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bixtya [17]
3 years ago
3

The viewing portion of the rectangular glass window in a fish tank is 63 inches wide and runs from 1.5 inches below the water's

surface to 40.5 inches below the surface. Find the fluid force against this portion of the window. The weight-density of seawater is 64 lb/ft What is the fluid force against the window? lb te
Physics
1 answer:
AlekseyPX3 years ago
3 0

Answer:

fluid force = 1309 lb

Explanation:

Given data

wide = 63 inches

distance below water surface = 1.5 inches

distance below surface = 40.5 inches

weight-density of seawater W =  64 lb/ft

to find out

fluid force against the window

solution

we consider here A(y) is the depth of fluid and B(y) length of portion at y

so we can say y1 = 0 so y2 will be 33.5 - 0.5 = 33 inches = 2.75 feet

so  A(y) = 33.5/12 - y ) feet

and B(y) = 63 inches = 5.25 feet

fluid force = W \int_{y1}^{y2} A(y) B(y) dy

so take limit y = 0 to y = 2.77

fluid force = 64 \int_{0}^{2.75} ((33.5/12) -y ) (5.25) dy

fluid force = 64×5.25/12 \int_{0}^{2.75} ((33.5  -12y ) dy

fluid force = 28 (33.5y - 6y^2)^{2.75} _0

fluid force = 28 × 46.75 - 0

so fluid force = 1309 lb

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1 year ago
A bungee jumper attains a speed of 30 m/s just as the bungee cord begins to stretch. If the period of stretch is 2 s while comin
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Answer:1.53g

Explanation:

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find a the subject of the formula

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4 0
3 years ago
Based on Newton's law of motion, which combination of rocket bodies and engine will result in the acceleration of 40 m/s ^2 at t
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The question is incomplete. The complete question is :

The Rocket Club is planning to launch a pair of model rockets. To build the rocket, the club needs a rocket body paired with an engine. The table lists the mass of three possible rocket bodies and the force generated by three possible engines.

A 4-column table with 3 rows. The first column labeled Body has entries 1, 2, 3. The second column labeled Mass (grams) has entries 500, 1500, 750. The third column labeled Engine has entries 1, 2, 3. The fourth column labeled Force (Newtons) has entries 25, 20, 30.

Based on Newton’s laws of motion, which combination of rocket bodies and engines will result in the acceleration of 40 m/s2 at the start of the launch?

Body 3 + Engine 1

Body 2 + Engine 2

Body 1 + Engine 2

Body 1 + Engine 1

Solution :

Given :

Body       Mass (gram)     Engine      Force (newtons)

1                   500                 1                     25

2                  1500                2                    20

3                  750                  3                    30

The body 1 has a mass of 500 gram which is equal to 0.5 kg

And engine 2 has a force of 20 newtons.

We know that according to Newton's laws of motion,

Force = mass x acceleration

 20    = 0.5 x acceleration

Acceleration $=\frac{20}{0.5}$

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                      $= 40 \ m/s^2$

Therefore, based on laws of motion of Newton, the Body 1 + Engine 2 combination of the rocket bodies and engines will result in an acceleration of $ 40 \ m/s^2$ at the start of the launch.

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PLZ MARK AS THE BRAINLIEST

HAVE A GOOD DAY

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