The two sets of equations (both molecular and total ionic) with different reactants that have the same net ionic equation as the following equation is to be determined. Ba ( NO 3 ) 2 ( a q ) + Na 2 CO 3 ( a q ) → BaCO 3 ( s ) + 2 NaNO 3 ( a q ) Concept introduction: There are three types of equations that are utilized to represent an ionic reaction: 1. Molecular equation 2. Total ionic equation 3. Net ionic equation The molecular equation represents the reactants and products of the ionic reaction in undissociated form. A solid product is formed in the reaction. In total ionic reaction, all the soluble substances that are present in the reaction mixture are dissociated into ions and in net ionic reaction, the useful ions that participate in the reaction are represented.
The two sets of equations (both molecular and total ionic) with different reactants that have the same net ionic equation as the following equation is to be determined. Ba ( NO 3 ) 2 ( a q ) + Na 2 CO 3 ( a q ) → BaCO 3 ( s ) + 2 NaNO 3 ( a q ) Concept introduction: There are three types of equations that are utilized to represent an ionic reaction: 1. Molecular equation 2. Total ionic equation 3. Net ionic equation The molecular equation represents the reactants and products of the ionic reaction in undissociated form. A solid product is formed in the reaction. In total ionic reaction, all the soluble substances that are present in the reaction mixture are dissociated into ions and in net ionic reaction, the useful ions that participate in the reaction are represented.
The two sets of equations (both molecular and total ionic) with different reactants that have the same net ionic equation as the following equation is to be determined.
Ba(NO3)2(aq)+ Na2CO3(aq)→BaCO3(s)+2NaNO3(aq)
Concept introduction:
There are three types of equations that are utilized to represent an ionic reaction:
1. Molecular equation
2. Total ionic equation
3. Net ionic equation
The molecular equation represents the reactants and products of the ionic reaction in undissociated form. A solid product is formed in the reaction. In total ionic reaction, all the soluble substances that are present in the reaction mixture are dissociated into ions and in net ionic reaction, the useful ions that participate in the reaction are represented.
7. Calculate the following for a 1.50 M Ca(OH)2 solution.
a. The concentration of hydroxide, [OH-]
b. The concentration of hydronium, [H3O+]
c. The pOH
d. The pH
A first order reaction is 46.0% complete at the end of 59.0 minutes. What is the value of k? What is the
half-life for this reaction?
HOW DO WE GET THERE?
The integrated rate law will be used to determine the value of k.
In
[A]
[A]。
=
= -kt
What is the value of
[A]
[A]。
when the reaction is 46.0% complete?
3. Provide the missing compounds or reagents.
1.
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2. Cl
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