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:
Use the expression below to
⚫ calculate its value and report it to the proper number of significant digits (you may need to
round your answer).
⚫ calculate the % error (or % relative error or % inherent error)
⚫ calculate the absolute error.
(20.54±0.02 × 0.254±0.003) / (3.21±0.05) =
Value:
% Error:
Absolute error: ± |
% (only 1 significant digit)
(only 1 significant digit)
In each case (more ductile, more brittle, more tough or resistant), indicate which parameter has a larger value.
parameter Elastic limit Tensile strength
more ductile
Strain at break Strength Elastic modulus
more fragile
more tough or resistant
None
Chapter 4 Solutions
Student Solutions Manual For Silberberg Chemistry: The Molecular Nature Of Matter And Change With Advanced Topics
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