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AURORKA [14]
3 years ago
9

A 12-inch ruler rests on your right index finger at the 6-inch mark.

Physics
1 answer:
Nesterboy [21]3 years ago
8 0

Answer:

Explanation:

Let the right index finger be the pivot, the balanced ruler is shown in the diagram attached to this answer.

a. The forces present are:

i. The weight of the ruler, W, which acts upwards at the point of pivot.

ii. The reaction, R, of the right index finger on the ruler which acts upwards.

b. According to the principle of equilibrium, the total forces acting upwards must be equal to the total forces acting downwards.

So that,

R = W ................. 1

ii. The sum of clockwise moment must be equal to the sum of anticlockwise moment.

Since the ruler is balanced at the mid-point (6 inch), then;

R x 0 = w x 0 = 0 ............... 2

This implies that no moment is experienced by the ruler balanced on the right index finger. Therefore, the ruler is said to be in a state of equilibrium.

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Federal board paper of class 10 of physics​
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Answer:

If you are looking for past papers you can search that up and you will find plenty of resources that will help you out.

8 0
3 years ago
To improve your flexibility you can do which of the following
Liono4ka [1.6K]

Answer:

Stretching

Explanation:

Stretching is a great way to improve your flexibility!

4 0
2 years ago
Determine the kinetic energy of a 1000-kg roller coaster car that is moving with a speed of 20.0 m/s.
ankoles [38]

Answer:

The correct answer is - 200000 J

Explanation:

We use the formula of kinetic energy:

The formula to calculate kinetic energy is,

Here,

Ec =1/2 x  m x v^2

The mass of the roller coaster is,  m  =  1000  k g

The speed of the roller coaster is, v = 20.0 m/s

 Therefore,

Ec=1/2 x 1000kg x (20m/s)^2 = 200.000Joule

200,000J

7 0
3 years ago
A commuter backs her car out of her garage with an acceleration of . (a) How long does it take her to reach a speed of 2.00 m/s
aliya0001 [1]

Question: A commuter backs her car out of her garage with an acceleration of 1.4 m/s² (a) How long does it take her to reach a speed of 2.00 m/s

Answer:

1.43 s

Explanation:

Applying,

a = (v-u)/t........... Equation 1

Where a = acceleration, v = final velocity, u = initial velocity, t = time

make t the subject of the equation

t = (v-u)/a........... Equation 2

From the question,

Given: v = 2 m/s, u = 0m/s (from rest), a = 1.4 m/s²

Substitute into equation 2

t = (2-0)/1.4

t = 1.43 s

3 0
3 years ago
The element lead (Pb) has a density 11.3 times that of water. Copper (Cu) has a density 7.9 times the density of water. A 5 kg m
77julia77 [94]

Answer:

The answer is B

Explanation:

Density of the element lead (Pb) is:

d_{Pb} =11,3kg/dm^3

Density of the element Copper (Cu) is:

d_{Cu} =7,9kg/dm^3

First we need o find the volume of both materials:

V_{Pb}=5/11,3=440cm^3

V_{Cu}=5/7,9=630cm^3

And the buoyant forces on elements are:

P_{Pb}=440*1*9,81/1000=4,32N

P_{Pb}=630*1*9,81/1000=6,18N

8 0
3 years ago
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