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KonstantinChe [14]
3 years ago
13

A box of weight 20N rests on a horizontal floor. A maximum horizontal force of 6N is required to move the box along the floor .I

f the weight of 10N is added to the box , find the minimum horizontal force required to move the box.​
Physics
2 answers:
Cloud [144]3 years ago
5 0
Yo don’t click the link that guy says dude I think it’s like tracking or something
dybincka [34]3 years ago
4 0

Answer:

F = 9 N

Explanation:

F = ma

F - μmg = ma

6 - μ20 = 0

μ = 6/20 = 0.3

F - 0.3(30) = 0

F = 9 N

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Sedbober [7]
The sun, fire and lamp because they generate their own light.
5 0
3 years ago
An empty parallel plate capacitor is connected between the terminals of a 8.85-V battery and charges up. The capacitor is then d
kipiarov [429]

Answer:

The new voltage is 17.7 V.  

Explanation:

Voltage, V = 8.85 V

The spacing is doubled.

When it is disconnected, the charge remains same,

q = C V ..... (1)

where, C is the capacitance, V is the voltage.  

The capacitance is inversely proportional to the distance between the two plates.

So, when the spacing is doubled, the capacitance is halved.

Let the new voltage is V'.

C V = C' V'

C x 8.85 = C/2 x V'

V' = 17.7 V  

3 0
3 years ago
A box with mass 25.14 kg is sliding at rest from the top of the slope with height 13.30 m
lutik1710 [3]

Answer:

Explanation:

The first thing we are asked to find is the Force experienced by the box. That is found in the formula:

F - f = ma where F is the force exerted by the box, f is the friction opposing the box, m is the mass, and a is the acceleration (NOT the same as the pull of gravity). But F can be rewritten in terms of the angle of inclination also:

wsin\theta-f=ma where w is the weight of the box. We will use this version of the formula because it will help us answer the second question, which is to solve for a. Filling in:

First we need the weight of the box. Having the mass, we find the weight:

w = mg so

w = 25.14(10) so

w = 251.4 N (I am not paying any attention at all to the sig fig's here, since I noticed no one on this site does!) Now we have the weight. Filling that in:

251.4sin(30) - f = ma Before we go on to fill in for f, let's answer the first question. F = 251.4sin(30) so

F = 125.7   And in order to answer what a is equal to, we find f:

f = μF_n where Fn is the weight of the object.

f = .25(251.4) so

f = 62.85. Filling everything in now altogether to solve for a, the only missing value:

125.7 - 62.85 = 25.14a and

62.85 = 25.14a so

a = 2.5 m/s/s

Now we have to move on to another set of equations to answer the last part. The last part involves the y-dimension. In this dimension, what we know is that

a = -10 m/s/s

v₀ = 0 (it starts from rest)

Δx = -13.30 m (negative because the box falls this fr below the point fro which it started). Putting all that together in the equation for displacement:

Δx = v₀t + \frac{1}{2}at^2 and we are solving for time:

-13.30=0t+\frac{1}{2}(-10)t^2 and

t=\sqrt{\frac{2(-13.30)}{-10} } so

t = 1.6 seconds to reach the bottom of the slope from 13.30 m high.

3 0
3 years ago
I need 2 examples for each one of Newton's 3 Laws
marusya05 [52]

Answer:

1. An object in motion will stay in motion: A car, and its breaks.

2. Force = mass x acceleration: Kicking a ball.

3. Equal or Opposite reaction: Tugging on your dogs leash as hes trying to run off.

Explanation:

5 0
3 years ago
Read 2 more answers
3 Below, someone is trying to balance a plank with
belka [17]

Answer:

a. The moment of the 4 N force is 16 N·m clockwise

b. The moment of the 6 N force is 12 N·m anticlockwise

Explanation:

In the figure, we have;

The distance from the point 'O', to the 6 N force = 2 m

The position of the 6 N force relative to the point 'O' = To the left of 'O'

The distance from the point 'O', to the 4 N force = 4 m

The position of the 4 N force relative to the point 'O' = To the right of 'O'

a. The moment of a force about a point, M = The force, F × The perpendicular distance of the force from the point

a. The moment of the 4 N force = 4 N × 4 m = 16 N·m clockwise

b. The moment of the 6 N force = 6 N × 2 m = 12 N·m anticlockwise.

8 0
3 years ago
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