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MA_775_DIABLO [31]
3 years ago
8

Change 2.32 kilograms to grams

Mathematics
2 answers:
statuscvo [17]3 years ago
8 0
2,320 grams your just adding a zero at the end of this problem
Katena32 [7]3 years ago
4 0

Answer:

2,320 grams.

Step-by-step explanation:

Multiply by 1000 to get grams.

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antiseptic1488 [7]
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3 years ago
The area of a rectangular parking lot is represented by A = 6x^2 − 19x − 7 If x represents 15 m, what are the length and width o
Mekhanik [1.2K]

Answer:

The length and width of the parking lot are \frac{46}{3} meters and \frac{23}{2} meters, respectively.

Step-by-step explanation:

The surface formula (A) for the rectangular parking lot is represented by:

A = w\cdot l

Where:

w - Width of the rectangle, measured in meters.

l - Length of the rectangle, measured in meters.

Since, surface formula is a second-order polynomial, in which each binomial is associated with width and length. If A = 6\cdot x^{2}-19\cdot x -7, the factorized form is:

A = \left(x-\frac{7}{2}\,m \right)\cdot \left(x+\frac{1}{3}\,m \right)

Now, let consider that w = \left(x-\frac{7}{2}\,m \right) and l = \left(x+\frac{1}{3}\,m \right), if x = 15\,m, the length and width of the parking lot are, respectively:

w =\left(15\,m-\frac{7}{2}\,m \right)

w = \frac{23}{2}\,m

l =\left(15\,m+\frac{1}{3}\,m \right)

l = \frac{46}{3}\,m

The length and width of the parking lot are \frac{46}{3} meters and \frac{23}{2} meters, respectively.

5 0
3 years ago
Please select the best answer from the choices provided
Anettt [7]

Answer:

x=\frac{5\pi}{4}

Step-by-step explanation:

We want to solve;

\cscx=-\sqrt{2} in the 3rd quadrant

Recall that;

\sin x=\frac{1}{\csc x}

We use the reciprocal ratio to get;

\sin x=-\frac{\sqrt{2}}{2}

In the third quadrant the solution is

x=\pi+\sin^{-1}(\frac{\sqrt{2} }{2} )

x=\pi+\frac{\pi}{4}

x=\frac{5\pi}{4}

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3 years ago
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storchak [24]

Answer:

No.

Step-by-step explanation:

The x coordinate of the equation is 1/2, so x cannot be 0.

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4 years ago
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bagirrra123 [75]
120 groups <span>(10*9*8/3*2*1=120) </span>of 3 (k) operators are possible to make from the 10 (n) qualified employees. This problem can be solved using the combination formula in mathematics which is to find the possible number of combination (group of operator) from a set of choices. (Formula : n*(n-1)*...* (n-k+1)/ k!).
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3 years ago
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