Derive and discuss the langrange equation of motion of a body moving on a sphere of radius 'a'.
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A: Let us analyse the question in step 2.
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A: Suppose a planet is discovered that has the same amount of mass in a given volume as the Earth, but…
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A: (a) Introduction: Newton's second law states that the acceleration of an object is directly related…
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Q: On July 15,2004,NaDa lunch the aura spacecraft(mass is 2970kg) to study the earth climate and…
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Q: After our Sun exhausts its nuclear fuel, its ultimate fate may be to collapse to a white dwarf…
A: Part (a): The expression for the average density is, ρ=msunVρ=msun43πr2..............(1) Here, m is…
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A: mass of an orbital m= 1.98x1030 kg v1 =5.36 times faster than our Sun T=30 hours r1=?,r2=?m2=?
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Q: NOTE: Your answer suggests that you have assumed constant gravitational
A: Explained as, F=-GMMR+y2
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Q: In the first decade of the 20th century Jean Perrin carried out important investigations on the…
A: Given: ρs=1.2 g/cm3=1200 kg/m3t=1hr=3600secη=1.002*10-3 kg m-1s-1ρf=0.998 g/cm3=998.0 kg/m3
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A: Given: Mass = m = 10 kg Limiting velocity= vL = 49 m/s Gravitational acceleration = g = 9.8 m/s2…
Q: At what rate must a cylindrical spaceship rotate if occupants are to experience simulated gravity of…
A: Given, rate T at which a cylindrical spaceship rotate if occupants are to experience simulated…
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A: Write the expression to obtain the mass of the Sun.
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