Answer: The final temperature of the water is .
Explanation:
We know that molar mass of is 78 g/mol. And, the amount of heat produced when 2 mol of burns is 6542 KJ.
This means that,
= 156 g of burns, heat produced is 6542 kJ.
Therefore, heat produced (Q) by burning 7.3 g of is as follows.
= 306.13 kJ
or, = 306130 J (as 1 KJ = 1000 J)
For water, mass is given as 5691 g and specific heat capacity of water is 4.186 .
So, we will calculate the value of final temperature as follows.
Q =
306130 J =
= 12.85 + 21
=
Thus, we can conclude that the final temperature of the water is .
O 3.04 x 1028
O 5.76 x 1029
O 6.02 x 1023
O 3.13
There are 5.78 × 10^20 sulfide ions in sodium sulfide
The formula of the compound is Na2S. The molar mass of the compound is calculated as follows; 2(23) +32 = 46 + 32 = 78 g/mol
Number of moles of Na2S = 0.15 g/ 78 g/mol = 0.0019 moles
Since there is 1 mole of Na^+ and 2 moles of S^2- in Na2S, the number of S^2- ions in 0.19 moles of Na2S is 0.00096 moles of S^2-.
If 1 mole of S^2- contains 6.02 × 10^23
0.095 moles of S^2- contains 0.00096 moles × 6.02 × 10^23/ 1 mole
= 5.78 × 10^20 sulfide ions
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Mass of CO₂ = 1.3 x 10⁵ kg
A reaction coefficient is a number in the chemical formula of a substance involved in the reaction equation. The reaction coefficient is useful for equalizing reagents and products.
Reaction
2C₈H₁₈ + 25O₂⇒ 16CO₂ + 18H₂O
16 gallon = 60566,6 ml
0.629 moles will be present in moles of atoms are in 9.00 g of 13 carbon atom.
One mole of any substance is the amount of the substance which contain 6.023 × 10²³ atoms or molecule if the substance is atomic or molecular in nature and known as gram atomic mass.
Number of atoms in carbon is 9.00 grams and isotope are 13C,
Number of moles = weight of substance / mass of substance
Substituting the value in formula,
Number of moles = 9.00 grams / 13
Number of moles = 0.629 moles
Therefore, 0.629 moles will be present in moles of atoms are in 9.00 g of 13 carbon atom.
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Answer: The value of change in internal energy of the system is, 40 J.
Explanation : Given,
Heat absorb from the surroundings = 12 J
Work done on the system = 28 J
First law of thermodynamic : It is a law of conservation of energy in which the total mass and the energy of an isolated system remains constant.
As per first law of thermodynamic,
where,
= internal energy = ?
q = heat absorb from the surroundings
w = work done on the system
Now put all the given values in this formula, we get the change in internal energy of the system.
Therefore, the value of change in internal energy of the system is, 40J.
Answer: 1.5 M
Explanation:
Explanation:
The given data is as follows.
Concentration = 0.1
= 0.1 \frac{mol dm^{3}}{dm^{3}} \frac{10^{3}}{dm^{3}} \times \frac{6.022 \times 10^{23}}{1 mol} ions
=
T = = (30 + 273) K = 303 K
Formula for electric double layer thickness () is as follows.
=
where, = concentration =
Hence, putting the given values into the above equation as follows.
=
=
= m
or, =
= 1 nm (approx)
Also, it is known that =
Hence, we can conclude that addition of 0.1 of KCl in 0.1 of NaBr "" will decrease but not significantly.