Course review

D.1 Gravitational fields

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Learning objective

D.1.1—Kepler’s three laws of orbital motion

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• Kepler’s three laws of orbital motion.

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Learning objective

D.1.2—Universal gravitation

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• Universal gravitation: F=Gm1m2/r^2 for point masses.

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Learning objective

D.1.3—Point-mass approximation

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• Extended bodies can be treated as point masses only under suitable conditions.

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Learning objective

D.1.4—Gravitational field strength

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• Gravitational field strength: g=F/m=GM/r^2.

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Learning objective

D.1.5—Gravitational field lines

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• Gravitational field lines.

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Learning objective

D.1.6 (HL)—Gravitational potential energy

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• Gravitational potential energy is work to assemble masses from infinite separation.

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Learning objective

D.1.7 (HL)—Two-body potential energy

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• Two-body gravitational potential energy: Ep=-Gm1m2/r.

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Learning objective

D.1.8 (HL)—Gravitational potential

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• Gravitational potential: Vg=-GM/r, zero at infinity.

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Learning objective

D.1.9 (HL)—Potential gradient

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• Field strength is potential gradient: g=-ΔVg/Δr.

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Learning objective

D.1.10 (HL)—Work in gravitational fields

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• Work in gravitational field: W=mΔVg.

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Learning objective

D.1.11 (HL)—Gravitational equipotentials

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• Equipotential surfaces for gravitational fields.

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Learning objective

D.1.12 (HL)—Equipotentials and field lines

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• Relationship between equipotential surfaces and gravitational field lines. • Equipotential surfaces are perpendicular to field lines.

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Learning objective

D.1.13 (HL)—Escape speed

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• Escape speed: vesc=sqrt(2GM/r).

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Learning objective

D.1.14 (HL)—Orbital speed

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• Circular orbital speed: vorbital=sqrt(GM/r).

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Learning objective

D.1.15 (HL)—Atmospheric drag on orbits

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• Small atmospheric drag changes both height and speed of an orbiting body.

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