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creativ13 [48]
3 years ago
8

A batch of 75 parts is to be nickel-plated in a barrel plating operation. The parts are identical, each with a surface area A =

5.3 in 2 . The plating process applies a current = 120 amps, and the batch takes 20 min to complete. Determine the average plating thickness on the parts

Physics
1 answer:
mojhsa [17]3 years ago
7 0

To solve this problem it is necessary to take into account the concepts related to electrochemical Machining Processes and metal removal. Metal removal rate is determined by Faraday's First law, which states that the amount of chemical change Produced by an electric current is proportional to the quantity of electricity passed, i.e,

V = CIt

Where,

V = Volume of material removed

C = Constant called the specific removal rate that depends on atomic weight (I attached a table with this values)

I = Current

t = time

Since we also have to consider the efficiency of the system to remove the Volume, of all the volume removed, only 95% will be efficient.

From our values we have to

A = 5.3in^2

I = 120A

t = 20 min

C = 1.25*10^{-4} in^3/A-min

\eta = 95%

Calculating the value we have that,

V = (1.25*10^{-4})(120)(20)

V = 0.3in^3

V_{net} = 95\% *0.3

V_{net} = 0.285in^3

The area is simply the calculation of the total units by that of each piece, that is

A = 75*5.3

A = 397.5in^2

Therefore we can calculate now the plating thickness through the ratio between Volume and Area

d = \frac{V}{A}

d = \frac{0.285}{397.5}

d = 0.000716in

Therefore the average plating thickness on the parts is 0.000716in

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Answer:

 t  = 16.5s

Explanation:

Given parameters:

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Solution:

To solve this problem we need to reiterate that acceleration is the rate of change of velocity with time.

So;

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u is the initial velocity

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  So;

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The velocities of light in air and glass are 3.0 x 10^8ms and 2.0×10^8ms respectively. If the angle of refraction is 30°, the si
JulijaS [17]

Answer:

0.75

Explanation:

refractive \: index \:  =  \frac{3.0 \times  {10}^{2} }{2.0 \times  {10}^{2} }

= 1.5

refractive \: index =  \frac{ \sin(angle \: of \: incidence) }{ \sin(angle \: of \: refraction) }

1.5 =  \ \frac{ \sin(i) }{ \sin(30) }

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5 0
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The volume of a gas is 605 liters at 27.0°C. The new temperature is -3.0°C. What is the new volume?
nlexa [21]
From p1v1/t1 = p2v2/t2
pressure unchanged ... cancelled out
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***remember temperature must be in Kelvin
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In a circus act, when the tumbling lever is measured, the measurements show that the effort arm is 8 meters long and the resista
Yuki888 [10]

The statement the mechanical advantage of the lever is 16 is False.

<h3>Mechanical Advantage</h3>

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Given that the effort arm is 8 meters long, d = distance moved by effort = 8 m.

Also, given that the resistance arm is 2 meters long, D = distance moved by load = 2 m.

<h3>Calculating the mechanical advantage</h3>

So, substituting the values of the variables into the equation, we have

MA = d/D

MA = 8 m/2 m

MA = 4

Since MA = 4, so, the stament is False.

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Answer:

A

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