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Here we're going to assume none of the acetylene gets a chance to escape into the atmosphere. Since it's lighter than air, we'll have to...I don't know, react it in a jar or something.

We know the reaction we're going for is:

C2H2 + n(O2) (meaning we have more oxygen than we could ever use) -> 2CO2 + H2O + n(O2)

Therefore, to get the number of molecules of CO2 from this reaction, just double the molecules of acetylene and you're golden.

How acetylene ACTUALLY burns is a little different. Three reactions occur simultaneously:

C2H2 + O2 -> 2CO + H2

2CO + O -> 2CO2

2H2 + O2 -> 2H2O

It does this because acetylene is so energetic it can't wait to split two molecules of oxygen apart before it reacts.

But at the end of it, you still get two CO2 molecules for every acetylene molecule.

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What type of Balanced equation for the complete oxidation reaction that occurs when acetylene C2H2 burns in air?

The balanced equation for the complete oxidation of acetylene (C2H2) burning in air is: 2C2H2 + 5O2 -> 4CO2 + 2H2O. This equation shows that two molecules of acetylene react with five molecules of oxygen to produce four molecules of carbon dioxide and two molecules of water.


How many grams of carbon dioxide are produced from the combustion of 1.3 moles of acetylene C2H2?

The balanced chemical equation for the combustion of acetylene is: 2C2H2 + 5O2 → 4CO2 + 2H2O. This means 2 moles of C2H2 produce 4 moles of CO2. Therefore, 1.3 moles of C2H2 will produce 2.6 moles of CO2, which is equivalent to approximately 84.8 grams of CO2.


How chloroform converted to acetylene?

Chloroform cannot be directly converted to acetylene. Acetylene is typically produced from calcium carbide through a reaction known as the acetylene generation process. In this process, water is added to calcium carbide to produce acetylene gas.


How many molecule of carbon dioxide are produce when Krebs cycle operates once?

One molecule of glucose is broken down into two molecules of pyruvate during glycolysis. Each pyruvate molecule then enters the Krebs cycle and is fully oxidized to produce three molecules of carbon dioxide. Therefore, in total, six molecules of carbon dioxide are produced when the Krebs cycle operates once.


How many carbon dioxide molecules will be made in photosynthesis?

For every six molecules of carbon dioxide (CO2) taken in during the process of photosynthesis, one molecule of glucose (C6H12O6) is produced. This means that six molecules of CO2 are required to produce one molecule of glucose.

Related Questions

Will acetylene gas produce carbon monoxide?

No, acetylene gas itself does not produce carbon monoxide. When acetylene undergoes combustion, it primarily produces carbon dioxide and water vapor. Carbon monoxide is usually produced when there is incomplete combustion of carbon-containing compounds.


What type of Balanced equation for the complete oxidation reaction that occurs when acetylene C2H2 burns in air?

The balanced equation for the complete oxidation of acetylene (C2H2) burning in air is: 2C2H2 + 5O2 -> 4CO2 + 2H2O. This equation shows that two molecules of acetylene react with five molecules of oxygen to produce four molecules of carbon dioxide and two molecules of water.


How many grams of carbon dioxide are produced from the combustion of 1.3 moles of acetylene C2H2?

The balanced chemical equation for the combustion of acetylene is: 2C2H2 + 5O2 → 4CO2 + 2H2O. This means 2 moles of C2H2 produce 4 moles of CO2. Therefore, 1.3 moles of C2H2 will produce 2.6 moles of CO2, which is equivalent to approximately 84.8 grams of CO2.


How chloroform converted to acetylene?

Chloroform cannot be directly converted to acetylene. Acetylene is typically produced from calcium carbide through a reaction known as the acetylene generation process. In this process, water is added to calcium carbide to produce acetylene gas.


How many moles of Co2 will be produced from the reaction of three moles of acetylene with excess oxygen?

Since acetylene (C2H2) has a stoichiometry of 2 moles of acetylene to produce 2 moles of CO2, three moles of acetylene would produce 3 moles of CO2. The reaction with excess oxygen ensures that all the acetylene is fully converted to CO2.


How many molecule of carbon dioxide are produce when Krebs cycle operates once?

One molecule of glucose is broken down into two molecules of pyruvate during glycolysis. Each pyruvate molecule then enters the Krebs cycle and is fully oxidized to produce three molecules of carbon dioxide. Therefore, in total, six molecules of carbon dioxide are produced when the Krebs cycle operates once.


How many carbon dioxide molecules will be made in photosynthesis?

For every six molecules of carbon dioxide (CO2) taken in during the process of photosynthesis, one molecule of glucose (C6H12O6) is produced. This means that six molecules of CO2 are required to produce one molecule of glucose.


When the reaction is balanced how many carbon dioxide molecules are produced for every methane molecule burned?

When methane is burned, one molecule of methane (CH4) reacts with two molecules of oxygen (O2) to produce one molecule of carbon dioxide (CO2) and two molecules of water (H2O). So, for every molecule of methane burned, one molecule of carbon dioxide is produced.


How many molecules of carbon dioxide are used to produce one 6 carbon sugar molecule?

Six molecules of carbon dioxide are used to produce one 6-carbon sugar molecule through the process of photosynthesis.


What is the waste product that is produced by the matrix?

The Krebs cycle produces a small number of ATP, other energy-carrying molecules, and carbon dioxide (CO2), which is released as a waste produce.


Does helium produce carbon dioxide?

No, helium does not produce carbon dioxide. Helium is an inert gas and does not react chemically with other substances to produce carbon dioxide. Carbon dioxide is produced from the combustion of carbon-containing compounds.


What is the mass of CO2 and H2O produced after combusting 100 g of acetylene?

The balanced chemical equation for the combustion of acetylene (C2H2) is 2C2H2 + 5O2 -> 4CO2 + 2H2O. From the equation, for every 2 moles of acetylene combusted, 4 moles of CO2 and 2 moles of H2O are produced. Since the molar mass of acetylene is 26 g/mol, 100 g of acetylene is equivalent to 100/26 = 3.85 moles. Therefore, 3.85 moles of acetylene combustion would produce 7.7 moles of CO2 and 3.85 moles of H2O.