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Propenes can be produced by the cracking of some hydrocarbons obtained from crude oil - Edexcel - GCSE Chemistry - Question 5 - 2019 - Paper 1

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Propenes can be produced by the cracking of some hydrocarbons obtained from crude oil. The equation shows the cracking of one molecule of decane to produce one molec... show full transcript

Worked Solution & Example Answer:Propenes can be produced by the cracking of some hydrocarbons obtained from crude oil - Edexcel - GCSE Chemistry - Question 5 - 2019 - Paper 1

Step 1

Calculate the values of x and y in C\_H

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Answer

In the equation for the cracking of decane: C10H22C4H8+CxHyC_{10}H_{22} \rightarrow C_{4}H_{8} + C_{x}H_{y}.

To balance the equation:

  • Count the total number of carbon atoms on the left and right sides.
  • On the left, we have 10 carbons (from decane).
  • On the right, from butene, we have 4. Thus, the remaining carbons for the other product must be: 104=6 (for Cx) 10 - 4 = 6 \text{ (for } C_{x} \text{)}
  • For hydrogens, initially, we have 22 in decane. Butene contributes 8, leaving us with:
    228=14 (for Hy)22 - 8 = 14 \text{ (for } H_{y} \text{)}.

Thus, we find: x = 6

y = 14

Step 2

State the total mass of products formed if 25g of decane is cracked in this way.

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Answer

To calculate the mass of products formed, we first determine the moles of decane:

  1. Find the molar mass of decane, C_{10}H_{22}:

    • Molar mass = 10(12) + 22(1) = 142g/mol.
  2. Moles of decane in 25g: Moles=massmolar mass=251420.176 molMoles = \frac{mass}{molar \ mass} = \frac{25}{142} \approx 0.176 \text{ mol}

  3. Using the balanced equation, 1 mole of decane produces 1 + 1 = 2 moles of products. Therefore, total moles of products produced = 0.176 * 2 = 0.352 mol.

  4. Molar mass of the products (butene and the other molecule) is approximately the same as decane, around 142g/mol. Thus, total mass of products is: Total mass=moles×molar mass=0.352×142=50.144g50gTotal \ mass = moles \times molar \ mass = 0.352 \times 142 = 50.144g \approx 50g.

Step 3

Complete Figure 9 to show the electrons of the C=C double bond.

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Answer

In Figure 9, you should represent the double bond between the two carbon atoms (C=C) by showing:

  • 4 electrons represented as dots or crosses between these carbons to indicate the double bond. This can be illustrated as follows:
    • C : •• : C (using dots for electrons)
    • Or C : xx : C (using crosses for electrons) Thus, showing that there are two pairs of electrons shared in the double bond.

Step 4

Give the name of another product of the incomplete combustion of ethene.

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Answer

Another product of the incomplete combustion of ethene is carbon monoxide (CO). This occurs when there is a limited supply of oxygen, leading to the incomplete oxidation of the hydrocarbon.

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