Determining enthalpy change of combustion Flashcards

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1
Q

Equipment used

A

A calorimeter filled with water above the organic compound being combusted
A thermometer

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2
Q

Overall idea of this method?

A

Measure the temperature change of the water in calorimeter to find temp change so we can calculate the enthalpy change of combustion

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3
Q

Why do we use this method?

A

Because it’s too difficult to measure temperature change of combusting organic material so when the heat is released (exothermic) it heats up water so measure temp rise of water

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4
Q

Step 1

A

Use a balance to measure the starting mass of the organic fuel AND spirit burner

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5
Q

Step 2

A

Pour a known mass of water into calorimeter using volumetric pipette and measure its initial temp

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6
Q

Step 3

A

Remove cap of spirit burner and light the wick

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7
Q

When should you remove cap of spirit burner lid?

A

Only when lighting wick: or else it evaporates
And thus not be an accurate measure or the mass change (larger mass change so larger enthalpy change as a result)

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8
Q

Step 4

A

Energy released of this combustion will heat up water causing water temperature to rise (exothermic)

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9
Q

Step 5

A

Still water with thermometer in calorimeter filled with water: distribute absorbed thermal energy of water

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10
Q

Step 6

A

Extinguish flame on wick by placing cap on wick after 3 mins

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11
Q

Step 7

A

Use thermometer to read the final temp of water

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12
Q

Step 8

A

Reweigh mass of spirit burner using balance, subtract this value from the fuel + spirit burner weighed to find mass of fuel burnt

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13
Q

What equation can we use to identify the enthalpy change of this reaction?

A

Q = mc△T
Energy = mass x specific heat capacity x change in temperature

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14
Q

What values from this experiment have we collected which we can use to find enthalpy change?

A

Temperature change of water
Mass of water (same as volume)
The mass of fuel burnt

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15
Q

What does the enthalpy of this experiment tell us that we calculated?

A

The heat energy absorbed by the water thus the heat energy released by the fuel combusting

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16
Q

How to find enthalpy change?

A

= mass of water x shc of water x temp change of water

17
Q

How to find enthalpy change PER MOL?

A

Divide the enthalpy released we calculated (in kJ) by the number of moles of fuel burnt, calculated from the mass of fuel burnt we recorded

18
Q

What is the enthalpy change symbol of the water?

A

None: just calculating the change in enthalpy

19
Q

What is the enthalpy change per mol symbol?

A

Negative: it is an exothermic reaction which releases energy

20
Q

Why the published value of enthalpy change or combustion is larger than the one we calculated

A

Leaving the unlit spirit burner uncapped
Some of the heat transferred not to water but metal calorimeter
Not all fuel underwent complete combustion
Not completed under standard conditions

21
Q

How does leaving spirit burner uncapped decrease the enthalpy change per mol of combustion below the published value?

A

Because it causes fuel to evaporate so thus we find a larger mass of fuel combusted (thus more moles)
So when dividing enthalpy change by a larger value, the enthalpy change per mol is smaller

22
Q
A
23
Q

If a substance burns in air with a smoky flame, what happens?

A

This means incomplete combustion occurred
So then the value of enthalpy change of combustion decreases: because less energy is released in incomplete combustion so the temp raise is smaller = incomplete combustion