The grams of NaH 2 PO 4 needed to react with 43.74 mL of 0.285 M NaOH is to be calculated. Concept introduction: Strong acids and strong bases are the substance that dissociates completely into its ions when dissolved in the solution. They dissociate completely in water to release H + ions and OH − ions. Weak acids and weak bases are the substance that does not dissociate completely into its ions when dissolved in the solution. They dissociate partially in water to release H + ions and OH − ions. Sodium dihydrogen phosphate ( NaH 2 PO 4 ) is a weak acid and sodium hydroxide ( NaOH ) is a strong base. Sodium hydroxide ( NaOH ) dissociates completely into ions and sodium dihydrogen phosphate ( NaH 2 PO 4 ) dissociates to some extent into ions. They both react to form sodium phosphate and a water molecule. The molecular equation for the acid-base reaction of sodium dihydrogen phosphate and sodium hydroxide is: NaH 2 PO 4 ( s ) + 2 NaOH ( a q ) → Na 3 PO 4 ( a q ) + 2 H 2 O ( l )
The grams of NaH 2 PO 4 needed to react with 43.74 mL of 0.285 M NaOH is to be calculated. Concept introduction: Strong acids and strong bases are the substance that dissociates completely into its ions when dissolved in the solution. They dissociate completely in water to release H + ions and OH − ions. Weak acids and weak bases are the substance that does not dissociate completely into its ions when dissolved in the solution. They dissociate partially in water to release H + ions and OH − ions. Sodium dihydrogen phosphate ( NaH 2 PO 4 ) is a weak acid and sodium hydroxide ( NaOH ) is a strong base. Sodium hydroxide ( NaOH ) dissociates completely into ions and sodium dihydrogen phosphate ( NaH 2 PO 4 ) dissociates to some extent into ions. They both react to form sodium phosphate and a water molecule. The molecular equation for the acid-base reaction of sodium dihydrogen phosphate and sodium hydroxide is: NaH 2 PO 4 ( s ) + 2 NaOH ( a q ) → Na 3 PO 4 ( a q ) + 2 H 2 O ( l )
The grams of NaH2PO4 needed to react with 43.74 mL of 0.285MNaOH is to be calculated.
Concept introduction:
Strong acids and strong bases are the substance that dissociates completely into its ions when dissolved in the solution. They dissociate completely in water to release H+ ions and OH− ions.
Weak acids and weak bases are the substance that does not dissociate completely into its ions when dissolved in the solution. They dissociate partially in water to release H+ ions and OH− ions.
Sodium dihydrogen phosphate (NaH2PO4) is a weak acid and sodium hydroxide (NaOH) is a strong base. Sodium hydroxide (NaOH) dissociates completely into ions and sodium dihydrogen phosphate (NaH2PO4) dissociates to some extent into ions. They both react to form sodium phosphate and a water molecule.
The molecular equation for the acid-base reaction of sodium dihydrogen phosphate and sodium hydroxide is:
4) Answer the following exercise with curved arrows indicating who is a
nucleophile or Who is the electrophile?
2.44 Predict the structure of the product formed in the reaction of the organic base
pyridine with the organic acid acetic acid, and use curved arrows to indicate
the direction of electron flow.
7
H3C
OH
N
Pyridine
Acetic acid
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