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Crazy boy [7]
3 years ago
11

1. convert 8.43 x 1025 atoms of Fe to moles

Chemistry
1 answer:
Luba_88 [7]3 years ago
4 0

Answer:

The number of moles of Fe are, 139.9 moles.

The number of moles of CO are, 7.89 moles.

The number of moles of Al are, 4.04\times 10^{-4} moles.

Explanation :

As we know that 1 mole of substance contains 6.022\times 10^{23} atoms or molecules.

Part 1:

As, 6.022\times 10^{23} atoms of Fe present in 1 mole

So, 8.43\times 10^{25} atoms of Fe present in \frac{8.43\times 10^{25}}{6.022\times 10^{23}}\times 1=139.9 mole

Thus, the number of moles of Fe are, 139.9 moles.

Part 2:

As, 6.022\times 10^{23} molecules of CO present in 1 mole

So, 4.75\times 10^{24} molecules of CO present in \frac{4.75\times 10^{24}}{6.022\times 10^{23}}\times 1=7.89 mole

Thus, the number of moles of CO are, 7.89 moles.

Part 3:

As, 6.022\times 10^{23} atoms of Al present in 1 mole

So, 2.43\times 10^{20} atoms of Al present in \frac{2.43\times 10^{20}}{6.022\times 10^{23}}\times 1=4.04\times 10^{-4} mole

Thus, the number of moles of Al are, 4.04\times 10^{-4} moles.

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faust18 [17]

Answer:

the carbon atoms in the double bond cannot rotate

Explanation:

Isomers refer to molecules that have a distinct arrangement of the atoms in the molecule but have the same molecular formula.

Alkenes refer to a series of unsaturated hydrocarbons that contain ethylene and propylene.

Some alkenes have geometric (cis-trans) isomers because <u>the carbon atoms in the double bond cannot rotate</u>.

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Which term names the concentration of salts dissolved in a liquid?
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Hey there!
The answer is D, Salinity.
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4 0
4 years ago
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A common antacid contains the acid-neutralizing agent sodium hydrogen carbonate. Write the chemical formula for sodium hydrogen
kaheart [24]
Sodium hydrogen carbonate has:
sodium \:  ion ( {Na}^{+}), hydrogen \\  ion ( {H}^{+}), and \:  carbonate \\ ion ( {CO3}^{2-})
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3 0
3 years ago
WHAT MASS OF 1,1 DICHLOROEHTANE MUST BE MIXED WITH 100G OF 1,1 DICHLOROTETRAFLUOROEHTANE TO GIVE A SOLUTION WITH VAPOR PRESSURE
vaieri [72.5K]

This is an incomplete question.

The complete question is:

1,1-dichlorotetrafluoroethane, CF3CCL2F, has a vapor pressure of 228 torr. What mass of 1,1-dichloroethane must be mixed with 100.0 g of 1,1-dichlorotetrafluoroethane to give a solution with vapor pressure 157 torr at 25 degrees celsius?

Answer: 46.9 g of 1,1 dichloroethane must be fixed with 100 g  of 1,1 dichlorotetrafluoroethane to give a solution with vapor pressure of 157 torr at 25^0C

Explanation:

As the relative lowering of vapor pressure is directly proportional to the amount of dissolved solute.

The formula for relative lowering of vapor pressure will be,

\frac{p^o-p_s}{p^o}=i\times x_2

where,

\frac{p^o-p_s}{p^o}= relative lowering in vapor pressure

i = Van'T Hoff factor = 1 (for non electrolytes)

x_2 = mole fraction of solute  

=\frac{\text {moles of solute}}{\text {total moles}}

Given : x g of solute is present in 100 g of solvent

moles of solute (1,1 DICHLOROEHTANE) = \frac{\text{Given mass}}{\text {Molar mass}}=\frac{xg}{98.96g/mol}moles

moles of solvent (1,1 DICHLOROTETRAFLUOROEHTANE ) = \frac{\text{Given mass}}{\text {Molar mass}}=\frac{100g}{170.92g/mol}=0.58moles

Total moles = moles of solute  + moles of solvent = \frac{xg}{98.96g/mol}+0.58

x_2 = mole fraction of solute   =\frac{\frac{xg}{98.96g/mol}}{\frac{xg}{98.96g/mol}+0.58}

\frac{228-157}{157}=1\times \frac{\frac{xg}{98.96g/mol}}{\frac{xg}{98.96g/mol}+0.58}

0.45=1\times \frac{\frac{xg}{98.96g/mol}}{\frac{xg}{98.96g/mol}+0.58}

x=46.9g

Thus 46.9 g of 1,1 dichloroethane must be fixed with 100 g  of 1,1 dichlorotetrafluoroethane to give a solution with vapor pressure of 157 torr at 25^0C

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Answer:

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