Table of Contents
- 1 How much CO2 does butane produce?
- 2 How many moles of CO2 are produced when 1 mole of C4H10 reacted completely?
- 3 How many moles of CO2 are produced when 5 moles of butane react completely?
- 4 How much CO2 is produced when 1 mole of carbon is burnt?
- 5 How many moles of butane do we need to produce 10 moles of CO2 by reaction with oxygen?
- 6 How many moles of carbon are in 14.5 g butane?
- 7 How many moles of CO2 are produced from 4 butane atoms?
- 8 What is the chemical formula of butane?
How much CO2 does butane produce?
58.0 g butane in oxygen will produce 3.99 mol carbon dioxide .
How many moles of carbon dioxide are produced when one mole of butane is completely burnt in air?
In the complete combustion, per mole of butane, 4mol of CO2, 5mol of vapour H2O and 24.45mol of N2 appear in the combustion products.
How many moles of CO2 are produced when 1 mole of C4H10 reacted completely?
31 = 0.048 mol of C4H10 for a complete combustion to produce the said products. Therefore, the butane is in excess of (0.17-0.048) = 0.122 mol and will remain unreacted after the reaction. Therefore, the amount of CO2 produced by the reaction = (8/13)x 0.31 = 0.19 mol.
How many moles of carbon are in one mole of butane?
FREE Expert Solution. Mole-to-mole comparison: From the molecular formula of butane, C4H10, we can do a mole-to-mole comparison and see that there are 4 moles of C in 1 mole of C4H10. Avogadro’s Number: Avogadro’s number gives us the number of entities present in 1 mole of anything: 6.022 × 1023 C atoms in 1 mole C.
How many moles of CO2 are produced when 5 moles of butane react completely?
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Questions | Answer |
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36 Given the balanced equation for the reaction between butane and oxygen: 2C4H10 + 13O2 –> 8CO2 + 10 H2O + Energy How many moles of carbon dioxide are produced when 5.0 moles of butane react completely? (1) 5.0 mol (2) 10. mol (3) 20. mol (4) 40. mol | 3 |
How many moles of CO2 can be produced from the combustion of 2.0 mol of butane in the air?
Using stoichiometry, we can see that 2 moles of butane react with 13 moles of oxygen to form 8 moles of carbon dioxide…
How much CO2 is produced when 1 mole of carbon is burnt?
44 g
i) when 1 mole of carbon is burnt in 1 mole(32 g) of air(dioxygen) ,then according to chemical equation (1) 1mole(44 g) of carbon dioxide is produced.
What is the amount of CO2 produced when 1 mole of carbon is burnt in 16g of Dioxygen?
16 g will give 22 g CO2.
How many moles of butane do we need to produce 10 moles of CO2 by reaction with oxygen?
We need a balanced equation to start. This tells us that we’ll get 8 moles of CO2 per 2 moles of butane, for a molar ratio of 4 (moles CO2/mole C4H10). We have 10 moles of butane, so we will produce 2*10 moles of CO2.
How many moles are in butane?
Experimental molar mass (g/mole) of butane: 0.23 g/0.0040 moles = 58 g/mole 13. The molecular formula of butane is C4H10. Calculate its molar mass.
How many moles of carbon are in 14.5 g butane?
The mole is defined as the amount of substance that contains the number of carbon atoms in exactly 12 g of carbon-12, Avogadro’s number (6.022 × 1023) of atoms of carbon-12.
How many moles of CO2 are produced from 3.5 moles of c4h10?
Therefore, the moles of carbon dioxide produces will be 7.82 moles.
How many moles of CO2 are produced from 4 butane atoms?
The butane molecule contains 4 carbon atoms so 4 moles of CO2 are produced. Where is your stoichiometric equation to represent the complete combustion… Is this balanced?
What happens during the combustion of butane?
The combustion of butane is a reaction between butane and oxygen gas that produces carbon dioxide gas and water. 2C4H10(g) +13O2(g) → 8CO2(g) + 10H2O (g)
What is the chemical formula of butane?
The chemical formula of butane is #”C”_4″H”_10″#. The combustion of butane is a reaction between butane and oxygen gas that produces carbon dioxide gas and water. #color(red)(2)”C”_4″H”_10(“g”) + color(red)(13)”O”_2(“g”)##rarr##color(red)8″CO”_2(“g”) + color(red)(10)”H”_2″O(g)”#.
How do you convert H2O to O2 in a combustion reaction?
Combustion reactions with hydrocarbons ( compounds made up of only carbon and hydrogen, C4H 10) involve the hydrocarbon reacting with O2 gas to form H 2O and CO2 with the balanced equation, most of the work is done. We now simply convert from H 2O to O2 using the mol to mol ratios.