proton

A proton carries one positive elementary charge. This topic is part of Physics within Science & Nature. This page currently draws on 46 supporting questions, with answers and bonus facts available below.

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proton trivia questions

What electric charge does a proton carry?

Answer: Positive

Bonus fact: A proton carries one positive elementary charge.

Where are protons found in an atom?

Answer: Nucleus

Bonus fact: Atomic nuclei contain protons and neutrons.

What determines which chemical element an atom is?

Answer: Number of protons

Bonus fact: Atomic number equals the number of protons.

In beta-minus decay, a neutron changes into a proton while emitting an electron and what other particle?

Answer: Antineutrino

Bonus fact: The weak interaction produces an electron antineutrino.

What force holds protons and neutrons together in the nucleus?

Answer: Strong nuclear force

Bonus fact: The strong force overcomes proton-proton electrical repulsion at short range.

What type of electric charge does a proton have?

Answer: Positive

Bonus fact: A proton carries one positive elementary charge.

The magnitude of a proton's charge is equal to that of what particle?

Answer: Electron

Bonus fact: The charges are equal in magnitude and opposite in sign.

Two isotopes of the same element have the same number of protons but different numbers of what?

Answer: Neutrons

Bonus fact: Changing neutron count changes the mass number without changing the element's identity.

How many up quarks are found in a proton?

Answer: Two

Bonus fact: A proton contains two up quarks and one down quark, while a neutron has one up and two down quarks.

Which fundamental force binds quarks together inside protons and neutrons?

Answer: The strong nuclear force

Bonus fact: The strong interaction is the most powerful of the four fundamental interactions at subatomic distances.

What related effect helps bind protons and neutrons together inside atomic nuclei?

Answer: The residual strong force

Bonus fact: The force between nucleons can be understood as a leftover effect of the underlying quark-and-gluon interaction.

What is the term for the energy needed to separate a nucleus completely into its protons and neutrons?

Answer: Nuclear binding energy

Bonus fact: Binding energy helps explain why some nuclear reactions can release enormous amounts of energy.

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