8 Astrophysics
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Astrophysics units
8.1
Use the units kilogram (kg), metre (m), metre per second (m/s), metre per second squared (m/s²), newton (N), second (s) and newton per kilogram (N/kg).
(b) Motion in the universe
8.2Universe, galaxies and solar system
Know that: • the universe is a large collection of billions of galaxies • a galaxy is a large collection of billions of stars • our solar system is in the Milky Way galaxy
8.3Gravitational field strength
Understand why gravitational field strength, g, varies and know that it is different on other planets and the Moon from that on the Earth
8.4Gravity and orbits
Explain that gravitational force: • causes moons to orbit planets • causes the planets to orbit the Sun • causes artificial satellites to orbit the Earth • causes comets to orbit the Sun
8.5Orbits of comets, moons and planets
Describe the differences in the orbits of comets, moons and planets
8.6Orbital speed equation
Use orbital speed = 2π × orbital radius ÷ time period, v = 2πr/T.
(c) Stellar evolution
8.7Star colour classification
Understand how stars can be classified according to their colour
8.8Star colour and temperature
Know that a star’s colour is related to its surface temperature
8.9Sun-like star evolution
Describe the evolution of stars of similar mass to the Sun through the following stages: • nebula • star (main sequence) • red giant • white dwarf
8.10Massive star evolution
Describe the evolution of stars with a mass larger than the Sun
8.11PAbsolute magnitude
Understand how the brightness of a star at a standard distance can be represented using absolute magnitude
8.12PHertzsprung-Russell diagram
Draw the main components of the Hertzsprung–Russell diagram (HR diagram)
(d) Cosmology
8.13PBig Bang theory
Describe the past evolution of the universe and the main arguments in favour of the Big Bang theory
8.14PBig Bang evidence
Describe evidence that supports the Big Bang theory (red-shift and cosmic microwave background - CMB - radiation)
8.15PMoving wave sources
Describe that if a wave source is moving relative to an observer, there will be a change in the observed frequency and wavelength
8.16PRed-shift equation
Use change in wavelength ÷ reference wavelength = galaxy velocity ÷ speed of light: Δλ/λ₀ = v/c, where Δλ = λ − λ₀.
8.17PGalaxy red-shift
Describe the red-shift in light received from galaxies at different distances away from the Earth
8.18PExpansion of the universe
Explain why the red-shift of galaxies provides evidence for the expansion of the universe