equals 3.265
b. boiling-point elevation
c. vapor-pressure lowering
d. freezing-point depression
Answer:
its D
Explanation:
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The amount of heat that is released by the chemical reaction of 25.0 g of with water is -20.223 Joules.
Given the following data:
To find the amount of heat that is released by the chemical reaction of 25.0 g of with water:
First of all, we would determine the number of moles of in this chemical reaction:
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Substituting the values into the formula, we have;
Number of moles () = 0.321 moles.
Now, we can find the quantity of heat released when reacts with water:
2 mole of = -126 kJ/mol
0.321 mole of = X kJ/mol
Cross-multiplying, we have:
×
X = -20.223 Joules.
Read more: brainly.com/question/13197037
Answer : The amount of heat released by the reaction is, 20.2 kJ
Explanation :
First we have to calculate the number of moles of .
Molar mass of = 77.98 g/mole
Now we have to calculate the heat released during the reaction.
The balanced chemical reaction is:
From the reaction we conclude that,
As, 2 moles of releases heat = 126 kJ
So, 0.320 moles of releases heat =
Therefore, the amount of heat released by the reaction is, 20.2 kJ
ion in the aqueous solution is
(1) O2 (aq) (3) H (aq)
(2) OH2 (aq) (4) OH (aq)
Answer : The correct option is, (4) .
Explanation :
According to the Arrhenius theory, an acid is a substance that ionizes in water to gives ions (hydronium ions or hydrogen ions) and a base is a substance which ionizes in water to gives ions (hydroxide ions).
As we know that when the potassium hydroxide (KOH) dissolves in water or ionizes in water to gives ions (hydroxide ions) and ions (potassium ion). That means ion is a negative ion in aqueous solution and ions is a positive ion in aqueous solution.
Hence, the correct option is, (4) .