
Public learning track
Solar System Architecture, Orbital Mechanics, and Kepler's Laws
7th Grade · Science · Open Global Science
7 lessons
Goal
Examine the physical properties of Solar System bodies and apply gravitational laws and Keplerian mechanics to explain orbital dynamics.
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Characteristics of the Terrestrial Planets
7 lessons
0 of 7 done
- 1Characteristics of the Terrestrial PlanetsUp nextStart
- 2Characteristics of Gas Giants and Ice GiantsPremiumNot started yet
- 3Dwarf Planets, Asteroids, and Kuiper Belt ObjectsNot started yet
- 4Comets and Meteoroids in the Solar SystemNot started yet
- 5Elliptical Orbits and Planetary PathsNot started yet
- 6Kepler's Laws of Planetary MotionNot started yet
- 7Universal Gravitation and Satellite OrbitsNot started yet
Curriculum Framework
7th Grade · Science · Open Global Science
1
7 lessons
Earth-Sun-Moon Cyclic Systems and Gravitational Phenomena
Model and explain diurnal cycles, seasonal changes, lunar phase progression, eclipses, and ocean tides through orbital geometry and gravitational interactions.
2
7 lessons
Solar System Architecture, Orbital Mechanics, and Kepler's Laws
Examine the physical properties of Solar System bodies and apply gravitational laws and Keplerian mechanics to explain orbital dynamics.
3
5 lessons
Earth's Habitability and Origins of the Universe and Life
Analyze the astrophysical and geochemical factors that make Earth capable of supporting life and evaluate scientific models for the origins of the cosmos and biosphere.
4
7 lessons
Plate Tectonics, Crustal Evolution, and Geological Hazards
Explain mantle convection, lithospheric plate boundaries, seafloor spreading, mountain orogeny, and seismological and volcanic hazards.
5
8 lessons
Natural Resources, Watershed Ecology, and Environmental Stewardship
Evaluate renewable and non-renewable energy resources, analyze watershed and soil nutrient dynamics, and assess strategies for waste and pollution mitigation.
6
7 lessons
Stellar Evolution, Nucleosynthesis, and Cosmology
Trace stellar life cycles across mass regimes, explain stellar nucleosynthesis, and analyze evidence supporting the Big Bang and cosmic expansion.