Chemistry · Professor Curie

Every card in Organic chemistry, Year 11: combustion, cracking and alkenes

The whole deck, in order — so you can read it through before your child ever sees it.

1 GCSE-CHEM-ORG-0016

How does the boiling point of a hydrocarbon change as its molecules get bigger?

It increases

HintBigger molecules attract each other more strongly.

WhyThe forces between larger molecules are stronger, so more energy is needed to separate them. Methane boils far below room temperature, while the largest hydrocarbons in crude oil are solids.

2 GCSE-CHEM-ORG-0017

A measure of how thick a liquid is and how slowly it flows

Viscosity

HintTreacle has a lot of it; water has little.

WhyThe more viscous a liquid, the more slowly it pours. In hydrocarbons, viscosity increases as the molecules get bigger.

3 GCSE-CHEM-ORG-0018

Two liquid hydrocarbons are poured down a sloping tile. One has 8 carbon atoms in each molecule and the other has 20. Which runs down more slowly?

The one with 20 carbon atoms

HintLong molecules get more tangled and hold on to each other more.

WhyViscosity increases with molecular size, so the liquid with the bigger molecules is thicker and flows more slowly. This is why petrol is runny and lubricating oil is not.

4 GCSE-CHEM-ORG-0019

How does the flammability of a hydrocarbon change as its molecules get bigger?

It decreases: bigger molecules are harder to ignite

HintCompare lighting gas on a hob with trying to light thick engine oil.

WhySmall hydrocarbon molecules turn to vapour easily and the vapour catches fire readily. Large ones do not vaporise easily and are hard to set alight.

5 GCSE-CHEM-ORG-0020

Petrol has much smaller molecules than heavy fuel oil. Why do its smaller molecules make petrol the better fuel for a car engine?

It catches light more easily and flows more easily

HintThink about getting the fuel to the engine, and then getting it to burn.

WhySmall molecules mean high flammability and low viscosity, so petrol can be pumped through narrow pipes and ignites readily. Heavy fuel oil is thick and hard to light, which suits large ship engines and power stations instead.

6 GCSE-CHEM-ORG-0021

The complete combustion of a hydrocarbon produces ____ and ____.

carbon dioxide; water

HintOne product comes from each of the two elements in the fuel, joined to oxygen.

WhyWith plenty of oxygen, every carbon atom in the fuel ends up in CO2 and every hydrogen atom ends up in H2O. The reaction also releases energy, which is the reason for burning the fuel.

7 GCSE-CHEM-ORG-0022

How many molecules of water are produced when one molecule of butane, C4H10, burns completely? (number only)

5

HintEvery water molecule needs two hydrogen atoms.

WhyAll 10 hydrogen atoms in the butane molecule end up in water, H2O, which holds two each: 10 ÷ 2 = 5. In the same way the 4 carbon atoms give 4 molecules of CO2.

8 GCSE-CHEM-ORG-0023

Write the balanced symbol equation for the complete combustion of propane, C3H8.

C3H8 + 5O2 → 3CO2 + 4H2O

HintBalance carbon first, then hydrogen, and leave oxygen until last.

WhyThree carbon atoms need 3CO2 and eight hydrogen atoms need 4H2O. The products then contain 6 + 4 = 10 oxygen atoms, which is 5 molecules of O2.

9 GCSE-CHEM-ORG-0024

When a hydrocarbon fuel burns, the carbon and the hydrogen in it are both ____.

oxidised

HintIt is the word for gaining oxygen.

WhyCombustion is an oxidation: the carbon gains oxygen to become carbon dioxide and the hydrogen gains oxygen to become water.

10 GCSE-CHEM-ORG-0025

Petrol contains no water, yet water vapour comes out of a car's exhaust. Where does the water come from?

Hydrogen atoms in the fuel combine with oxygen from the air

HintLook at the two elements in H2O and ask where the engine gets each one.

WhyWater is a product of the combustion reaction, not something left over. Hydrocarbon fuels contain hydrogen, and burning oxidises it to H2O, which leaves the hot exhaust as vapour.

11 GCSE-CHEM-ORG-0026

The process of breaking large hydrocarbon molecules down into smaller, more useful ones

Cracking

HintThe same word describes what happens to a dropped plate.

WhyCracking is a chemical reaction: covalent bonds in the long molecules break and new, shorter molecules form. It is different from fractional distillation, which only sorts the molecules already there.

12 GCSE-CHEM-ORG-0027

The method of cracking in which hot hydrocarbon vapour is passed over a hot solid that speeds up the breakdown without being used up

Catalytic cracking

HintThe method is named after the kind of substance the vapour passes over.

WhyThe long-chain hydrocarbons are heated until they vaporise, and the vapour is passed over a hot catalyst. The molecules break apart on its surface.

13 GCSE-CHEM-ORG-0028

Catalytic cracking uses a catalyst and steam cracking mixes the hydrocarbon vapour with steam. What condition do the two methods have in common?

A high temperature

HintBreaking strong covalent bonds takes a lot of energy.

WhyIn both methods the hydrocarbons are first vaporised and then made very hot. Steam cracking uses no catalyst, so it needs an even higher temperature than catalytic cracking.

14 GCSE-CHEM-ORG-0029

Balance this cracking equation: C12H26 → C6H14 + ?C3H6. What number replaces the question mark? (number only)

2

HintCount the carbon atoms still needed on the right-hand side.

WhyThe left has 12 carbon atoms and C6H14 supplies 6, so 6 more are needed: two molecules of C3H6. Check the hydrogen: 14 + 2 × 6 = 26, which matches.

15 GCSE-CHEM-ORG-0030

Fractional distillation of crude oil produces more long-chain hydrocarbons than are needed, and too few short-chain ones. How does cracking deal with this?

It converts surplus long molecules to short ones that are in high demand as fuels

HintPicture a shop swapping slow-selling stock for something customers queue up for.

WhySmall molecules make the best fuels, so demand for them is high. Cracking matches supply to demand by breaking the less useful long chains into shorter alkanes for fuels, and into alkenes for making polymers and other chemicals.

16 GCSE-CHEM-ORG-0031

Bromine water is shaken with an alkene. What colour change is seen?

Orange to colourless

HintThe starting shade is that of the bromine; the alkene removes it.

WhyBromine water is orange. An alkene reacts with the bromine, using it up, so the colour disappears. This is the test for an alkene.

17 GCSE-CHEM-ORG-0032

Bromine water is added to two colourless liquid hydrocarbons, P and Q, and each tube is shaken. P stays orange; Q turns colourless. Which liquid is an alkene?

Q

HintThe more reactive family is the one that uses up the bromine.

WhyAlkenes react with bromine water and remove its colour; alkanes do not react, so the orange colour stays. Q has decolourised the bromine water, so Q is the alkene and P is an alkane.

18 GCSE-CHEM-ORG-0033

Cracking a long-chain alkane produces shorter alkanes together with another type of hydrocarbon. What is this other type called? (one word)

Alkenes

HintIts name differs from that of the starting family by a single letter.

WhyThere are not enough hydrogen atoms in one long alkane to make two or more smaller alkanes, so at least one product is an alkene. An alkene has two fewer hydrogen atoms than the alkane with the same number of carbon atoms, and a double bond between two of its carbon atoms.

19 GCSE-CHEM-ORG-0034

Alkanes do not react with bromine water, but alkenes do. What does this show about the reactivity of the two families?

Alkenes are more reactive than alkanes

HintAsk which family actually did something in the test.

WhyAlkenes take part in reactions that alkanes do not. That reactivity is what makes them useful as the starting point for polymers and many other chemicals, while alkanes are mostly just burned.

20 GCSE-CHEM-ORG-0035

Alkenes are used to make ____, and as the starting materials for many other chemicals.

polymers

HintPoly(ethene), a common plastic, is one of them.

WhyMany small alkene molecules can be joined into very long chains, and those chains are polymers. This is one reason cracking matters: it supplies the alkenes that the plastics industry is built on.

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