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saveliy_v [14]
3 years ago
11

An electrostatic paint sprayer contains a metal sphere at an electric potential of 25.0 kV with respect to an electrically groun

ded object. Positively charged paint droplets are repelled away from the paint sprayer's positively charged sphere and towards the grounded object. What charge must a 0.168-mg drop of paint have so that it will arrive at the object with a speed of 18.8 m/s
Physics
1 answer:
ira [324]3 years ago
5 0

Answer:

The charge is  Q =  2.177 *10^{-9} \  C

Explanation:

From the question we are told that

     The electric potential is  V  =  25.0 \ kV  = 25.0 *10^{3}\  V

     The  mass of the drop is  m =  0.168 \ m g = 0.168 *10^{-3} \  g = 0.168 *10^{-6}\ kg

      The  speed is  v  =  18.8 \ m/s

Generally the charge on the paint drop due to the electric potential which will give it the speed stated in the question  is mathematically represented as

       Q = \frac{m v^2 }{ 2 * V  }

Substituting values

      Q = \frac{0.168 *10^{-6} (18)^2 }{ 2 * 25*10^3  }

       Q =  2.177 *10^{-9} \  C

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yaroslaw [1]

C. Physicalist chemist and biologist conducted experience in gather collection that changed existing scientific knowledge about the oceans

Explanation:

The voyage of Her Majesty's Ship was highly important because it furnished scientists with rich evidence about a lot of phenomenon under study and this changed existing scientific knowledge about the ocean.

  • H.M.S II was an expedition to study and map the ocean floor using some sophisticated and newer devices.
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7 0
3 years ago
A 50 kg bobsled slides down an ice track starting (at zero initial speed) from the top of a(n) 184 m high hill. The acceleration
Feliz [49]

Answer:

Explanation:

Given

mass of ice m=50\ kg

Height of hill h=184\ m

Neglecting air resistance

As resistance is absent so Energy at top of hill and at the bottom hill is conserved.

Energy at top is equal to Potential Energy

E_T=mgh=50\times 9.8\times 184

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E_T=E_B

50\times 9.8\times 184=\frac{1}{2}\times 50\times v^2

v=\sqrt{2\times 9.8\times 184}

v=60.05\ m/s                          

3 0
4 years ago
Consider vectors u and v, where u = ⟨1, –1⟩ and v = ⟨1, 1⟩. what is the measure of the angle between the vectors?
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The angle between the two vectors is 0⁰, thus the two vectors are parallel to each other.

<h3>Angle between the vectors</h3>

The angle between the vectors describes the direction of the vector and the value of the angle can be determined from the horizontal and vertical components of the vectors as shown below.

The sum of the horizontal components and vertical components of the vectors is calculated as follows;

Sum of the horizontal component of the vectors, x = 1 + 1 = 2

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The angle between the vectors is calculated as follows;

θ = arc tan (y/x)

θ = arc tan (0/2)

θ = arc tan (0)

θ = 0⁰

The angle between the two vectors is 0⁰, thus the two vectors are parallel to each other.

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2 years ago
A 50 V source is attached to a 9 Ohm light bulb, a 15 Ohm resistor, and a 17 Ohm resistor. What is the total resistance in the c
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