🗊Презентация The ideal gas equation

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11.2.2.3 recall and understand the use of the ‘molar volume’
11.2.2.4 recall and be able to use the ideal gas equation
11.2.2.7 understand the purpose of, be able to carry out, and be able to carry out calculations involving, titration
11.1.1.7 be able to calculate empirical and molecular formulas from analysis data
11.2.2.8 be able to calculate theoretical yield and percentage yield of reactions
11.2.2.9 understand and be able to calculate atom economy
Calculations
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11.2.2.3 recall and understand the use of the ‘molar volume’ 11.2.2.4 recall and be able to use the ideal gas equation 11.2.2.7 understand the purpose of, be able to carry out, and be able to carry out calculations involving, titration 11.1.1.7 be able to calculate empirical and molecular formulas from analysis data 11.2.2.8 be able to calculate theoretical yield and percentage yield of reactions 11.2.2.9 understand and be able to calculate atom economy Calculations

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Converting units for pV = nRT
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Converting units for pV = nRT

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Calculating gas volumes
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Calculating gas volumes

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Definitions
Know that:
The theoretical yield is the maximum mass of products which would be obtained from the balanced equation.
The actual yield is the mass of products obtained.
The percentage yield =   Actual yield             x 100%
				       Theoretical yield 
Limiting reactant is the substance present in lowest quantity  which determines the actual yield.
Excess – more than the mass determined by the balanced equation is used to maximise product obtained.
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Definitions Know that: The theoretical yield is the maximum mass of products which would be obtained from the balanced equation. The actual yield is the mass of products obtained. The percentage yield = Actual yield x 100% Theoretical yield Limiting reactant is the substance present in lowest quantity which determines the actual yield. Excess – more than the mass determined by the balanced equation is used to maximise product obtained.

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