Lesson T2.1.1
T2.1.1 Dalton atomic model Quiz: KS3 Chemistry, Unit 2
20 questions
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Lesson T2.1.1, Dalton atomic model: 20 multiple choice questions for the KS3 Chemistry (National Curriculum), Unit 2: Atoms, elements and compounds, written with Revision Ninja.
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The 20 questions
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In Dalton's atomic model, what is an atom?
- A tiny solid sphere that cannot be divided
- A particle that changes into other atoms in reactions
- A nucleus surrounded by orbiting protons
- A cloud of negative charge with no solid centre
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According to Dalton's model, what is true of all atoms of the same element?
- They vary in mass depending on where they are found
- They always contain different numbers of protons
- They are all identical in mass and properties
- They can change into atoms of other elements
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According to Dalton, how do atoms of different elements differ?
- They are made of the same material
- They change size when heated
- They can be split into smaller particles of the same kind
- They have different masses and properties
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What did Dalton propose about compounds?
- Compounds contain only one type of atom, which is repeated in a random number
- Atoms of compounds are never joined together and remain separate particles
- Atoms of different elements combine in fixed whole-number ratios
- Compounds have atoms that change their identity as the substances are mixed
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Which statement would Dalton's model NOT support?
- Atoms of an element are all the same
- Atoms cannot be created or destroyed in reactions
- Atoms contain smaller particles called electrons
- Atoms combine in simple whole-number ratios
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Why was Dalton's model important?
- It showed that atoms are mostly empty space with a tiny dense nucleus at the centre
- It gave a simple particle-based explanation of elements, compounds and reactions
- It proved that atoms contain protons and neutrons inside a dense central nucleus
- It explained why atoms are electrically neutral by showing equal charges inside them
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In Dalton's model, what happens to atoms in a chemical reaction?
- They split into electrons and protons, which then combine in new ways
- They are rearranged into new combinations but not destroyed
- They are destroyed and new atoms are created to make the new products
- They change into atoms of a different element during the course of the reaction
-
Dalton's model is described as simple because it:
- shows atoms as mostly empty space surrounded by a cloud of electrons
- includes a detailed nucleus with protons and neutrons packed together
- describes atoms as tiny, indivisible spheres
- explains radioactive decay of unstable atoms in a useful way
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A student uses Dalton's model to explain why 2 hydrogen atoms and 1 oxygen atom combine to make water. Which statement is consistent with the model?
- Atoms in water have no fixed ratio, so the water could contain any amount
- Oxygen atoms split into hydrogen atoms when water is formed in the reaction
- Water atoms are made only of electrons, so they carry no fixed mass at all
- Atoms combine in a fixed ratio to form a compound
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Which feature of Dalton's model explains why compounds have fixed proportions of elements?
- Atoms can change their mass during reactions, depending on the temperature used
- Atoms of each element have a fixed mass and combine in fixed ratios
- Atoms of the same element vary in size, so the proportions also vary greatly
- Atoms are mostly empty space with no fixed ratio between the elements present
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A chemist finds that a compound always contains twice as many atoms of element X as element Y. Which idea from Dalton's model explains this?
- Atoms of X are heavier than atoms of Y, so there are more of them
- Atoms combine in fixed whole-number ratios
- Elements mix randomly with no pattern
- Atoms of X can change into Y during the reaction
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Dalton's model does not explain which of these?
- Why atoms are conserved in reactions, so that total mass stays the same
- Why atoms have a positive charge in a nucleus
- Why compounds have fixed ratios of atoms, as shown in many experiments
- Why atoms of one element have the same mass as one another in every sample
-
Which statement about atoms in Dalton's model is correct?
- Atoms of different elements are identical
- Atoms always lose mass when they react
- Atoms cannot be broken into smaller particles by chemical reactions
- Atoms can be broken into smaller particles in every chemical reaction
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What is an element according to the particle idea that Dalton used?
- A solid that contains molecules of water
- A substance made of two or more types of atom
- A substance made only of one type of atom
- A mixture of atoms that can be separated by filtration
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A student says gold and iron atoms are the same because both are metals. Which Dalton-based reply is correct?
- They are different because gold atoms have a negative charge and iron atoms do not
- They are different elements, so their atoms have different masses and properties
- They are the same because both are solid at room temperature
- They are the same because all metals have identical atoms
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Which claim of Dalton's model was later found to be a limitation?
- Atoms contain smaller particles such as protons, neutrons and electrons
- Atoms are conserved in chemical reactions, so their total mass never changes
- Atoms of the same element have the same mass in every sample that is tested
- Atoms combine in simple whole-number ratios when they form compounds in reactions
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Why was the discovery of subatomic particles a challenge to Dalton's model?
- Atoms were shown to have no mass at all, which made them impossible to weigh
- Atoms were shown to be divisible into smaller particles
- Atoms were shown to be made only of hydrogen atoms joined together in pairs
- Atoms were shown to combine randomly, with no fixed ratio in any compound
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Why did Dalton's ideas help chemists predict the products of reactions?
- Atoms change at random, so no prediction is possible about the products formed
- Atoms always produce a gas when they react, so the product is always known
- Atoms of each element are different sizes, so the products cannot be predicted at all
- Atoms combine in known fixed ratios, so the formula of a product can be predicted
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Which statement is consistent with Dalton's atomic model?
- Elements can be split into atoms of other elements simply by heating them strongly
- Compounds always contain atoms of only one element, joined in a random pattern
- Two different elements can combine to form compounds with fixed ratios of atoms
- Atoms of an element vary widely in mass, so each sample has different atoms
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Which of these was NOT a claim of Dalton's model?
- Atoms of each element have the same mass as one another in every sample
- Atoms join in fixed whole-number ratios to form compounds in every reaction
- Atoms contain a nucleus made of protons and neutrons
- Atoms are indivisible in chemical reactions and cannot be broken apart by heat
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