The exact time when upper mantle partial melt magmas began to invade crustal fractures is still a matter of scientific debate and varies depending on the location and geological setting.
However, based on radiometric dating techniques, it is estimated that this process began around 4 billion years ago, during the early stages of Earth's history.
The upper mantle partial melt magmas are believed to have been generated by melting due to high temperatures and pressure within the mantle, and were then transported to the crust through cracks and faults, where they eventually solidified to form igneous rocks.
It is also believed that the invasion of upper mantle partial melt magmas into crustal fractures was a key process in the formation of Earth's crust and the evolution of the planet's tectonic plates.
The magmas brought with them heat and chemical components that contributed to the formation of mineral deposits and the evolution of the early atmosphere and oceans.
Further research is needed to better understand the timing and mechanisms of this process, as well as its impact on the evolution of Earth's crust and mantle.
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What wa a major outcome of the Mexican Revolution?A. Mexico wa invaded by France, which wanted to collect outtanding debt. B. Mexico won it independence from the Spanih EmpireC. Mexico approved a contitution that created a democratic government. D. Mexico tarted a military conflict with the United State
The major outcome of the Mexican Revolution was Mexico approved a constitution that created a democratic government (C)
The Mexican Revolution was a lengthy and brutal struggle between numerous factions in continuously shifting alliances that ultimately led in the end of a dictatorship that had lasted for thirty years in Mexico and the establishment of a constitutional government. Beginning in the early 16th century, Spanish conquistadors built a system of government and wealth extraction that had its roots in the encomienda system of land grants. This system was in place throughout much of the New World. The landowners were granted the authority to compel forced labor as well as the responsibility to pay tribute by the crown. The system resulted in significant inequality, which persisted even after Mexico achieved its independence at the beginning of the 19th century.
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the general process that changes solid rock into sediments is called
The general process that changes solid rock into sediments is called Weathering.
Weathering is the general cycle that changes strong stones into dregs. It is the physical and compound breakdown of rock by the powers of nature like a breeze, downpour, and temperature changes.
Weathering can happen both on a superficial level and inside the stone and can be brought about by different cycles including physical enduring, substance enduring, and natural enduring.
The final product of enduring is the making of more modest bits of rock and mineral pieces that can be shipped and saved somewhere else as silt.
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What is the most significant source of sediment for California's beaches?A. Wave erosion along the coast.B. Streams entering onto the coast.C. Human replenishment of beach sands.
The correct answer to this question is option a. Wave erosion along the coast.
The San Gabriel Mountains provide some of the sand found on the beaches between Point Dume and Redondo Beach, including milky quartz, whitish-gray granite, and silvery mica. According to Orme, sediment from granite-type streams typically contains a lot of quartz.
However, several sizes of sediments, including mud (silt and clay), sand, and gravel, may make up beaches (cobbles and boulders). For the examination of sediment size, scientists typically utilize Wentworth's grain-size distribution chart.
Sand from Californian beaches typically includes quartz in lighter-colored grains. Most of the darker grains are feldspar. Sand comes in a variety of shades and textures, including coral, volcanic, and gypsum. Quartz predominates in the bulk of the world's sand, particularly in California.
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as you travel west of the prime meridian, how does longitude change?
The time zones from the prime meridian eastward either grow sequentially by one hour or, in the other direction, decline consecutively by one hour.
What is prime meridian?A prime meridian in a geographic coordinate system is a line of longitude that can be chosen at random and along which longitude is set to 0°. A spheroid, such as Earth, is divided by a large circle to form the Eastern Hemisphere and the Western Hemisphere. The Earth's prime meridian has been designated in many ways over time and by various groups of people. If a planetary body is not tidally locked (or at least not in synchronous rotation), its prime meridian is wholly arbitrary, in contrast to the equator, which is determined by the rotational axis. From their prime meridian, which is at 0°, to 180° east and west, respectively, we may compute the lengths of the Earth and Moon.
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Answer the following question in 3-4 complete sentences. What was found at the site of igbo ukwu? why was it an important archeological find?.
Answer:
The Igbo Ukwu site contained an elite burial and shrine complex. It held the earliest known examples of copper alloy or bronze casting in Sub Saharan Africa. The site also increased historians' understanding of both art and culture of West African civilizations.
Answer:
The Igbo Ukwu site contained an elite burial and shrine complex. It held the earliest known examples of copper alloy or bronze casting in Sub Saharan Africa. The site also increased historians’ understanding of both art and culture of West African civilizations.
Explanation:
pic
wayne, a cartographer, described the epicenter of an earthquake on a thematic map. in this scenario, the process that wayne followed to describe the earthquake's epicenter is an example of .
As Wayne used a thematic map to describe the epicenter of an earthquake, this is an example of map abstraction.
Map abstraction is the process of representing physical features and geographical information on a map by extracting and simplifying data from a variety of sources.
This allows for easier interpretation and understanding of the data. As demonstrated by Wayne, a thematic map is a type of map which uses colors, patterns, and symbols to represent an area's geographic features.
Using this type of map, Wayne was able to show the epicenter of an earthquake, allowing viewers to quickly and accurately identify the location and magnitude of the event.
This is a perfect example of map abstraction, as it provides a simplified visual representation of the data, making it easier to comprehend.
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Explain how reapportionment can impact the political power of a state
Answer:
Reapportionment ensures each political district has been created equally using census data. Reapportionment is conducted every ten (10) years following the census. The Commission will review the distribution of the population and re-draw the political districts to ensure that citizens are equally represented
Explanation:
partially melting an ultramafic rock would immediately produce a magma of what composition
Partially melting an ultramafic rock would immediately produce a magma with a mafic composition.
Ultramafic rocks are rich in magnesium and iron and low in silica. When ultramafic rocks are partially melted, the resulting magma will have a mafic composition, which means it will be low in silica and high in magnesium and iron.
This is because the minerals that make up ultramafic rocks, such as olivine and pyroxene, have a lower melting temperature than silica-rich minerals and are therefore the first to melt. The result is a magma with a similar composition to the original ultramafic rock, but with a higher liquid content and a lower viscosity.
Mafic magmas are often associated with volcanic eruptions and the formation of mafic and ultramafic rocks.
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Which of the following areas receives the most intense solar radiation at the time of year shown in the diagram, and why?
Answer:
Explanation:
nose
The Tropic of Capricorn, due to the fact this latitude is almost horizontal to incoming solar radiation.
Which vicinity receives the most extreme photo voltaic radiation?the equator
At latitudes close to the equator ( zero ° 0\degree 0° ), the Earth's floor is nearly immediately perpendicular to the angle of the sun's rays. In these regions, photo voltaic radiation is excessive because the sun's strength is concentrated over a small floor area.
Equatorial RegionsThe Equator, at 0° latitude, receives a most intensity of the sun's rays all year. As a result, areas close to Earth's Equator trip particularly constant sunlight and little solstice variant
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https://brainly.com/question/4098727#SPJ4what other factors are at play in making plates move
Polar wandering, Tidal Force, Convection Currents and Tremendous heat and pressure beneath earth's surface are some of the factors responsible for the movement of tectonic plates.
The Theory of plate Tectonics provides enough evidences to support earth's dynamic interior features. According this theory, there exist three types of plate boundaries - Convergent, Divergent and Transform - equally responsible to shape the present shape/form of earths landforms.
This theory was developed by Mc Kenzie and Parker in 1967.
The lithosphere is broken into several plates. The rigid phosphoric slabs or rigid and solid crystal layers are called plates. It includes the crust and top mantle with thickness ranging between 5-100 km in oceanic parts and about 200 km in continental areas.
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If m∠2=m∠3
and m∠4=42°
, what is m∠6
?
Answer: c
Explanation:
Answer:
If m∠2 = m∠3 and m∠4 = 42°, then m∠6 = 84°. This is because m∠2 and m∠3 form a linear pair, and m∠4 and m∠6 form a supplementary pair, so m∠6 must be equal to the sum of m∠2 and m∠4, which is 84°.
Explanation:
how do you think the central Asian climate has had an impact on the culture of it's inhabitants?
Answer:
Central Asia has a distinctive continental arid and semi-arid climate with hot, cloudless, dry summers and moist, relatively warm winters in the south and cold winters with severe frosts in the north.
Explanation:
According to solar nebula theory, what is the first step in planetesimal formation? condensation accretion gravitational collapse X flattening heating.
According to solar nebula theory , condensation is the first step in planetesimal formation.
The nebula cloud, which is made up of gas and dust, is what the hypothesis says caused the solar system to form.The nebula is believed to have formed the sun, moon, planets, and asteroids approximately 4.5 billion years ago.A nebula is essentially a gas- and dust-filled interstellar cloud.Gravity is the primary phenomenon responsible for the formation of a celestial boy.
The gas is compressed by gravity into a dense region.According to the solar nebular theory, a nebula cloud made up of a collection of gas and dust is what causes our solar system to develop. The denser region began to grow and served as a seed for further creation of a full-fledged planet or other celestial body. It is thought that a nebula formed the sun, planets, moons, and asteroids all around the same time, 4.5 billion years ago.
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consider three events that might occur when arlen digs a new mine in the cleveland national forest in san diego county, california:
The probability that both quartz and tourmaline will be found, but not aquamarine is P(A intersection B) = P(A)*P(B) = 0.80 * 0.36 = 0.29.
The Venn diagram for this situation is as follows:
A: Quartz specimens are found _____
B: Tourmaline specimens are found ____
C: Aquamarine specimens are found ____
The probability that both quartz and tourmaline will be found, but not aquamarine is P(A intersection B) = P(A)*P(B) = 0.80 * 0.36 = 0.29.
The probability that quartz will be found, but not tourmaline or aquamarine is P(A) – P(A intersection B) – P(A intersection C) = 0.80 - 0.29 - 0.24 = 0.27.
The probability that none of these types of specimens will be found is 1 – P(A) – P(B) – P(C) + P(A intersection B) + P(A intersection C) + P(B intersection C) = 1 - 0.80 - 0.36 - 0.28 + 0.29 + 0.24 + 0.16 = 0.17.
The probability of A intersection (B union C) is P(A)*P(B union C) = P(A)*(P(B) + P(C) – P(B intersection C)) = 0.80 * (0.36 + 0.28 – 0.16) = 0.41.
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which area is least likely to experience earthquakes? group of answer choices mid-ocean ridges ocean trenches the middle of continents volcanic island arcs
The area that is least likely to experience earthquakes is C. the middle of continents.
Why are the middle of continents least likely to experience earthquake ?The middle of continents are less likely to experience earthquakes because they are located in stable areas of the Earth's crust, away from plate boundaries where most earthquakes occur.
Plate boundaries are zones of intense geological activity, where tectonic plates move against each other and create stress that is released as earthquakes. In contrast, the interior of continents is composed of older, cooler, and more solid rock that is less prone to earthquakes.
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Which process primarily transfers heat by moving air?1. conduction 2. convection 3 radiation 4. transpiration
Answer:
The answer is radiation because that is what has the power of air.
Explanation:
Option 3 radiation primarily transfers heat by moving air because that is what has the power of air.
Energy that comes from a source and moves through space at the speed of light is called radiation. This energy has wavelike properties and is associated with an electric and magnetic fields. Electromagnetic waves or radiation could also be used as a name. Heat is produced by every nuclear power plant.
The DNA in our cells can be damaged by radiation. Acute Radiation Syndrome (ARS) or Cutaneous Radiation Injuries (CRI) can result from exposure to high doses of radiation. In later life, high doses of radiation may also cause cancer. A mutagen, radiation can eventually cause cancer. Radiation can either harm the DNA in cells or kill them, making it harder for them to reproduce and eventually leading to cancer.
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Which of the following characteristics produce a temperate shrubland?
A. Heavy rainfall in summer
B. Cool, moist winters
C. Hot season coincides with a dry season
D. Cool temperatures all year
E. Consistent precipitation all year
Hot season coincides with a dry season produce a temperate shrubland.
In this case, Option C is correct.
Mesomorphic to slightly xeromorphic perennial grasses predominate in emperate grasslands, and perennial forbs are present, but in varying amounts. With a typical 10% cover, trees are sporadic to completely absent and are frequently regulated by fire, cold, or drought. At maturity, grasses and forbs can reach a variety of heights depending on the soil, climate, and other elements.
Grasses can form a sod (carpet on the ground) or a tussock (bunch), with bunchgrasses becoming more prevalent during dry periods. It is possible to find both C3 and C4 grasses, with C3 becoming more prevalent toward the poles. Because their renewal buds are located close to or below the ground surface, grasses and perennial forbs are well suited to withstand cold seasons, as well as tolerate grazing and fire.
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what factors do you think led to the increase in population? do you think that the population growth in pima county is sustainable?
The increase in population can be attributed to a variety of factors, including birth rates, immigration, and declining death rates. Birth rates refer to the number of births per unit of time in a given population, while death rates refer to the number of deaths per unit of time.
When birth rates are higher than death rates, the population increases. Immigration also contributes to population growth by adding new individuals to the population. On the other hand, declining death rates can lead to an increase in population as people live longer and have fewer deaths.
When it comes to the population growth in Pima County, sustainability is a complex issue that depends on various factors such as resources, environmental impact, and economic stability. A sustainable population growth is one that can continue without reducing the quality of life for future generations or damaging the environment.
In order to determine if the population growth in Pima County is sustainable, it is important to consider factors such as access to resources, environmental impact, and economic stability. For example, if the population continues to grow at a rapid pace, it may put a strain on resources such as water and lead to increased pollution and environmental degradation.
Similarly, if the economy is not able to support the growing population, it may lead to poverty and reduced quality of life.
Therefore, while population growth can bring many benefits, it is important to carefully consider the potential impacts on the environment and future generations in order to determine if the growth is sustainable.
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Tropical crops such as bananas and pineapples thrive in: A) tierra caliente. B) tierra templada. C) tierra fria. D) tierra helada.
Tropical crops such as bananas and pineapples thrive in tierra caliente (hot land), which refers to regions that are close to the equator and experience high temperatures and high humidity levels.
These crops require warm and consistently warm temperatures, as well as abundant rainfall, to grow effectively. Tierra caliente regions, such as Central America, the Caribbean, and parts of South America, provide the ideal growing conditions for these crops.
Tierra template (temperate land) and tierra friar (cold land) regions have temperatures that are too low for tropical crops, and tierra Halada (frozen land) is too cold and lacks the necessary warmth and moisture for tropical crops to thrive.
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Which climate is characterized by the largest change in monthly average temperatures, i.e., the greatest
change in temperatures from one month to the next?
A) boreal forest
B) tundra
C) ice cap
D) dry-midlatitude
Dry-midlatitude is the climate with the highest monthly average temperature variation. Thus Option D is the correct answer.
Because there isn't enough moisture to balance temperature shifts, dry-midlatitude regions, such as those in the Mediterranean or desert, have extreme temperature swings. A considerable daily temperature variation, with hot days and cool nights, is also made possible by the absence of cloud cover. The fact that these climates are frequently found close to big bodies of water might result in sea breezes that further chill the air during the day.
These elements work together to produce a climate with significant temperature variations from one month to the next.
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The correct option is D because dry-midlatitude climate is characterized by the largest change in monthly average temperatures, i.e., the greatest change in temperatures from one month to the next.
Located between 30 and 60 degrees north and south of the equator, the mid-latitude desert is an abnormally dry area with an arid environment. These deserts are located in the inner regions of the continents. These areas see very little precipitation and humidity.
These climates cover vast continental expanses of the mid-latitudes that are frequently bordered by mountains, and they are found between 20 and 35 degrees North and South of the equator. These climate's minor variations include: True desert climate is defined as Bw - dry arid (desert).
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what are two characteristics of the upper troposphere
Answer:
Low Temperature: The upper troposphere is characterized by lower temperatures than those found at the surface. Temperatures typically range from -45°C to -90°C.
Low Pressure: The upper troposphere is characterized by lower air pressure than that at the surface.
Explanation:
which process causes a seamount to become a guyot which is known to have a flat top?
The process of a seamount becoming a guyot which is known to have a flat top originates from the New Oceanic Island, Fringing reef, Barrier reef, Atoll and Guyot.
Guyot Formation ProcessThere are five forms of guyot formation in general, namely:
Phase 1 New Oceanic IslandInitially, the magma that rose in the middle of the ocean formed a new island or hot spot island. Examples such as Hawaii or Krakatoa.
Phase 2 Fringing ReefAfter the island was formed, coral reefs appeared around it. Reefs need shallow, clear water and plenty of sunlight. Over time the island will be surrounded by coral earlier.
Phase 3 Barrier ReefOver time and plate movement, the island will lose its volcanic activity because it shifts from the hotspot. During that time, the development of coral reefs was increasing rapidly and adding to the burden on the island plus erosion from ocean currents and waves. And finally the island will sink and a lagoon will form around the island.
Phase 4 AtollThe island is sinking but the coral reefs are still alive around the island so as to form a coral ring or atoll.
Phase 5 GuyotThe coral reefs surrounding the island finally died because the island was sinking. Reefs cannot live at depths the sun cannot penetrate.
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briefly describe key facts about the solstices and equinoxes.
During the summer solstice in June, the northern hemisphere is most directly facing the sun and gets the most direct sunlight.
What Are the Equinox and Solstices?During the equinox, the sun passes the equator of the Earth, making day and night (almost) equal in length everywhere. The spring equinox, sometimes referred to as the vernal equinox, takes place on or around March 21 in the Hemisphere when the sun crosses the celestial equator from north to south. On September 22 or 23, the sun passes the equatorial plane from south to north, signalling the start of fall. The opposite is true in the Southern Hemisphere. The terms March and September solstice are occasionally used to avoid a bias against the Northern Hemisphere. One of the twice of the year when Earth's position and tilt in relation to the sun cause the greatest or smallest amount of daylight in a single day is on a solstice.
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the trade winds of the northern and southern hemispheres meet at the equator in a narrow zone of weak variable winds called
The trade winds of the Northern and Southern Hemispheres meet at the equator in a narrow zone of weak variable winds called the doldrums.
The "doldrums" is a common nautical phrase that refers to the belt around the Earth near the equator where sailing ships might occasionally become stranded on sea that does not have any wind.
The Inter-Tropical Convergence Zone, also known as the doldrums by sailors around the world, is a belt that circles the Earth and extends about five degrees north and south of the equator. At this location, the prevailing trade winds of the northern hemisphere blow to the southwest, and they come into conflict with the powerful trade winds of the northwest in the southern hemisphere.
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what type of wind speeds can hurricanes experience?
Hurricanes can experience wind speeds of 74 mph (119 km/h) or higher.
Hurricanes are powerful, destructive storms that can cause catastrophic damage. They are characterized by their intense winds, which can reach speeds of 74 mph (119 km/h) or higher.
These winds can wreak havoc on communities, destroying homes, businesses, and other structures. In addition to the winds, hurricanes also bring heavy rain, storm surges, and flooding that can cause further destruction.
The strength of a hurricane is measured by its wind speed, and the most powerful hurricanes can reach speeds over 200 mph (320 km/h). Hurricanes can also cause significant destruction when they make landfall, as the combination of powerful winds and storm surges can cause extensive damage to coastlines.
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How does air temperature change with height in the troposphere? (a) Air temperature always decreases with height in the troposphere. (b) Air temperature always increases with height in the troposphere. (c) Air temperature usually decreases with height in the troposphere but sometimes increases. (d) Air temperature usually increases with height in the troposphere but sometimes decreases.
This effect is often referred to as the "lapse rate", and it is due to the fact that temperature decreases with an increase in altitude. The answer is (b): Air temperature always increases with height in the troposphere.
This means that as you go higher in the troposphere, the air temperature will become warmer.
The lapse rate is the rate at which air temperature decreases with an increase in altitude. As you go higher up in the troposphere, the temperature of the air will become cooler. This is due to the decrease in atmospheric pressure, which causes the air to expand and therefore cool. This effect is most noticeable in the troposphere, although it can also be seen in other layers of the atmosphere.
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how did the soviet union come to control eastern europe, the caucasus and parts of central asia?
The Soviet Union came to control eastern Europe, the Caucasus and parts of Central Asia through a combination of military and political means.
In the aftermath of World War II, the Soviet Union imposed communist governments in the region and installed Soviet-controlled governments in the countries it occupied. The countries in eastern Europe, the Caucasus and Central Asia were then subject to Soviet influence and control for the remainder of the Cold War.
In order to maintain its control, the Soviet Union engaged in a number of strategies including military presence and support for friendly governments, economic sanctions, and restrictions on travel. The Soviet Union also encouraged a pro-Soviet ideology and culture, and used propaganda and censorship to control public opinion.
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which four gases were plentiful in the atmosphere/oceans of early earth? methane, ammonia, water vapour, the noble gas neon, Oxygen
Answer: Oxygen
Explanation:
Earth's unique surroundings was prosperous in methane, ammonia, water vapour, and the noble fuel neon, but it lacked free oxygen.
Which gasoline made up most of the early atmosphere?Scientists agree with that the majority of the gases which made up the Earth's early atmosphere, a few billion years ago, have been formed by using volcanic activity - causing it to be chiefly carbon dioxide
As Earth cooled, an ecosystem shaped primarily from gases spewed from volcanoes. It included hydrogen sulfide, methane, and ten to 200 times as a lot carbon dioxide as modern atmosphere. After about half of a billion years, Earth's floor cooled and solidified sufficient for water to gather on it
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https://brainly.com/question/1012328#SPJ4a study is conducted in which the amount of lead found in river water samples is found to increase with the number of roads surrounding the river. in this study, what is the dependent variable?
In the study, the dependent variable is the amount of lead.
The dependent variable in a study is the variable that's being measured or tested in an experiment. For instance, the dependent variable in a study looking at how tutoring impacts test scores would be the participants' test scores because that is what is being measured.
The dependent variable is different than the independent variable in an experiment. The independent variable is a variable that stands on its own. In the example mentioned above, tutoring would be the independent variable.
The amount of lead is the dependent variable in the study because it is the one that is being measured.
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what kinds of atomic nuclei were created during the era of nucleosynthesis?
Answer:
Hydrogen and Helium and trace amounts of Deuterium and Lithium.
Lighter elements including hydrogen, helium, and certain lithium isotopes were created during the nucleosynthesis epoch, which took from a few minutes to thousands of years just after Big Bang.
Thru the act of combustion, in which light nuclei join forces to create heavier elements, these atoms or ions were created. Due of the extreme temperatures and densities that existed in the early cosmos, this process took place there.Nucleosynthesis, which commonly occurs in stars or after the Big Bang, is the mechanism by which heavier starting materials are created from lesser chemical elements through nuclear processes. In this process, lighter atomic nuclei fuse together to generate heavier elements, which releases energy in the process. As a result, new stars, worlds, and every other celestial bodies are created from the heavier elements that result. All atoms heavier than helium and hydrogen in the cosmos were produced through nucleosynthesis.
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