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denpristay [2]
2 years ago
9

3.3 = ? as a friction

Mathematics
2 answers:
Allushta [10]2 years ago
6 0

Answer:

33/10

Step-by-step explanation:

I used a calculator sorry if I am wrong

olga_2 [115]2 years ago
6 0

Answer:

3 3/10.

Step-by-step explanation:

The first 3 is a whole number because it is to the left of the decimal point, and it represents 3 ''ones''.

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HELP!!!!
aniked [119]

Answer:

A. Plane B because it was 9.33 miles away

B. 48 units

Step-by-step explanation:

A. Since the airplanes fly at an angle to the runway, their direction forms a triangle with the runway with their height above the ground as the opposite of the angle and their distance from the airport as the hypotenuse.

So for airplane A with 44° angle of departure,

sin44° = y/h where y = height above the ground and h = distance from airport

So h = y/sin44° = 6/sin44° = 8.64 miles

So for airplane B with 40° angle of departure,

sin40° = y/H where y = height above the ground and H = distance from airport

So H = y/sin40° = 6/sin40° = 9.33 miles

Since airplane B is at 9.33 miles away from the airport whereas airplane A is 8.64 miles from the airport, airplane B is farther away.

B. We know that scale factor = new size/original size

Our scale factor = 4 and original size = 12 units. So,

new size = scale factor original size = 4 × 12 = 48 units.

8 0
2 years ago
Circle A has a diameter of approximately 20 inches and an area of approximately 300 in2.
Katena32 [7]

Answer:

4. About 2,700 in2

Step-by-step explanation:

The area of a circle (A), measured in square inches, is directly proportional to the square of its diameter (d), measured in inches. That is:

A \propto d^{2}

A = k\cdot d^{2}

Where k is the constant of proportionality, dimensionless.

In consequence, the following relationship between circles A and B is obtained:

\frac{A_{B}}{A_{A}} = \frac{d_{B}^{2}}{d_{A}^{2}}

The area of the circle B is now cleared:

A_{B} =\left(\frac{d_{B}}{d_{A}} \right)^{2}\cdot A_{A}

Given that d_{A} = 20\,in, d_{B} = 60\,in and A_{A} = 300\,in^{2}, then:

A_{B} = \left(\frac{60\,in}{20\,in} \right)^{2}\cdot (300\,in^{2})

A_{B} = 2700\,in^{2}

Therefore, the correct answer is 4.

7 0
3 years ago
What's so special about the relationship between<br> parallel and perpendicular
pishuonlain [190]
Parallel lines never touch they run side by side forever like the rails on railroad tracks
Perpendicular line cross or intersect
8 0
3 years ago
What is the solution to the equation 5x+4=7
Orlov [11]
X=3/5
do you need an explanation?
3 0
2 years ago
Read 2 more answers
HELP MEEEEEE PLESSSS
crimeas [40]

Answer:

C.

Step-by-step explanation:

there are 468 inches in 13 yards

6 0
2 years ago
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