From my website, I have an online Kepler's Third Law calculator.
The formula is G · m · t² = 4 · π² · r³
I had to solve I have the formula solved for 'r', 't' and 'm' and I made a graphic of all three formulas. (see attached).
Anyway, since the formula is <span>G · m · t² = 4 · π² · r³ then we can solve for 'r'
</span>
<span>r³ = (G · m · t²) / (4 · π²) and therefore
r = </span><span>cube root [(G · m · t²) / (4 · π²)]
</span>
Solve for x in 2y = x + 1
x = 2y - 1
Substitute x = 2y - 1 into -2x - y = 7
-5y + 2 = 7
Solve for y in -5y + 2 = 7
y = -1
Substitute y = -1 into x = 2y - 1
x = -3
Therefore,
<u>x = -3</u>
<u>y = -1</u>
√136 ≈ 11.66
Therefore, the two whole numbers where 11.66 will be located in between are 11 and 12.
Answer:
2.0
Step-by-step explanation:
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Answer:
24 x y
Step-by-step explanation:
Simplify the following:
3×4×2 x y
Hint: | Multiply 3 and 4 together.
3×4 = 12:
12×2 x y
Hint: | Multiply 12 and 2 together.
12×2 = 24:
Answer: 24 x y