2-D star cluster puzzle Find the net gravitational force for iv) Hexagon Let m=mass of the star = 1.99 x 10^30 kg, l=earth to star distance=149.6 x 10^6 km, G=6.67 x10^-11 N m^2/kg^2. Note that the masses of each star are the same. Also, it is advised to use vectors and components. And you can just find the gravitational net force of one of the stars in the shape

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Chapter1: Units, Trigonometry. And Vectors
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2-D star cluster puzzle

Find the net gravitational force for iv) Hexagon

Let m=mass of the star = 1.99 x 10^30 kg, l=earth to star distance=149.6 x 10^6 km, G=6.67 x10^-11 N m^2/kg^2. Note that the masses of each star are the same. Also, it is advised to use vectors and components. And you can just find the gravitational net force of one of the stars in the shape

SPH4U0-B
2-D Star Chusters Puggle
I)
m,
I)
m2
m3
My
E-G m, Mz
II I)
IV)
ms
my
ms
30
A the sun =
1.99 X10 up
m. = mass
Let
mi
%3D
Eertha sun Dixtence = 149.6X 10 km
Eorth- sun
%3D
%3D
the net grentol force
star-cluster.
Find
Challenge
ster
for each
eech
on
G= 6.67 x10 Nm"
VI) Regular
v) Reguler
Hepteyo
Transcribed Image Text:SPH4U0-B 2-D Star Chusters Puggle I) m, I) m2 m3 My E-G m, Mz II I) IV) ms my ms 30 A the sun = 1.99 X10 up m. = mass Let mi %3D Eertha sun Dixtence = 149.6X 10 km Eorth- sun %3D %3D the net grentol force star-cluster. Find Challenge ster for each eech on G= 6.67 x10 Nm" VI) Regular v) Reguler Hepteyo
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