subject
Chemistry, 04.09.2020 01:01 labrandonanderson00

It is important to find the total mass of a planet to understand its orbital motion. However, the mass of its atmosphere often needs to be included in calculations. A common expression for the density (ℎ) of air as a function of altitude ℎ above the surface of a planet is given by (ℎ)=0−ℎ where 0 is a constant and is a constant that depends on the mass of the planet, its gravitational acceleration constant, and temperature at sea level. A planet is discovered in which astrophysicists have measured 0=1.750 kg/m3 and =2.86×10−7 m−1. Calculate the total mass atm of the atmosphere if the planet has a radius of 3.50×106 m. atm= kg If the planet is largely composed of a magnesium alloy, with a constant density of 1836 kg/m3, calculate the ratio of the total mass of the atmosphere to the total mass planet of the planet (including the atmosphere). atmatm+planet=


It is important to find the total mass of a planet to understand its orbital motion. However, the m

ansver
Answers: 3

Another question on Chemistry

question
Chemistry, 22.06.2019 19:00
Which change to the system wood cause the freely-moving piston to lower?
Answers: 1
question
Chemistry, 22.06.2019 20:30
Identify the correct mole ratio for each substance. sodium chloride (nacl) na: cl = 1: ammonium nitrate (nhno) h: o = 4:
Answers: 1
question
Chemistry, 22.06.2019 21:00
Which property of water causes water drops to bead on a freshly waxed car?
Answers: 2
question
Chemistry, 22.06.2019 22:00
Plz ill give u brainliest which of the following steps is not likely to take place during cellular respiration? a.oxygen combines with carbon of simple sugar. b. energy molecule transfers energy to cells. d. energy is used up.
Answers: 3
You know the right answer?
It is important to find the total mass of a planet to understand its orbital motion. However, the ma...
Questions
question
Health, 05.01.2021 17:10
question
English, 05.01.2021 17:10
question
Mathematics, 05.01.2021 17:10
question
Mathematics, 05.01.2021 17:10
Questions on the website: 13722359