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ICE Princess25 [194]
4 years ago
9

5836197 to the nearest hundred

Mathematics
2 answers:
Nimfa-mama [501]4 years ago
3 0
5836200 because it's rounded
Neporo4naja [7]4 years ago
3 0
The answer to the question is 5,836,200
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Expand.<br> Your answer should be a polynomial in standard form.
Alex73 [517]

Answer:

-p^4 + 4p^3 - 5p^2 + 8p - 6

Step-by-step explanation:

Distribute the -p^2 to the p^2 and the 2. Then distribute the 4p to the p^2 and the 2. Then distribute the -3 to the p^2 and the 2.

When we expand:

-p^4 - 2p^2

+ 4p^3 + 8p

-3p^2 - 6

Group, ordering from highest to lowest "degree" (exponent).

-p^4 + 4p^3 - 2p^2 - 3p^2 + 8p - 6

Combine like terms.

-p^4 + 4p^3 - 5p^2 + 8p - 6

3 0
3 years ago
Find mZ1 and mZ2 .<br><br> I cant figure it out
Ede4ka [16]

Answer:

∠ 1 = 110°, ∠ 2 = 70°

Step-by-step explanation:

∠ 1 and 110° are vertical angles and are congruent, thus

∠ 1 = 110°

∠ 1 and ∠ 2 are same- side interior angles and supplementary, sum to 180°

∠ 1 + ∠ 2 = 180°

110° + ∠ 2 = 180° ( subtract 110° from both sides )

∠ 2 = 70°

8 0
3 years ago
Cd/b = a. solve for b
Hoochie [10]

Answer:

b = cd / a

Step-by-step explanation:

cd / b = a

cd = a * b

b = cd / a

7 0
3 years ago
Assume that $1 million is deposited in a bank with a reserve requirement of 15 percent.
Maru [420]
We are given with the principal amount of <span> $1 million and is asked in the problem to calculate for the money supply given the reserve ratio is 15%. The formula that is applicable to this problem is F = P / r where P is the principal amount, r is the ratio and F is the future/ money supply. In this case, upon substitution, F = $1  m million / 0.15 = $6.67 million. The money put into reserve is expected to increase after putting into reserve. The lower the reserve ratio, the higher the money supply will be. Conversely, the higher the principal amount, the higher the money supply.</span>
3 0
3 years ago
The regression equation y = 1.3x + 6.8 approximates the number of minutes it takes an employee to drive to work, y, given the nu
liberstina [14]

Answer:

For every extra mile an employee drives, the driving time increases by 1.3 minutes.

Step-by-step explanation:

y = 1.3x + 6.8

x is the number of miles, y is the time taken

each extra mile, the time increases by 1.3  and the constant is 6.8

say that x = 3, the time taken y = 1.3(3) + 6.8

= 3.9 + 6.8

y =10.7

the difference is 1.3.

for each extra mile, the time is increases by 1.3 minutes.

6 0
3 years ago
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