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e-lub [12.9K]
2 years ago
10

An object weighs 94.1 N in air. When it is suspended from a force scale and completely immersed in water the scale reads 15.8 N.

Determine the density of the object. (in kg/m^3)
Physics
1 answer:
EleoNora [17]2 years ago
5 0

The density of the object is 1203 kg/m³.

Density is degree of consistency measured by the quantity of mass per unit volume.

Given,

Weight in Air = 94.1 N

Weight in water = 15.8 N

We need to calculate the volume of the object

using formula of buoyant force

Fb = W(air) - W(water) = 94.1 - 15.8 = 78.3 N

Fb = ρgh

Put the value into the formula

78.3 = 1000 X V X 9.8

V = 78.3/(1000X9.8) = 7.98 X 10⁻³

To calculate density

using the formula of buoyant force

Fb = ρVg

ρ = Fb/Vg = 78.3/(7.98 X 10⁻³ X 9.8) = 1203 kg/m³

Therefore, density of the object is 1203 kg/m³

Learn more about the Density with the help of the given link:

brainly.com/question/952755

#SPJ4

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Archy [21]

Answer:

T = 98 N

Explanation:

The gravity of the earth is known to be 9.8 m/s²

Data:

  • m = 10 kg
  • g = 9.8 m/s²
  • T = ?

Use formula:

  • \boxed{\bold{T=m*g}}

Replace and solve:

  • \boxed{\bold{T=10\ kg*9.8\frac{m}{s^{2}}}}
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The tension in the rope is <u>98 Newtons.</u>

Greetings.

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3 years ago
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eimsori [14]

Answer:

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7 0
3 years ago
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The gas tank is made from A-36 steel and has an inner diameter of 1.50 m. If the tank is designed to withstand a pressure of 5 M
Tanzania [10]

Answer:

a. t = 23mm, b. t = 20mm

Explanation:

Obtain the value of yield strength in tension for A- 36 steel from table ‘Average Mechanical Properties of typical Engineering Materials’, which is σ(y) = 250 MPa.

a.

Assume that the thin wall analysis is valid, Calculate the hoop stress

σ(1) = pd/2t, where p is the pressure in the tank, d is the internal diameter of the tank and t is the thickness.

Substitute 5MPa for p and 1.5m for d

σ(1) = 5 x 10⁶x 1.5/2t

σ(1) = (3.75 x 10⁶)/t

Calculate the longitudinal stress

σ(2) = pd/4t

σ(2) = (5 x 10⁶ x 1.5)/4t

Apply Maximum Shear stress theory which states that failure occurs when the maximum shear stress from a combination of principal stresses <u>equals or exceeds</u> the value obtained for the shear stress at yielding in the uni-axial tensile test. Hence

τ(abs.max) ≤ τ (allowed)

τ (abs.max) ≤ σy /2FS, where FS is the factor of safety

Substitute σ(1)/2 for τ (abs.max) as both the principal stresses have same sign.

σ(1)/2 ≤ σy/2FS

3.75 x 10⁶/2t = 250 x 10⁶/2 x 1.5

T = 0.0225m = 22.5mm = 23mm to the nearest millimeter

Hence the required minimum thickness using the maximum shear stress theory is t = 23mm

b.

Apply maximum distortion energy theorem

σ²(allowed) =σ²(1) – σ(1) x σ(2) + σ²(2)

σ²(y)(allowed)/FS = (3.75 x 10⁶/t)² – (3.75 x 10⁶/t) x (1.875 x 10⁶/t) + (1.875 x 106/t)²

250 x 10⁶/1.5 = (3.2476 x 10⁶)/t

t = 3.2476/166.67

t = 0.0195 m = 19.50 mm = 20mm to the nearest millimeter

Hence, the required minimum thickness using the maximum distortion energy theory is t = 20 mm

7 0
3 years ago
9. Would the maximin criterion achieve perfect income equality? a. Yes. There would be no way to reallocate resources to raise t
kakasveta [241]

Answer:

C

Explanation:

Although the maximin criterion emphasizes the worst-off person in society and it's targeted towards equalizing of the distribution of income by transferring income from the rich to the poor, it will not lead to a complete egalitarian society. Because this will make the people not to have incentive to work hard and the societal total income will substantially fall off and the least fortunate person will be worse off. Thus, this rule still allows disparities in income.

7 0
4 years ago
A jet lands with a speed of 100 m/s and can accelerate uniformly at a rate of -5.0 m/s^2 as it comes to rest. What is the minimu
schepotkina [342]

Answer:

A ) 1000 m.

Explanation:

Here initial velocity u = 100 m /s

Final velocity v = 0

Acceleration a = -5 ms⁻²

Distance travelled = S

v² = u² + 2aS

0 = (100)² -2 x 5 S

S = 10000/ 10

=1000 m.

3 0
3 years ago
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