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lord [1]
3 years ago
9

He factor tree for 1,764 is shown.

Mathematics
2 answers:
Aleksandr-060686 [28]3 years ago
8 0

We are given number 1,764.

And a factor tree of 1,764 is show in the diagram.

First 1764 is factored into 2 and 882.

Then 882 is factored to 2 and 441.

441 is factored to 9 and 49.

And finally 9 is factored to 3 and 3.

49 is factored to 7 and 7.

<em>So final factors we got 3 × 3 × 7 × 7.</em>

3 × 3 could be written as 3^2 and

7 × 7 = could be written as 7^2.

<h3>Therefore, 3^2(7^2) is the the simplest form.</h3>
Arturiano [62]3 years ago
7 0

Answer:

the answer is 42

Step-by-step explanation:

i took the test :)

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Answer:

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Step-by-step explanation:

If sliding between the bottom of the wheel and ground can be neglected, the motion of the wheel can be well described by rolling, which is a superposition of coplanar pure rotation and translation, The speed of the bike occurs at the center of the wheel, where resulting instantaneous motion is pure translation parallel to ground orientation. The magnitude of the speed of bike (v_{B}), measured in inches per second, is:

v_{B} = R\cdot \omega

Where:

R - Radius, measured in inches.

\omega - Angular speed, measured in radians per second.

Now, the angular speed must be converted from revolutions per minute into radians per second:

\omega = \left(154\,\frac{rev}{min} \right)\cdot \left(2\pi\,\frac{rad}{rev} \right)\cdot \left(\frac{1}{60}\,\frac{min}{s}  \right)

\omega \approx 16.127\,\frac{rad}{s}

The speed of the bike is: (R = 21\,in and \omega \approx 16.127\,\frac{rad}{s})

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Lastly, the outcome is converted into miles per hour:

v_{B} = (338.667\,\frac{in}{s} )\cdot \left(3600\,\frac{s}{h} \right)\cdot \left(\frac{1}{63360}\,\frac{mi}{in}  \right)

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The linear speed of the bike is 19.242 miles per hour.

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