6. Alyssia dissolves 4.00 g of sodium hydroxide, NaOH(s), In 200 mL of 0.5 mol/L solution of HCl(aq). The initial temperature of the solution was 23.0°C. AN = ? NaOH + HCl(aq) → NaCkaaj + H₂O10 The dissolution of NaOH(s) in water is represented by the following chemical equation: H NaOH → Na'a)+OH) AH=-42 kJ The neutralization of NaOH(aq) by HCl(aq) is represented by the following chemical equation: Na' + OH(a)+ H+ClNa + Ch+ H₂O AH = -63 kJ I Assume that the specific heat capacity and density of the solution is the same as those of water. What was the final temperature of the solution?

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6.
Alyssia dissolves 4.00 g of sodium hydroxide, NaOH(s), In 200 mL of 0.5 mol/L solution of
HCl(aq). The initial temperature of the solution was 23.0°C.
AN = ?
NaOH + HCl(aq) → NaCkaaj + H₂O10
The dissolution of NaOH(s) in water is represented by the following chemical equation:
H
NaOH → Na'a)+OH) AH=-42 kJ
The neutralization of NaOH(aq) by HCl(aq) is represented by the following chemical equation:
Na' + OH(a)+ H+ClNa + Ch+ H₂O AH = -63 kJ
I
Assume that the specific heat capacity and density of the solution is the same as those of water.
What was the final temperature of the solution?
Transcribed Image Text:6. Alyssia dissolves 4.00 g of sodium hydroxide, NaOH(s), In 200 mL of 0.5 mol/L solution of HCl(aq). The initial temperature of the solution was 23.0°C. AN = ? NaOH + HCl(aq) → NaCkaaj + H₂O10 The dissolution of NaOH(s) in water is represented by the following chemical equation: H NaOH → Na'a)+OH) AH=-42 kJ The neutralization of NaOH(aq) by HCl(aq) is represented by the following chemical equation: Na' + OH(a)+ H+ClNa + Ch+ H₂O AH = -63 kJ I Assume that the specific heat capacity and density of the solution is the same as those of water. What was the final temperature of the solution?
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