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[" Figure shows elliptical path abcd of a planet around the "],[" sun "S" such that the area of triangle csa is "(1)/(4)" the area of "],[" the ellipse.(See figure) With db as the semimajor axis,"],[" and cas the semiminor axis.If "t_(1)" is the taken for "],[" planet to go over path abc and "t_(2)" for path taken over "],[" cda then "],[[" (a) "t_(1)=t_(2)," d "c],[" (b) "t_(1)=3t_(2)," d "],[" (d) "t_(1)=4t_(2)," a "]]

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Figure elliptical path abcd of a planet around the sun S such that the area of Delta csa is (1)/(4) the area of the ellipse, (see figure) with db as the semimajor axis, and ca as the semiminor axis if t_(1) is the time taken for planet to go over path abc and t_(2) for path taken over cda then:

Figure elliptical path abcd of a planet around the sun S such that the area of Delta csa is (1)/(4) the area of the ellipse, (see figure) with db as the semimajor axis, and ca as the semiminor axis if t_(1) is the time taken for planet to go over path abc and t_(2) for path taken over cda then:

Figure shows elliptical path abcd of planet around the sun S such that the area of triangles csa is 1/4 the area of the ellipse . (See figure) With db as the semimajor axis, and ca as the semiminor axi. If t_1 is the time taken for planet to go over path abc and t_2 for path taken over cda then :

Figure elliptical path abed of a planet around the sun S such that the area of Delta csa is (1)/(4) the area of the ellipse, (see figure) with db as the semimajor axis, and ca as the semiminor axis if t_(1) is the time taken for planet to go over path abc and t_(2) for path taken over cda then:

Figure shows the elipticla path of a planet about the sun. The two shaded parts have equal area. If t_1 and t_2 be the tim taken by the planet to go from a to b and from c to d respectively

Figure shows the elipticla path of a planet about the sun. The two shaded parts have equal area. If t_1 and t_2 be the tim taken by the planet to go from a to b and from c to d respectively

Figure shows the elipticla path of a planet about the sun. The two shaded parts have equal area. If t_1 and t_2 be the tim taken by the planet to go from a to b and from c to d respectively

The figure shows elliptical orbit of a planet m about the sun S. the shaded area SCD is twice the shaded area SAB. If t_(1) be the time for the planet to move from C to D and t_(2) is the time to move from A to B, then: