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tigry1 [53]
3 years ago
14

Determine the amount of work (in J) done on an ideal gas as it is heated in an enclosed, thermally isolated cylinder topped with

a freely moving piston. The cylinder contains 0.180 mol of the gas and the temperature is raised from 21.0°C to 250°C. The piston has a mass of 8,500 g and an area of 5.50 cm2.
Physics
1 answer:
Arturiano [62]3 years ago
3 0

Answer:

W = - 342.70 J

Explanation:

Given:

The mass of the piston, m = 8500 g

Area of the piston, A = 5.50 cm²

initial temperature of the gas, T₁ = 21.0° C = 294 K

Final temperature of the gas, T₂ = 250° C = 523 K

Moles of gas present, n = 0.180 mol

now,

we know

PV = nRT

or

V = nRT/P

where,

P is the pressure

R is the gas constant = 8.314 J / mol. K

V is the volume

Now,

for the initial stage

V₁ = nRT₁/P

and for the final stage

V₂ = nRT₂/P

now, the change in volume is

ΔV = V₂ - V₁

or

ΔV = (nRT₂/P) - (nRT₁/P)

or

ΔV = (1/P)(nR)(T₂ - T₁)

now,

the work done (W) is given as:

W = PΔV

since the work is on the gas, thus

W = - PΔV

on substituting the values, we get

W = - P(1/P)(nR)(T₂ - T₁)

or

W = - (nR)(T₂ - T₁)

on substituting the values in the above equation, we get

W = - (0.180 × 8.314)(523 - 294)

or

W = - 342.70 J

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Answer:

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The pressure on a balloon holding 356 mL of an ideal gas is increased from 267 torr to 1.00 atm. What is the new volume of the b
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Answer:

124.52 mL

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from Boyle's Law,

PV = P'V' ................... Equation 1

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make V' the subject of the equation.

V' = PV/P'............. Equation 2

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The distance traveled by the particle at the given time interval is 0.28 m.

<h3>Position of the particle at time, t = 0</h3>

The position of the particle at the given time is calculated as follows;

x = 2 sin2(t)

y = 2 cos2(t)

x(0) = 2 sin2(0) = 0

y(0) = 2 cos2(0) = 2(1) = 2

<h3>Position of the particle at time, t = 4</h3>

x = 2 sin2(t)

y = 2 cos2(t)

x(4) = 2 sin2(4) = 0.28

y(4) = 2 cos2(4) = 2(1) = 1.98

<h3>Distance traveled by the particle at the given time interval</h3>

d = √[(x₄ - x₀)² + (y₄ - y₀)²]

d =  √[(0.28 - 0)² + (1.98 - 2)²]

d = 0.28 m

Thus, the distance traveled by the particle at the given time interval is 0.28 m.

Learn more about distance here: brainly.com/question/23848540

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7 0
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kobusy [5.1K]

Answer:2250J

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Kinetic energy=2250J

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