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15. A delta particle decays into a proton and a pion - Edexcel - A-Level Physics - Question 15 - 2023 - Paper 1

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15. A delta particle decays into a proton and a pion. (a) The diagram shows tracks in a particle detector formed when the delta particle decays. pion prot... show full transcript

Worked Solution & Example Answer:15. A delta particle decays into a proton and a pion - Edexcel - A-Level Physics - Question 15 - 2023 - Paper 1

Step 1

State why it can be concluded from the diagram that the delta particle is neutral.

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Answer

The tracks left in the detector exhibit opposite curvatures, indicating that the total charge is zero. Since the proton, which has a positive charge, is one of the decay products, the other particle, the pion, must carry a negative charge to ensure that the total charge remains neutral.

Step 2

Deduce the charge on the pion.

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Answer

From the previous observation that the delta particle is neutral and that the proton has a positive charge, we can conclude that the pion must be negatively charged. This can be denoted as: Charge of pion = −1.

Step 3

Complete the particle equation for the decay of the delta (Δ⁰) particle:

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Answer

The complete particle equation for the decay of the delta particle is:

Δ⁰ → p + π⁻

Step 4

State why the delta particle must be classified as a baryon based on the evidence of its decay.

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Answer

The delta particle must be classified as a baryon because it decays into a proton, which is itself a baryon. Since baryons are defined as particles made up of three quarks, and the decay to a baryon confirms this characteristic structure of the delta particle.

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