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oxygen element compounds

by Sienna O'Connell Published 3 years ago Updated 2 years ago

Oxygen Compound

  • Water
  • Calcium oxide
  • Oxygen fluoride
  • Beryllium oxide
  • Hydronium ion
  • Magnesium oxide
  • Strontium oxide
  • Sodium hydroxide
  • Potassium hydroxide

Full Answer

What are common compounds of oxygen?

  • Tellurium-oxygen compounds ‎ (6 C, 3 F)
  • Tin-oxygen compounds ‎ (7 C, 16 F)
  • Titanium-oxygen compounds ‎ (3 C, 13 F)
  • Tungsten-oxygen compounds ‎ (3 C)

What do compounds have oxygen?

You may also see:

  • Differences between Reduction and Oxidation
  • Branches of Animal Biochemistry
  • Nitrogen for Plants Growth Uses
  • Branches of Organic Chemistry

How to write O2 orders?

  • BLUE = 2-4L/min = 24% O2
  • WHITE = 4-6L/min = 28% O2
  • YELLOW = 8-10L/min = 35% O2
  • RED = 10-12L/min = 40% O2
  • GREEN = 12-15L/min = 60% O2

What are the elements of oxygen?

The oxygen family consists of the elements that make up group 16 on the periodic table: oxygen, sulfur, selenium, tellurium, and polonium. These elements all have six electrons in their outermost energy level, accounting for some common chemical properties among them. In another respect, the elements are quite different from each other.

What is oxygen elements or compounds?

oxygen (O), nonmetallic chemical element of Group 16 (VIa, or the oxygen group) of the periodic table.

What are the five compounds of oxygen?

Other important organic compounds that contain oxygen are: glycerol, formaldehyde, glutaraldehyde, citric acid, acetic anhydride, acetamide, etc. Epoxides are ethers in which the oxygen atom is part of a ring of three atoms.

What compounds are found in oxygen?

Compounds of oxygen are called oxides. Some examples of common oxides are minerals such as granite and quartz (oxides of silicon), rust (oxides of iron), and limestone (oxide of calcium and carbon). Many organic compounds also contain oxygen atoms in their structure.

What are 3 compounds in oxygen?

The list of known compounds of oxygen includes some of the rarest elements: technetium (TcO4−), promethium (Pm2O3), neptunium (NpO2), plutonium (PuO2); but also some of the least reactive such as xenon (XeO3), gold (Au2O3) and platinum (PtO2).

What type of compound is O2?

At standard temperature and pressure, two atoms of the element bind to form dioxygen, a colorless and odorless diatomic gas with the formula O2.

Is oxygen gas a compound?

*Note: pure oxygen gas consists of molecules but it is still considered an element, rather than a compound, as the molecules are made up of a single type of element.

What are 5 examples of a compound?

What are 5 examples of compounds?Sugar (sucrose - C12H22O11)Table salt (sodium chloride - NaCl)Water (H2O)Carbon dioxide (CO2)Sodium bicarbonate (baking soda - NaHCO3)

What elements can oxygen bond with?

Group 17 elements (halogens) fluorine, chlorine, bromine, and iodine react with oxygen to form oxides. Fluorine forms two oxides with oxygen which are F2O and F2O2. Both fluorine oxides are called oxygen fluorides because fluorine is the more electronegative element. One of the fluorine reactions is shown below.

Is oxygen O2 or just O?

The difference between oxygen (O) and oxygen (O2 )is that the former is an oxygen atom while the latter consists of two O atoms bound together, forming a molecule also called oxygen. Oxygen is usually found as a diatomic gas. Therefore, we write it as O2.

What is co2 compound?

Carbon dioxide is a chemical compound composed two oxygen atoms covalently bonded. to a single carbon atom. It is a gas at standard temperature and pressure and exists in. Earth's atmosphere as a gas. Carbon dioxide is composed of one carbon atom covalently bonded to two oxygen atoms.

How o2 is formed?

Oxygen can be produced from a number of materials, using several different methods. The most common natural method is photo-synthesis, in which plants use sunlight convert carbon dioxide in the air into oxygen. This offsets the respiration process, in which animals convert oxygen in the air back into carbon dioxide.

Is lead oxide a compound?

Lead(II) oxide, also called lead monoxide, is the inorganic compound with the molecular formula PbO. PbO occurs in two polymorphs: litharge having a tetragonal crystal structure, and massicot having an orthorhombic crystal structure.

What are the uses of oxygen?

Common uses of oxygen include production of steel, plastics and textiles, brazing, welding and cutting of steels and other metals, rocket propellant, oxygen therapy, and life support systems in aircraft, submarines, spaceflight and diving .

Who discovered oxygen?

Oxygen was isolated by Michael Sendivogius before 1604, but it is commonly believed that the element was discovered independently by Carl Wilhelm Scheele, in Uppsala, in 1773 or earlier, and Joseph Priestley in Wiltshire, in 1774. Priority is often given for Priestley because his work was published first.

How is oxygen gas produced?

Oxygen gas can also be produced through electrolysis of water into molecular oxygen and hydrogen. DC electricity must be used: if AC is used, the gases in each limb consist of hydrogen and oxygen in the explosive ratio 2:1. A similar method is the electrocatalytic O. 2 evolution from oxides and oxoacids.

How do paleoclimatologists measure oxygen 18?

Paleoclimatologists measure the ratio of oxygen-18 and oxygen-16 in the shells and skeletons of marine organisms to determine the climate millions of years ago (see oxygen isotope ratio cycle ). Seawater molecules that contain the lighter isotope, oxygen-16, evaporate at a slightly faster rate than water molecules containing the 12% heavier oxygen-18, and this disparity increases at lower temperatures. During periods of lower global temperatures, snow and rain from that evaporated water tends to be higher in oxygen-16, and the seawater left behind tends to be higher in oxygen-18. Marine organisms then incorporate more oxygen-18 into their skeletons and shells than they would in a warmer climate. Paleoclimatologists also directly measure this ratio in the water molecules of ice core samples as old as hundreds of thousands of years.

What is the main component of life?

Most of the mass of living organisms is oxygen as a component of water, the major constituent of lifeforms. Oxygen is continuously replenished in Earth's atmosphere by photosynthesis, which uses the energy of sunlight to produce oxygen from water and carbon dioxide.

How does photosynthesis release oxygen?

Photosynthesis releases oxygen into the atmosphere, while respiration, decay, and combustion remove it from the atmosphere. In the present equilibrium, production and consumption occur at the same rate. Free oxygen also occurs in solution in the world's water bodies. The increased solubility of O.

What is the energy that is released in combustion?

Dioxygen provides the energy released in combustion and aerobic cellular respiration, and many major classes of organic molecules in living organisms contain oxygen atoms, such as proteins, nucleic acids, carbohydrates, and fats, as do the major constituent inorganic compounds of animal shells, teeth, and bone.

What are the properties of oxygen?

Molecules, atoms, and ions of the stable isotopes of oxygen possess slightly different physical and chemical properties, and they commonly will be fractionated during physical, chemical, and biological processes, giving rise to variations in isotopic abundances and in atomic weights.

What is oxygen used for?

Oxygen is a highly reactive element and is capable of combining with most other elements. It is required by most living organisms and for most forms of combustion. Impurities in molten pig iron are burned away with streams of high pressure oxygen to produce steel. Oxygen can also be combined with acetylene (C 2 H 2) to produce an extremely hot flame used for welding. Liquid oxygen, when combined with liquid hydrogen, makes an excellent rocket fuel. Ozone (O 3) forms a thin, protective layer around the earth that shields the surface from the sun's ultraviolet radiation. Oxygen is also a component of hundreds of thousands of organic compounds.

Why is the name New Window named after the Greek word "oxys"?

The name derives from the Greek oxys for "acid" and genes for "forming" because the French chemist Antoine-Laurent Lavoisier once thought that oxygen was integral to all acids. Oxygen was discovered independently by the Swedish pharmacist and chemist Carl-Wilhelm Scheele in 1771, and the English clergyman and chemist Joseph Priestley in ...

What is the purpose of the variation in stable oxygen and hydrogen isotopes?

The subject is administered a dose of doubly labeled water (water enriched in both 2 H and 18 O).

What is the most common use of synthesis gas?

Oxygen enrichment of steel blast furnaces accounts for the greatest use of the gas. Large quantities are also used in making synthesis gas for ammonia and methanol, ethylene oxide, and for oxy-acetylene welding. Air separation plants produce about 99% of the gas, while electrolysis plants produce about 1%.

How is oxygen obtained?

A gaseous element, oxygen forms 21% of the atmosphere by volume and is obtained by liquefaction and fractional distillation. The atmosphere of Mars contains about 0.15% oxygen. The element and its compounds make up 49.2%, by weight, of the earth's crust. About two thirds of the human body and nine tenths of water is oxygen.

How is oxygen extracted from air?

Large amounts of oxygen can be extracted from liquefied air through a process known as fractional distillation. Oxygen can also be produced through the electrolysis of water or by heating potassium chlorate (KClO 3 ). Jefferson Lab, U.S. Department of Energy. From the Greek word oxys, acid, and genes, forming.

What is the atomic symbol of oxygen?

Oxygen is used in the production of synthesis gas from coal, for resuscitation and as an inhalant. CAMEO Chemicals. Oxygen is an element with atomic symbol O , atomic number 8, and atomic weight 16. NCI Thesaurus (NCIt) Oxygen is an element displayed by the symbol O, and atomic number 8.

What is medical grade oxygen?

Oxygen is supplied as a compressed gas in steel cylinders, and a purity of 99% is referred to as "medical grade." Most hospitals have oxygen piped from insulated liquid oxygen containers to areas of frequent use. For safety, oxygen cylinders and piping are color-coded (green in the United States), and some form of mechanical indexing of valve connections is used to prevent the connection of other gases to oxygen systems. Oxygen concentrators, which employ molecular sieve, membrane, or electrochemical technologies, are available for low-flow home use. Such systems produce 30% to 95% oxygen, depending on th flow rate.

What is oxygen therapy?

Oxygen therapy in clinical settings is used across diverse specialties, including various types of anoxia, hypoxia or dyspnea and any other disease states and conditions that reduce the efficiency of gas exchange and oxygen consumption such as respiratory illnesses, trauma, poisonings and drug overdoses. Oxygen therapy tries to achieve hyperoxia to reduce the extent of hypoxia-induced tissue damage and malfunction.

When fire involves liq oxygen and liq fuels, what is the control?

When fire involves liq oxygen and liq fuels, control it as follows: (a) When liq oxygen leaks or flows into large quantities of fuel, shut off flow of liq oxygen, and put remaining fuel fire out with extinguishing agents suitable for use on class B fires.

How to separate oxygen from cryogenic air?

Cryogenic air separation involves three steps: 1) purification of the incoming air to remove particles, carbon dioxide, and water, 2) refrigeration and economization of refrigeration values contained in the product and waste streams, /and/ 3) separation by distillation.

How does oxygen therapy work?

Oxygen therapy increases the arterial pressure of oxygen and is effective in improving gas exchange and oxygen delivery to tissues , provided that there are functional alveolar units. Oxygen plays a critical role as an electron acceptor during oxidative phosphorylation in the electron transport chain through activation of cytochrome c oxidase (terminal enzyme of the electron transport chain). This process achieves successful aerobic respiration in organisms to generate ATP molecules as an energy source in many tissues. Oxygen supplementation acts to restore normal cellular activity at the mitochondrial level and reduce metabolic acidosis. There is also evidence that oxygen may interact with O2-sensitive voltage-gated potassium channels in glomus cells and cause hyperpolarization of mitochondrial membrane.

How does oxygen therapy help with cellular oxygenation?

Oxygen therapy improves effective cellular oxygenation , even at a low rate of tissue perfusion. Oxygen molecules adjust hypoxic ventilatory drive by acting on chemoreceptors on carotid bodies that sequentially relay sensory information to the higher processing centers in brainstem. It also attenuates hypoxia-induced mitochondrial depolarization that generates reactive oxygen species and/or apoptosis. Studies investigating on hyperbaric oxygen therapy has shown that oxygen supplementation can induce neural stem cell proliferation in neonatal rats thus promoting neurological regeneration after injuries. CD34+, CD45-dim leukocytes are also potential targets for hyperbaric oxygen therapy benefit as their mobilization was increased in vitro which could facilitate the acceleration of recovery at peripheral sites.

What is oxygen in the periodic table?

oxygen (O), nonmetallic chemical element of Group 16 (VIa, or the oxygen group) of the periodic table. Oxygen is a colourless, odourless, tasteless gas essential to living organisms, being taken up by animals, which convert it to carbon dioxide; plants, in turn, utilize carbon dioxide as a source of carbon and return the oxygen to ...

How does oxygen form compounds?

Oxygen forms compounds by reaction with practically any other element, as well as by reactions that displace elements from their combinations with each other; in many cases, these processes are accompanied by the evolution of heat and light and in such cases are called combustions. Its most important compound is water.

How many allotropic forms does oxygen have?

Allotropy. Oxygen has two allotropic forms, diatomic (O 2) and triatomic (O 3, ozone). The properties of the diatomic form suggest that six electrons bond the atoms and two electrons remain unpaired, accounting for the paramagnetism of oxygen. The three atoms in the ozone molecule do not lie along a straight line.

What is the most abundant element in the Earth's crust?

At 46 percent of the mass, oxygen is the most plentiful element in Earth’s crust. The proportion of oxygen by volume in the atmosphere is 21 percent and by weight in seawater is 89 percent. In rocks, it is combined with metals and nonmetals in the form of oxides that are acidic (such as those of sulfur, carbon, aluminum, and phosphorus) or basic (such as those of calcium, magnesium, and iron) and as saltlike compounds that may be regarded as formed from the acidic and basic oxides, as sulfates, carbonates, silicates, aluminates, and phosphates. Plentiful as they are, these solid compounds are not useful as sources of oxygen , because separation of the element from its tight combinations with the metal atoms is too expensive.

How is oxygen prepared?

Commercial production and use. When required in tonnage quantities, oxygen is prepared by the fractional distillation of liquid air. Of the main components of air, oxygen has the highest boiling point and therefore is less volatile than nitrogen and argon.

How do plants get oxygen?

During respiration, animals and some bacteria take oxygen from the atmosphere and return to it carbon dioxide, whereas by photosynthesis, green plants assimilate carbon dioxide in the presence of sunlight and evolve free oxygen. Almost all the free oxygen in the atmosphere is due to photosynthesis.

Why is oxygen in the atmosphere?

Almost all the free oxygen in the atmosphere is due to photosynthesis. About 3 parts of oxygen by volume dissolve in 100 parts of fresh water at 20 °C (68 °F), slightly less in seawater. Dissolved oxygen is essential for the respiration of fish and other marine life.

Which element contains more oxygen than the basic oxide?

Peroxides and dioxides. A peroxide is a metallic oxide which gives hydrogen peroxide by the action of dilute acids. They contain more oxygen than the corresponding basic oxide, e.g., sodium, calcium and barium peroxides. Compound oxides.

What is the atomic number of oxygen?

Oxygen and Its Compounds. Oxygen is a chemical element with symbol O and atomic number 8. It is a member of the chalcogen group on the periodic table and is a highly reactive nonmetal and oxidizing agent that readily forms compounds (notably oxides) with most elements.

What is the most common method of preparation of oxygen gas?

The most common laboratory method of preparation of oxygen gas is by heating a mixture of potassium trioxochlorate (V), KClO3, and manganese (IV) oxide, MnO2, in a test tube. The potassium trioxochlorate (V) is decomposed in the presence of the heat to form potassium chloride, KCl, and the oxygen gas, O2.

Why is oxygen important for life?

Oxygen is essential for life and it takes part in processes of combustion, its biological functions in respiration make it important. Oxygen is sparingly soluble in water, but the small quantity of dissolved oxygen in is essential to the life of fish.

What are the physical properties of oxygen?

Oxygen is. A colourless gas, without smell or taste, it is slightly heavier than air, it is sparingly soluble in water, it is difficult to liquefy, boiling point -183 oC, and the liquid is pale blue in colour and is appreciably magnetic.

What is the boiling point of oxygen?

Fractional distillation of liquid air. The liquid oxygen is distilled to evolve, first, nitrogen at a boiling point of -196°C leaving behind oxygen-rich liquid. The liquid is further heated to -183°C to form gaseous oxygen which is dried, compressed and stored under pressure (at 100 atm) in a steel cylinder.

How much of the Earth's crust is oxygen?

Oxygen accounts for nearly half of the mass of the earth’s crust, two thirds of the mass of the human body and nine tenths of the mass of water. Oxygen is a colourless, odourless, tasteless gas. It is denser than air and only slightly soluble in water.

What is the color of oxygen?

Oxygen. Four representations chemists use for molecular oxygen. In the colored models, oxygen is traditionally shown as red. Oxygen is a chemical element with an atomic number of 8 (it has eight protons in its nucleus). Oxygen forms a chemical compound (O 2) of two atoms which is a colorless gas at normal temperatures and pressures.

How do we get oxygen?

We humans, along with many other creatures, need oxygen in the air we breathe to stay alive. Oxygen is generated during photosynthesis by plants and many types of microbes. Plants both use oxygen (during respiration) and produce it (via photosynthesis).

How does oxygen affect the environment?

Oxygen from photosynthetic microbes eventually built up in the atmosphere, drastically changing our planet's environment and the history of life in the process. Oxygen plays a critical role in respiration, the energy-producing chemistry that drives the metabolisms of most living things.

What is the difference between oxygen and ozone?

Oxygen can also form a molecule of three atoms, which is known as ozone (O 3 ). Ozone in Earth's stratosphere plays a helpful role by blocking most of the harmful UV radiation from the Sun, while ozone in the troposphere is a hazardous pollutant.

How much of the Earth's atmosphere is oxygen?

About 21% of Earth's atmosphere is oxygen. This hasn't always been the case, though. Early in our planet's history, the atmosphere had almost no oxygen. Microbes that produce their food via photosynthesis generate oxygen as a by-product.

Is oxygen a gas?

Oxygen forms a chemical compound (O 2) of two atoms which is a colorless gas at normal temperatures and pressures. Oxygen atoms are very reactive, and are incorporated into many common chemical compounds, such as water (H 2 O), carbon dioxide (CO 2 ), carbon monoxide (CO), sulfur oxides (SO 2 and SO 3 ), and nitrogen oxides (NO and NO 2 ). ...

Overview

Biomolecules

The element is found in almost all biomolecules that are important to, or generated by, life. Only a few common complex biomolecules, such as squalene and the carotenes, contain no oxygen. Of the organic compounds with biological relevance, carbohydrates contain the largest proportion by mass of oxygen (about 50%). All fats, fatty acids, amino acids, and proteins contain oxygen (due t…

Oxides

Water (H 2O) is the oxide of hydrogen and most familiar oxygen compound. Its bulk properties partly result from the interaction of its component atoms, oxygen and hydrogen, with atoms of nearby water molecules. Hydrogen atoms are covalently bonded to oxygen in a water molecule but also have an additional attraction (about 23.3 kJ·mol per hydrogen atom) to an adjacent oxygen atom …

Other inorganic compounds

The rest of the Earth's crust is formed also of oxygen compounds, most importantly calcium carbonate (in limestone) and silicates (in feldspars). Water-soluble silicates in the form of Na 4SiO 4, Na 2SiO 3, and Na 2Si 2O 5 are used as detergents and adhesives.
Peroxides retain some of oxygen's original molecular structure (( O-O ). White o…

Organic compounds

Among the most important classes of organic compounds that contain oxygen are (where "R" is an organic group): alcohol (R-OH); ethers (R-O-R); ketones (R-CO-R); aldehydes (R-CO-H); carboxylic acids (R-COOH); esters (R-COO-R); acid anhydrides (R-CO-O-CO-R); amides (R-C(O)-NR2). There are many important organic solvents that contain oxygen, among which: acetone, methanol, ethanol, i…

See also

• Oxygen
• Allotropes of oxygen
• Reactive oxygen species

Overview

Oxygen is the chemical element with the symbol O and atomic number 8. It is a member of the chalcogen group in the periodic table, a highly reactive nonmetal, and an oxidizing agent that readily forms oxides with most elements as well as with other compounds. Oxygen is Earth's most abundant element, and after hydrogen and helium, it is the third-most abundant element in the universe. At st…

History of study

One of the first known experiments on the relationship between combustion and air was conducted by the 2nd century BCE Greek writer on mechanics, Philo of Byzantium. In his work Pneumatica, Philo observed that inverting a vessel over a burning candle and surrounding the vessel's neck with water resulted in some water rising into the neck. Philo incorrectly surmised that parts of the air in the vessel were converted into the classical element fire and thus were abl…

Characteristics

At standard temperature and pressure, oxygen is a colorless, odorless, and tasteless gas with the molecular formula O 2, referred to as dioxygen.
As dioxygen, two oxygen atoms are chemically bound to each other. The bond can be variously described based on level of theory, but is reasonably and simply described as a covalent double bond that results from the filling of molecular orbitals formed from the atomic orbitals of the indivi…

Biological production and role of O2

In nature, free oxygen is produced by the light-driven splitting of water during oxygenic photosynthesis. According to some estimates, green algae and cyanobacteria in marine environments provide about 70% of the free oxygen produced on Earth, and the rest is produced by terrestrial plants. Other estimates of the oceanic contribution to atmospheric oxygen are higher, while some estimates are lower, suggesting oceans produce ~45% of Earth's atmospheri…

Industrial production

One hundred million tonnes of O 2 are extracted from air for industrial uses annually by two primary methods. The most common method is fractional distillation of liquefied air, with N 2 distilling as a vapor while O 2 is left as a liquid.
The other primary method of producing O 2 is passing a stream of clean, dry air through one bed of a pair of identical zeolite molecular sieves, which absorbs the nitrogen and delivers a gas strea…

Storage

Oxygen storage methods include high-pressure oxygen tanks, cryogenics and chemical compounds. For reasons of economy, oxygen is often transported in bulk as a liquid in specially insulated tankers, since one liter of liquefied oxygen is equivalent to 840 liters of gaseous oxygen at atmospheric pressure and 20 °C (68 °F). Such tankers are used to refill bulk liquid-oxygen storage containers, which stand outside hospitals and other institutions that need large volume…

Applications

Uptake of O 2 from the air is the essential purpose of respiration, so oxygen supplementation is used in medicine. Treatment not only increases oxygen levels in the patient's blood, but has the secondary effect of decreasing resistance to blood flow in many types of diseased lungs, easing work load on the heart. Oxygen therapy is used to treat emphysema, pneumonia, some heart disorders (congestive heart failure), some disorders that cause increased pulmonary artery pres…

Compounds

The oxidation state of oxygen is −2 in almost all known compounds of oxygen. The oxidation state −1 is found in a few compounds such as peroxides. Compounds containing oxygen in other oxidation states are very uncommon: −1/2 (superoxides), −1/3 (ozonides), 0 (elemental, hypofluorous acid), +1/2 (dioxygenyl), +1 (dioxygen difluoride), and +2 (oxygen difluoride).
Water (H 2O) is an oxide of hydrogen and the most familiar oxygen compound. Hydrogen atoms are covalently …

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    uri
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      Metadata
      Bindings
      • 0. 2025-06-21 19:06:45
      • 1. oxygen-element-compounds
      Backtrace
      • 15. /app/Providers/RouteServiceProvider.php:54
      • 18. /vendor/laravel/framework/src/Illuminate/Routing/Router.php:842
      • 19. Route binding:39
      • 20. /vendor/laravel/framework/src/Illuminate/Pipeline/Pipeline.php:167
      • 21. /vendor/laravel/framework/src/Illuminate/Foundation/Http/Middleware/VerifyCsrfToken.php:78
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      • 20. /vendor/laravel/framework/src/Illuminate/Pipeline/Pipeline.php:167
      • 21. /vendor/laravel/jetstream/src/Http/Middleware/ShareInertiaData.php:61
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      • 18. /vendor/laravel/framework/src/Illuminate/Routing/ControllerDispatcher.php:45
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      • 19. /vendor/outl1ne/nova-menu-builder/src/Models/Menu.php:35
      • 20. /vendor/outl1ne/nova-menu-builder/src/helpers.php:33
      • 22. /vendor/laravel/framework/src/Illuminate/Routing/Controller.php:54
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      • 27. /vendor/laravel/framework/src/Illuminate/Routing/Controller.php:54
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      Metadata
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