To determine the percentage of sodium nitrate in the original sample. Concept Introduction: A balanced chemical equation is an equation that contains same number of atoms as well as of each element of reactants and products of reaction. The limiting reactant in a particular reaction has due to following properties: Limiting reactant completely reacted in a particular reaction. Limiting reactant determines the amount of the product in mole. Theoretical yield is the amount of product which is theatrically calculates by the amount of limiting agent while the actual yield is the observed amount of product of any reaction. It is always less than the Theoretical yield because of following reasons: Some reactants are losing in the experiment condition. Some time some product also lost in transfer from one container to other container. Formation of side products. Sometimes all reactant are not reactant means some reactants are left in un-reacted form. The percentage yield is calculated by the actual or observed experimental yield divided by the theoretical yield and multiplied by 100. The percentage yield can be calculates by the use of following expression: Actual yield or given yield Theoretical yield or calculated yield × 100% .
To determine the percentage of sodium nitrate in the original sample. Concept Introduction: A balanced chemical equation is an equation that contains same number of atoms as well as of each element of reactants and products of reaction. The limiting reactant in a particular reaction has due to following properties: Limiting reactant completely reacted in a particular reaction. Limiting reactant determines the amount of the product in mole. Theoretical yield is the amount of product which is theatrically calculates by the amount of limiting agent while the actual yield is the observed amount of product of any reaction. It is always less than the Theoretical yield because of following reasons: Some reactants are losing in the experiment condition. Some time some product also lost in transfer from one container to other container. Formation of side products. Sometimes all reactant are not reactant means some reactants are left in un-reacted form. The percentage yield is calculated by the actual or observed experimental yield divided by the theoretical yield and multiplied by 100. The percentage yield can be calculates by the use of following expression: Actual yield or given yield Theoretical yield or calculated yield × 100% .
Solution Summary: The author explains that a balanced chemical equation contains the same number of atoms as well as of each element of reactants and products of reaction. Theoretical yield is the amount of product which is theatrically calculates by
To determine the percentage of sodium nitrate in the original sample.
Concept Introduction:
A balanced chemical equation is an equation that contains same number of atoms as well as of each element of reactants and products of reaction.
The limiting reactant in a particular reaction has due to following properties:
Limiting reactant completely reacted in a particular reaction.
Limiting reactant determines the amount of the product in mole.
Theoretical yield is the amount of product which is theatrically calculates by the amount of limiting agent while the actual yield is the observed amount of product of any reaction.
It is always less than the Theoretical yield because of following reasons:
Some reactants are losing in the experiment condition.
Some time some product also lost in transfer from one container to other container.
Formation of side products.
Sometimes all reactant are not reactant means some reactants are left in un-reacted form.
The percentage yield is calculated by the actual or observed experimental yield divided by the theoretical yield and multiplied by 100.
The percentage yield can be calculates by the use of following expression:
Actual yield or given yield Theoretical yield or calculated yield ×100% .
What is the lowest energy chair for the following cyclohexane?
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a.
b.
" "
d.
Answer the following questions using the below figure:
Potential Energy
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Reaction Progress
a. How many transition states occur in this reaction?
b. How many intermediates occur in this reaction?
c. Is this reaction spontaneous or nonspontaneous?
d. Does this reaction have a positive or negative AG?
e. Label the activation energy(ies).
Draw the following molecule as a chair in the lowest energy conformation. Then
perform a chair flip.
Br
Chapter 9 Solutions
Introductory Chemistry: Foundation - Text (Looseleaf)
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