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Romashka [77]
3 years ago
12

Factor 3g³h-9g²h+12h​

Mathematics
1 answer:
Goryan [66]3 years ago
4 0

Answer:

3h(g^3-3g^2+4)

Step-by-step explanation:

if you do the work you will get 3g³h-9g²h+12h.

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Solve for x <br> 4 3/10-(2 2/5x+5 1/2)=1/2(-3 3/5x+1 1/5)
KIM [24]

Answer:

X  =  - 3

Step-by-step explanation:

6 0
3 years ago
Can someone please help me with this? i don’t understand it at all
sweet [91]

Answer: I’m pretty sure they are similar because they have the same interior degree.

Step-by-step explanation:

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3 years ago
Christine must buy at least 45 fluid ounces of milk at the store. The store only sells milk in 200 milliliter bottles. If there
ratelena [41]
Since there are 1000 milliliters in a liter, that means that there are 33.8/1000 fluid ouncers per milliliter. That means that each 200 mil bottle is 6.76 fluid ounces or 33.8/1000*200. 45/6.76 = 6.66 but you have to round up to a whole number of bottles since you can buy 2/3 of a bottle which makes your answer 7 bottles.
8 0
3 years ago
The Pirerras are planning to go to Europe 3 years from now and have agreed to set aside $140/month for their trip. If they depos
Natalka [10]

Answer:

(a)$5805.21

(b)Least Expensive Mortgage =$120640.59

Most Expensive Mortgage =$152032.77

Step-by-step explanation:

The future value of an ordinary annuity with deposits P made regularly k times each year for n years, with interest compounded times k per year at an annual rate r, is given as:

F.V.=\dfrac{P[(1+i)^{kn}-1]}{i}

The Pirerra's Monthly Payments=$140

Annual Rate =9.5%

Therefore: Monthly Rate=0.095/12

Years, n=3

Period, k=12

F.V.=\dfrac{140[(1+\frac{0.095}{12} )^{3*12}-1]}{\frac{0.095}{12} }=\$5805.21

(b)For the Johnsons, Present value of Mortgage is derived using the formula:

\Text{Present Lump Sum}, A_0=\dfrac{P[1-(1+i)^{-kt}]}{\frac{r}{k} }

At $1000 Monthly payment

\Text{Present Lump Sum}, A_0=\dfrac{1000[1-(1+\frac{0.08}{12} )^{-12*15}]}{\frac{0.08}{12} }=\$104640.59

Adding  a down payment of $16000

  • Least Expensive Mortgage = 104640.59+16000=$120640.59

At $1300 Monthly Payment

\Text{Present Lump Sum}, A_0=\dfrac{1300[1-(1+\frac{0.08}{12} )^{-12*15}]}{\frac{0.08}{12} }=\$136032.77

Adding  a down payment of $16000

  • Most Expensive Mortgage = 136032.77+16000=$152032.77
4 0
3 years ago
Find the value of 2^-3 x 3^-2
anastassius [24]

Answer:

0.01388888888 or .0139

Step-by-step explanation:

.125*.11111111111=0.01388888888 or .0139

4 0
4 years ago
Read 2 more answers
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