ruler and protractor to complete the problem below. 6a. Ellipse. Use a ruler and protractor to measure from the diagram Parameter a (cm) orbit parameters a, b, c, r, and 0 on the elliptical orbit below. Calculate the eccentricity e from your measurements of a and b. f₂ 2nd r Ꮎ f 1 Parameter b (cm) Parameter c (cm) Distance r Position Angle 0 Eccentricity

Elementary Geometry For College Students, 7e
7th Edition
ISBN:9781337614085
Author:Alexander, Daniel C.; Koeberlein, Geralyn M.
Publisher:Alexander, Daniel C.; Koeberlein, Geralyn M.
ChapterP: Preliminary Concepts
SectionP.CT: Test
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You will need a metric ruler and protractor to complete the problem below.
Parameter a (cm)
6a. Ellipse. Use a ruler and protractor to measure from the diagram
orbit parameters a, b, c, r, and 0 on the elliptical orbit below. Calculate
the eccentricity e from your measurements of a and b.
f₂
2nodefplace ha
Ꮎ
f.
1
Parameter b (cm)
Parameter c (cm)
Distance r
Position Angle 0
Eccentricity
6b. For an elliptical orbit where a = 6.38 AU and e = 0.3600, calculate an Radial distance r (AU
orbiting planet's radial distance r in AU when 0 = 233°. What are the
planet's x and y coordinates at that position in AU?
x-coordinate (AU)
x-coordinate (AU)
Transcribed Image Text:You will need a metric ruler and protractor to complete the problem below. Parameter a (cm) 6a. Ellipse. Use a ruler and protractor to measure from the diagram orbit parameters a, b, c, r, and 0 on the elliptical orbit below. Calculate the eccentricity e from your measurements of a and b. f₂ 2nodefplace ha Ꮎ f. 1 Parameter b (cm) Parameter c (cm) Distance r Position Angle 0 Eccentricity 6b. For an elliptical orbit where a = 6.38 AU and e = 0.3600, calculate an Radial distance r (AU orbiting planet's radial distance r in AU when 0 = 233°. What are the planet's x and y coordinates at that position in AU? x-coordinate (AU) x-coordinate (AU)
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