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Anika [276]
3 years ago
8

Aluminum reacts with chlorine gas to produce aluminum chloride crystals. How many grams of aluminum chloride will be produced if

the reaction begins with 135.0g of Al and 475.0 g chlorine gas.
Chemistry
1 answer:
valina [46]3 years ago
3 0

Answer:

596 g of AlCl₃

Explanation:

The reaction is:

2Al + 3Cl₂  →  2AlCl₃

Firstly we need to determine the limiting reactant and we need to determine the moles of each

135 g . 1 mol / 26.98 g = 5 moles of Al

475 g . 1mol / 70.9 g = 6.7 moles of chlorine

Ratio in the reaction is 3:2

3 moles of chlorine gas need 2 moles of Al to react

Then, our 6.7 moles of gas might react to (6.7 . 2 ) /3 = 4.47 moles of Al

We have 5 moles of Al and we need 4.47 moles, so this is the excess reactant. In conclussion, Cl₂ is the limiting.

2 moles of Al react to 3 moles of gas

Our 5 moles of Al may react to (5 . 3 )/2 = 7.5 moles of gas

It's ok because we only have 6.7 moles, and there is not enough gas.

Now we calculate the product's mass

3 moles of gas can produce 2 moles of salt

Then, our 6.7 moles of gas will produce (6.7 . 2) /3 = 4.47 moles

We convert moles to mass: 4.47 mol . 133.33 g/mol = 596 g of AlCl₃

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Which temperature is the hottest, 200°C, 200°F or 200 Kelvin?
gogolik [260]

Answer:

200 °C

Explanation:

Let’s convert all the temperatures to the same scale, say, Celsius.

<em>Celsius</em>

Water boils at 100 °C, so 200 °C is the temperature of <em>superheated steam</em>.

<em>Fahrenheit </em>

Water boils at 212 °F, so 200 °F is <em>just below the boiling point of water</em>.

C = \frac{5 }{ 9}(F-32)

C = \frac{5 }{ 9}(200-32) = \frac{5 }{ 9}\times168 = 93 ^{\circ}\text{C}

<em>Kelvin </em>

Standard temperature is 0 °C = 273.15 K. Ice melts at 273.15 K (0 °C), so

200 K is <em>well below the melting point of ice</em>.

C = K – 273.15

C = 200 -273.15 = -73 °C

Thus, 200 °C is the hottest temperature.

3 0
3 years ago
Calculate the free energy change if the ratio of the concentrations of the products to the concentrations of the reactants is 22
steposvetlana [31]

Answer : The value of \Delta G_{rxn} is -8.65 kJ/mol

Explanation :

The formula used for \Delta G_{rxn} is:

\Delta G_{rxn}=\Delta G^o+RT\ln Q    ............(1)

where,

\Delta G_{rxn} = Gibbs free energy for the reaction  = ?

\Delta G_^o =  standard Gibbs free energy  = -16.7 kJ/mol

R = gas constant = 8.314\times 10^{-3}kJ/mole.K

T = temperature = 37.0^oC=273+37.0=310K

Q = reaction quotient = 22.7

Now put all the given values in the above formula 1, we get:

\Delta G_{rxn}=(-16.7kJ/mol)+[(8.314\times 10^{-3}kJ/mole.K)\times (310K)\times \ln (22.7)

\Delta G_{rxn}=-8.65kJ/mol

Therefore, the value of \Delta G_{rxn} is -8.65 kJ/mol

8 0
4 years ago
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Decrease in temperature also results in the decrease in solubility. Thus, due to decrease in temperature,  KNO_{3} will precipitate implies that the solubility of KNO_{3} in water decreases.

Hence, precipitation of KNO_{3} occurs.

4 0
3 years ago
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