When 1.04g of cyclopropane was burnt in excess oxygen in a bomb calorimeter, the temperature rose by 3.69K. The total heat capacity of the calorimeter and it's contents was 14.01kJ/K. Determine the enthalpy of combustion of cyclopropane.

Answers

Answer 1

Answer:

[tex]\Delta _{comb}H=-2,093\frac{kJ}{mol}[/tex]

Explanation:

Hello!

In this case, since these calorimetry problems are characterized by the fact that the calorimeter absorbs the heat released by the combustion of the substance, we can write:

[tex]Q_{rxn}+Q_{cal}=0[/tex]

Thus, given the temperature change and the total heat capacity, we obtain the following total heat of reaction:

[tex]Q_{rxn}=-14.01kJ/K*3.69K\\\\Q_{rxn}=-51.70kJ[/tex]

Now, by dividing by the moles in 1.04 g of cyclopropane (42.09 g/mol) we obtain the enthalpy of combustion of this fuel:

[tex]n=\frac{1.04g}{42.09g/mol}=0.0247mol\\\\\Delta _{comb}H=\frac{Q_{rxn}}{n}\\\\ \Delta _{comb}H=-2,093\frac{kJ}{mol}[/tex]

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Answer 2

The enthalpy of combustion of cyclopropane is [tex]\Delta _c_o_m_b H= - 2.093 kJ/mol[/tex]

What is the enthalpy of combustion?

Enthalpy of combustion is the amount of heat produced when one mole of substance completely burns.

By the formula of calorimetry

[tex]Q_r_x_n + Q_c_a_l = 0[/tex]

The temperature change and total heat capacity is

[tex]Q_r_x_n = -14.01 KJ/K \times 3.69 K\\\\Q_r_x_n = -51.70 KJ[/tex]

Now, we get the enthalpy of combustion by dividing by the moles of 1.04 g of cyclopropane.

The number of moles is 42.09 g/mol.

[tex]n = \dfrac{1.4}{42.09} = 0.0247\\\\\Delta_c_o_m_bH =\dfrac{Q_r_x_n}{n} \\\\\Delta_c_o_m_bH = -2.093\; kJ/mol[/tex]

Thus, the enthalpy of combustion is -2.093 kJ/mol

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Answers

Answer:

Correct option is

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Answer:

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Explanation:

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Answer:

Explanation:

Hello!

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Can somebody please help me

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Answer:

a) carboxylic acid

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c) ester

d) aldehyde

e) alkene

f) ketone

Explanation:

Most of them are straight forward.

24.50 g of Na react with H2O to make sodium hydroxide and H, gas. How much sodium
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Answers

Answer:

42.61 g of NaOH.

Explanation:

We'll begin by writing the balanced equation for the reaction. This is illustrated below:

2Na + 2H₂O —> 2NaOH + H₂

Next, we shall determine the mass of Na that reacted and the mass of NaOH produced from the balanced equation. This is illustrated below:

Molar mass of Na = 23 g/mol

Mass of Na from the balanced equation = 2 × 23 = 46 g

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= 40 g/mol

Mass of NaOH from the balanced equation = 2 × 40 = 80 g

SUMMARY:

From the balanced equation above,

46 g of Na reacted to produce 80 g of NaOH.

Finally, we shall determine the mass of NaOH produced by the reaction of 24.50 g of Na. This can be obtained as follow:

From the balanced equation above,

46 g of Na reacted to produce 80 g of NaOH.

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Thus, 42.61 g of NaOH were obtained from the reaction.

3.
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Answers

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Answers

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They said it was the answer.

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Answers

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manipulate the formula to favor so to find v1 the formula would be

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Answers

Explanation:

H2Se, HBr, MgH2, Hl

Because H2Se is stronger than Hl..

Use the References to access important values if needed for this question.
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mol sodium hydroxide
Submit Answer
Retry Entire Group
2 more group attempts remaining

Answers

Answer:

0.263 mole of NaOH

Explanation:

We'll begin by writing the balanced equation for the reaction. This is illustrated below:

2Na + 2H₂O —> 2NaOH + H₂

From the balanced equation above,

2 moles of Na reacted to produce 2 moles NaOH.

Finally, we shall determine the number of mole of NaOH produced by the reaction of 0.263 mole sodium, Na. This can be obtained as follow:

From the balanced equation above,

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True

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Answers

Answer:

D

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Ap3x

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An energy profile is a theoretical representation of a chemical reaction or process as a single energetic pathway that transforms reactants into products.

The amount of relative potential energy in each step of a reaction is depicted by an energy diagram. Reactants, transition states, and products are typically depicted on energy diagrams. It may also include intermediates and activation energy, depending on the reaction.

An energy diagram depicts how an object's potential energy varies with position and provides information about the object's motion.The potential energy curve depicts the amount of potential energy that the boulder has at each position.

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Answers

Answer:

0.046 mol

Explanation:

Step 1: Write the balanced equation

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Step 2: Calculate the moles corresponding to 3.6 g of Fe₂O₃

The molar mass of Fe₂O₃ is 159.69 g/mol.

3.6 g × 1 mol/159.69 g = 0.023 mol

Step 3: Calculate the moles of Fe produced from 0.023 moles of Fe₂O₃

The molar ratio of Fe₂O₃ to Fe is 1:2.

0.023 mol  Fe₂O₃ × 2 mol Fe/1 mol Fe₂O₃ = 0.046 mol Fe

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Answers

Answer:

Inorganic impurities present in the bulk of a liquid such as KCl tend to increase the surface tension of water.

Explanation:

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