The original molarity of the given formic acid solution whose K a is 1.7 × 10 − 4 and pH is 3.26 at 25 ∘ C has to be calculated Concept Information: Acid ionization constant K a : Acids ionize in water. Strong acids ionize completely whereas weak acids ionize to some limited extent. The degree to which a weak acid ionizes depends on the concentration of the acid and the equilibrium constant for the ionization. The ionization of a weak acid HA can be given as follows, HA ( a q ) → H + ( a q ) + A - ( a q ) The equilibrium expression for the above reaction is given below. K a = [ H + ][A - ] [ HA] Where, K a is acid ionization constant, [ H + ] is concentration of hydrogen ion [ A - ] is concentration of acid anion [ HA] is concentration of the acid pH definition: The concentration of hydrogen ion is measured using pH scale. The acidity of aqueous solution is expressed by pH scale. The pH of a solution is defined as the negative base-10 logarithm of the hydrogen or hydronium ion concentration. pH = -log[H + ] To Calculate: The molarity of the given formic acid solution whose K a is 1.7 × 10 − 4 and pH is 3.26 at 25 ∘ C
The original molarity of the given formic acid solution whose K a is 1.7 × 10 − 4 and pH is 3.26 at 25 ∘ C has to be calculated Concept Information: Acid ionization constant K a : Acids ionize in water. Strong acids ionize completely whereas weak acids ionize to some limited extent. The degree to which a weak acid ionizes depends on the concentration of the acid and the equilibrium constant for the ionization. The ionization of a weak acid HA can be given as follows, HA ( a q ) → H + ( a q ) + A - ( a q ) The equilibrium expression for the above reaction is given below. K a = [ H + ][A - ] [ HA] Where, K a is acid ionization constant, [ H + ] is concentration of hydrogen ion [ A - ] is concentration of acid anion [ HA] is concentration of the acid pH definition: The concentration of hydrogen ion is measured using pH scale. The acidity of aqueous solution is expressed by pH scale. The pH of a solution is defined as the negative base-10 logarithm of the hydrogen or hydronium ion concentration. pH = -log[H + ] To Calculate: The molarity of the given formic acid solution whose K a is 1.7 × 10 − 4 and pH is 3.26 at 25 ∘ C
Solution Summary: The author explains how the molarity of a given formic acid solution is calculated. The concentration of hydrogen ion is measured using pH scale.
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For each pair of substrates below, choose the one that will react faster in a substitution reaction, assuming that:
1. the rate of substitution doesn't depend on nucleophile concentration and
2. the products are a roughly 50/50 mixture of enantiomers.
Substrate A
Substrate B
Faster Rate
X
CI
(Choose one)
(Choose one)
CI
Br
Explanation
Check
Br
(Choose one)
C
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A
F10
How to draw this mechanism for the foloowing reaction in the foto. thank you
Predict the major products of the following organic reaction:
Some important notes:
CN
A?
• Draw the major product, or products, of the reaction in the drawing area below.
• If there aren't any products, because no reaction will take place, check the box below the drawing area instead.
• Be sure to use wedge and dash bonds when necessary, for example to distinguish between major products that are enantiomers.
No reaction.
Explanation
Check
Click and drag to start drawing a structure.
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