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Relative Charge

  • The particles within an atom exhibit distinct properties.
  • Relative mass serves as a comparative measure and is denoted in atomic mass units (amu). For instance, a relative mass of 1 corresponds to 1.67 × 10-27 kg.
  • Charge, which can be positive or negative, is another contrasting factor among particles. Relative charge aids in the comparative analysis of these particles.
  • The fundamental charge is consistent in magnitude for both protons and electrons, despite the electron bearing a negative charge.
    Protons, Neutrons & Electrons | Physics for GCSE/IGCSE - Year 11
  • If a particle possesses a relative charge of 0, it is categorized as neutral, indicating a balance of positive and negative charges.
  • Both protons and neutrons exhibit a relative mass of 1, signifying their identical mass despite their differing charges.

Nuclear Charge

  • Nuclear charge is typically expressed as the relative charge of the nucleus. The term 'relative' denotes the charge of the particle divided by the charge of the proton.
  • The proton number signifies the quantity of protons present in a nucleus. Since nuclei consist solely of protons and neutrons, the proton number establishes the relative charge of a nucleus.

Nuclear Mass

  • Nuclear mass refers to the relative mass of the nucleus, calculated by dividing the mass of the particle by the mass of the proton.
  • The mass number represents the total count of protons and neutrons in the nucleus.
  • Nucleon number (mass number) is crucial in determining the relative mass of a nucleus.

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What is the term used to describe the comparative measure of the particles within an atom?
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FAQs on Protons, Neutrons & Electrons - Physics for GCSE/IGCSE - Year 11

1. What is the relative charge of protons, neutrons, and electrons?
Ans. Protons have a relative charge of +1, neutrons have no charge (neutral), and electrons have a relative charge of -1.
2. How does nuclear charge affect an atom's properties?
Ans. The nuclear charge of an atom is the total charge of all the protons in its nucleus. It determines the atom's position in the periodic table, its chemical properties, and its ability to attract electrons.
3. What is the relationship between nuclear mass and nuclear charge?
Ans. Nuclear mass is the total mass of the protons and neutrons in an atom's nucleus, while nuclear charge is the total charge of the protons. The relationship between the two is that the nuclear charge is equal to the number of protons in the nucleus, while the nuclear mass is the sum of the protons and neutrons.
4. How do protons, neutrons, and electrons contribute to an atom's overall structure?
Ans. Protons and neutrons make up the nucleus of an atom, while electrons orbit around the nucleus in electron shells. The number of protons determines the element's identity, the number of neutrons affects the atom's stability, and the number of electrons determines the atom's reactivity.
5. Why is it important to understand the roles of protons, neutrons, and electrons in chemistry?
Ans. Understanding the roles of protons, neutrons, and electrons is crucial in chemistry as it helps explain the behavior of elements, their reactivity, and their ability to form bonds with other elements. This knowledge is essential for predicting and explaining chemical reactions.
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