2 fluorine atoms
The amount of heat absorbed by water is 188.28 J.
we know that, specific heat capacity is the amount of heat required to raise the temperature of 1 g of substance by 1 .0C
C = Q /W*ΔT
Q= C*W*ΔT
C= specific heat capacity
Q= amount of heat absorbed
W = weight of substance
ΔT = change in temperature
Specific heat capacity of water = 4.18 J/g.0C
Given that,
W = 15 g
ΔT = 3.0C
Q= C*W*ΔT
Q =4.184J/g. 0C*15g*3.0C
Q= 188.28 J
Thus, we can conclude that, the amount of heat absorbed by water is 188.28 J.
Learn more about heat capacity here:
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
Cu(OH)2 + HCl =
H2SO4 =
HNO3 =