A radiosonde estimation just remembers information for tension, temperature, and relative dampness. When a radiosonde is checked to furthermore yield wind data, it is known as a rawinsonde perception.
A radiosonde is a weather conditions instrument that actions air conditions, including temperature, pressure, wind speed, and dampness, by sending an inflatable-borne sensor bundle into the climate and following its climb.
Rawinsondes are normally sent off two times per day, once in the first part of the day and once at night, to assemble data about the present status of the air. The information gathered by radiosondes is utilized to concentrate on the barometrical course.
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what is the first of the deflection waves on a typical ecg?
P wave is the first of the deflection waves on a typical ECG .The first abnormality is the P wave associated with right and left atrial depolarization.
In the heart, under normal conditions, the wave of depolarizing current originates in the SA node and reaches the ventricle via the myocardial conduction system. Anatomically, ventricular depolarization comes from apex to base and from endocardium to epicardium.
Depolarization occurs in the four chambers of the heart: first in both atria and then in both ventricles. The sinoatrial (SA) node in the wall of the right atrium begins depolarization in the right and left atrium, causing a contraction that corresponds to the P wave of the EKG.
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What are the three types of plate boundaries and how do they move?
The three types of plate boundaries are convergent, divergent, and transform. Each of these boundaries is associated with a specific type of movement.
Convergent plate boundaries occur when two plates move toward each other and collide. This can result in the formation of mountains, earthquakes, and volcanic activity.
Divergent plate boundaries occur when two plates move away from each other. This can result in the formation of new crust, as magma rises to the surface and solidifies.
Transform plate boundaries occur when two plates slide past each other horizontally. This can result in the formation of fault lines and can also lead to earthquakes.
Overall, the movement of plate boundaries is responsible for many of the geological features and natural disasters that occur on Earth.
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What is it called when two plates slide past each other?
When two tectonic plates move horizontally relative to each other, it creates a boundary known as a transform boundary or transform fault. Transform boundaries occur where plates slide past each other in opposite directions, often at a jagged boundary.
These boundaries can result in earthquakes due to the buildup of stress and sudden release of energy as the plates move past each other. One of the most famous examples of a transform boundary is the San Andreas Fault in California, USA, where the Pacific Plate and North American Plate meet. The San Andreas Fault is responsible for many earthquakes in the region, and its presence highlights the important role that transform boundaries play in shaping the Earth's crust and the potential dangers they pose to human populations.
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What mountain range separates european russia from asian russia?
Answer:
The Ural Mountains
Explanation:
Where is the land where the sun never sets?
The land where the sun never sets is the Arctic Circle. This is because the Arctic Circle experiences a natural phenomenon called the "Midnight Sun," where the sun is visible for 24 hours during the summer months.
The Arctic Circle is an imaginary line around the Earth, located at approximately 66.5 degrees north latitude. During the summer solstice (around June 21st), the sun is visible for a full 24 hours at the Arctic Circle, and for several weeks in areas north of the Arctic Circle.
This is because at this time of year, the Earth's tilt causes the northern hemisphere to be angled towards the sun, resulting in continuous daylight in the far north.
During the winter solstice (around December 21st), the opposite occurs, and the Arctic Circle experiences continuous darkness for a period of time. So while the sun may not set at the Arctic Circle during the summer months, it does set during the winter months.
It's also worth noting that the length of time the sun is visible (or not visible) in the Arctic Circle depends on the specific location within the Circle, and on factors such as weather conditions and atmospheric refraction.
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Astronomers have decided that, rather than being a planet, Pluto is really just a large member ofa)The Oort cloudb) The Kuiper beltc) The Asteroid beltd)The moon system around neptunee)An extrasolar planetary system
Astronomers have decided that Pluto is not a planet but a member of the Kuiper Belt. The Characteristic of the Planet is different from the characteristic of the Kuiper belt.
Detailed information about Kuiper Belt is mentioned below:
The Kuiper Belt is a region of debris from the early solar system's past, much like the asteroid belt. It was also fashioned by a large planet, just like the asteroid belt, however, it is more of a thick disk than a thin belt.The Oort Cloud, a much further region of frozen, comet-like bodies that surrounds the solar system and includes the Kuiper Belt, should not be mistaken for the Kuiper Belt. It is believed that comets originate from both the Kuiper Belt and the Oort Cloud.To know more about Kuiper Belt here
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three gorges dam does not allow for ships to go through. (true or false)
Answer: It is True i took the test so u should get it right
Explanation: true
What do we call seismic waves that are transmitted along the outside of Earth?
Seismic waves that are transmitted along the outside of Earth are called Surface Waves.
What are the characteristics of Surface Waves?Surface waves are the slowest but most destructive type of seismic waves. They travel along the Earth's surface, causing the ground to move both vertically and horizontally. They have a lower frequency and higher amplitude than body waves, and they are responsible for most of the shaking experienced during an earthquake. Love waves move the ground in a horizontal, shearing motion, while Rayleigh waves produce both vertical and horizontal ground movement.
Surface waves are the slowest type of seismic waves, but they often cause the most damage during earthquakes because they move the ground vertically and horizontally, which can cause buildings and other structures to sway and shake. They travel through the Earth's crust and the uppermost part of the mantle.
Hence, the answer is, Seismic waves that are transmitted along the outside of Earth are called Surface Waves.
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if you do not receive your w-2 by ____________ , contact your employer
If you do not receive your W-2 form by 14th february, contact your employer.
The W-2 form is an internal revenue service tax form used in the United States to report wages earned by the employees from the employer and the taxes paid by them in a financial year. The employer issues these form to all the employees before February, and if a person didn't receive his w-2 form he can consult their respective companies. The IRS takes care and control all the matters of W-2 form, moreover the IRS can assign penalty of $30 per W-2 if the company is late by 30 days. However, if the employers are delayed by more than 30 days $100 per W-2 can be charged by the IRS.
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What percent of the Earth is covered in snow during the winter time?
31 percent of the Earth is covered in snow during the winter time.
Every year, seasonal snow cover covers 46,000,000 square kilometers or about 31% of the Earth's land area. The ice and snow cover the majority of the Atmosphere's polar regions all year, but coverage in subtropics varies depending on the season and instead elevation.
High-altitude environments such as Tibetan Plateau, the Andes, and the Rocky Mountains have snow cover almost all year. The term "snow cover" refers to the percentage of land that is covered in snow at any given time. Naturally, the portion of precipitation that occurs as snow influences it.
Air temperature also influences whether the amount of rainfall falls as snowy weather, as well as the rate at which snow upon that ground melts. According to Snowball Earth theory, between 700 million but instead 600 million years ago, our planet was completely covered in ice, as depicted in this artwork.
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what gases are in neptune's atmosphere
Neptune's atmosphere is primarily composed of three gases: hydrogen, helium, and methane.
However, unlike the other gas giants in our solar system, such as Jupiter and Saturn, Neptune has a significantly higher proportion of "ices" in its atmosphere, such as methane, water, and ammonia. Methane is the most abundant of these ices, and it is what gives Neptune its distinctive blue color.
There are also trace amounts of other gases in Neptune's atmosphere, including carbon monoxide, carbon dioxide, and nitrogen. The exact composition of Neptune's atmosphere is still being studied by scientists, but space probes such as Voyager 2 have provided important information about its structure and composition.
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