Answer:
the difference is they arnt close
Explanation:
Answer:
China is communist, Europe isn't.
Explanation:
Answer:
Asnwer : Empirical formula of a compound is :
Given information : C = 64.3 % , H = 7.2 % , O = 28.5 %
Step 1 : Convert the given percentage (%) to grams.
Explanation : Let the total mass of the compound be 100 grams.
Mass of C = 64.3 g
Mass of H = 7.2 g
Mass of O = 28.5 g
Step 2 : Convert the grams of each compound to moles.
Molar mass of C = 12.0g/mol
Molar mass of H = 1.0 g/mol
Molar mass of O = 16.0g/mol
Moles of C = 5.36 mol
Moles of H = 7.2 mol
Moles of O = 1.78 mol
Step 3 : Find the mole ratio of C , H and O
Mole ratio is calculated by dividing the mole values by the smallest value.
Mole of C = 5.36 mol , Mole of H = 7.2 mol , Mol of O = 1.78 mol
Out of the three mole values , mole value of O that is 1.78 mol is less , so we divide all the mole values by 1.78 mol.
C : H : O = 3 : 4 : 1
So empirical formula of the compound is or
Explanation:
Starting moles of ethanol acid = 0.020 mol
At the equilibrium 50 % of the ethanol acid molecules reacted
∴ Moles of ethanol acid reacted = 0.020 mol * 50 %/100 %
= 0.010 mol
Moles of ethanol acid remain = 0.020 mol + 0.010 mol = 0.010 mol
Moles of the product gas formed are calculated as
0.010 mol CH3COOH * 1 mol / 2 mol CH3COOH
= 0.005 mol
Therefore at the equilibrium total moles of gas present in the vessel are 0.010 mol CH3COOH and 0.005 mol
That is total gas moles at equilibrium = 0.010 mol + 0.005 mol = 0.015 mol
Now Calculate the pressure :
0.020 mol gas has pressure of 0.74 atm therefore at the same condition what will be the pressure exerted by 0.015 mol gas
P1/n1 = P2/n2
P2 = P1*n2 / n1
= 0.74 atm * 0.015 mol / 0.020 mol
= 0.555 atm
of this experiment?
Xe(g) + 2 F2 (g) - XeF. (g)
The percentage yield of XeF from the concentration of the given reactants will be 25%.
The reaction states that 1 mole of Xe will give 1 mole of XeF, and 2 moles of fluorine, will gives 1 mole of XeF.
The limiting reactant can be calculated:
1 mole Xe = 2 moles of
2.2 moles of Xe = 2.2 2 moles of
2.2 moles of Xe = 4.4 moles of
Since the amount of available has been in the limiting, thus has been the limiting reactant.
So, the yield of XeF in terms of will be:
2 moles = 1 mole XeF
Thus the theoretical yield of XeF is 1 mole.
The yield of XeF we get = 0.25 moles.
Thus the percentage yield =
Percentage yield =
Percentage yield = 25%
Thus the percentage yield of XeF from the concentration of the given reactants will be 25%.
For more information about the percent yield, refer to the link:
Answer:
Inorganic impurities present in the bulk of a liquid such as KCl tend to increase the surface tension of water.
Explanation:
As potassium chloride (KCl) dissolves in water, the ions are hydrated. ... When ionic compounds dissolve in water, the ions in the solid separate and disperse uniformly throughout the solution because water molecules surround and solvate the ions, reducing the strong electrostatic forces between them.
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Answer:
4,25% v/v H3PO4
Explanation:
The concentration of phosphoric acid (H3PO4) is expressed as a volume / volume percentage, which means:
%v/v H3PO4 = (mL of pure H3PO4/mL of solution)*100%
In other words, we are only interested in the final volume of the solution to which the phosphoric acid was diluted, regardless of its composition. Which in this case is 1 L (1000 mL).
We can then apply the following equation, commonly used to calculate the initial or final concentration (or volume) of a substance when it is diluted:
Ci*Vi=Cf*Vf
Where:
Ci, is the initial concentration of the substance.
Vi, the initial volume of the substance
Cf, the final concentration reached after dilution
Vf, the final volume of the solution at which the substance was diluted
In this case, the incognite would be the final concentration of H3PO4 reached after dilution, that is, Cf. Therefore, we proceed to clear Cf from the previous equation and replace our data:
Cf = (Ci*Vi)/Vf = (85% v/v * 50 mL)/1000 mL = 4,25 % v/v
Note that being up and down in the division, the mL unit is canceled to result in% v / v.