Question

A certain amount of chlorine gas was placed inside a cylinder with a movable piston at one end. The initial volume was 3.00 L and the initial pressure of chlorine was 1.64 atm . The piston was pushed down to change the volume to 1.00 L. Calculate the final pressure of the gas if the temperature and number of moles of chlorine remain constant.

**Enter a numerical answer only, in terms of
atm.**

**Please show all work**

Answer #1

Part A) A certain amount of chlorine gas was placed inside a
cylinder with a movable piston at one end. The initial volume was
3.00 L and the initial pressure of chlorine was 1.40 atm . The
piston was pushed down to change the volume to 1.00 L. Calculate
the final pressure of the gas if the temperature and number of
moles of chlorine remain constant.
part B) In an air-conditioned room at 19.0 ∘C, a spherical
balloon had the...

A cylinder, with a piston pressing down with a constant
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the pressure and temperature remain the same, what is the final
volume of the gas inside the cylinder?

A cylinder, with a piston pressing down with a constant
pressure, is filled with 2.10 moles of a gas (n1), and its volume
is 44.0 L (V1). If 0.600 mole of gas leak out, and the pressure and
temperature remain the same, what is the final volume of the gas
inside the cylinder?

1.A cylinder, with a piston pressing down with a constant
pressure, is filled with 1.90 moles of a gas (n1 ), and its volume
is 50.0 L (V1 ). If 0.400 mole of gas leak out, and the pressure
and temperature remain the same, what is the final volume of the
gas inside the cylinder?
A sample of gas in a cylinder as in the example in Part A has an
initial volume of 52.0 L , and you have...

A vessel with a movable piston contains 1.90 mol of an ideal gas
with initial pressure
Pi = 2.03 ✕ 105 Pa,
initial volume
Vi = 1.00 ✕ 10−2
m3,
and initial temperature
Ti = 128 K.
(a) What is the work done on the gas during a constant-pressure
compression, after which the final volume of the gas is 2.50
L?
J
(b) What is the work done on the gas during an isothermal
compression, after which the final pressure...

Consider 4.30 L of a gas at 365 mmHg and 20. ∘C . If the
container is compressed to 2.90 L and the temperature is increased
to 32 ∘C , what is the new pressure, P2, inside the container?
Assume no change in the amount of gas inside the cylinder.
What pressure would it take to compress 250. L of helium gas
initially at 1.00 atm into a 2.00 L tank at constant
temperature?
A balloon filled with 2.00 L...

Constant amount of ideal gas is kept inside a cylinder by a
piston. Then the gas expands isobarically. Compare the initial (i)
and the final (f) physical quantities of the gas to each other.
The internal energy Uf is ... Ui.
The temperature Tf is ... Ti.
The volume Vf is ... Vi.
The entropy Sf is ... Si.
The pressure pf is ... pi.

Constant amount of ideal gas is kept inside a cylinder by a
piston. Then the gas expands adiabatically. Compare the initial (i)
and the final (f) physical quantities of the gas to each other.
The pressure pf is ... pi.
The temperature Tf is ... Ti.
The internal energy Uf is ... Ui.
The entropy Sf is ... Si.
The volume Vf is ... Vi.

Constant amount of ideal gas is kept inside a cylinder by a
piston. Then the gas expands adiabatically. Compare the initial (i)
and the final (f) physical quantities of the gas to each other.
The pressure pf is ... pi.
The temperature Tf is ... Ti.
The internal energy Uf is ... Ui.
The entropy Sf is ... Si.
The volume Vf is ... Vi.

One mole of an ideal gas is contained in a cylinder with a
movable piston. The temperature is constant at 76°C. Weights are
removed suddenly from the piston to give the following sequence of
three pressures.
a. P1 = 5.10 atm (initial state)
b. P2 = 2.23 atm
c. P3 = 1.00 atm (final state)
What is the total work (in joules) in going from the initial to
the final state by way of the preceding two steps?
_________J (need...

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