Home
Class 12
PHYSICS
[" Two closed bulbs of equal volume( "V"...

[" Two closed bulbs of equal volume( "V" ) containing an ideal gas intially at pressure "p_(i)" and temperature T,are "],[" connected through anarrow tube of negigible volume as shown inthe figure below.The temperature of one "],[" of the bulbs is then raised to "T_(2)" .The final pressure "p_(f)" is :- "],[[[[" (p.v) "," The "],[(p_(1),T_(2)],[T_(1)+T_(2)])]]

Promotional Banner

Similar Questions

Explore conceptually related problems

Two closed bulbs of equal volume (V) containing an ideal gas initially at pressure p_(i) and temperature T_(1) are connected through a narrow tube of negligible volume as shown in the figure below. The temperature of one of the bulbs is then raised to T_(2) . The final pressure p_(f) is:

Two closed bulbs of equal volume (V) containing an ideal gas initially at pressure P_(i) and temperature T_(1) are connected through a narrow tube of negligible volume as shown in the figure below . The temperature of one of the bulbs is then raised to T_(2) . the final pressure Pf is

Two closed vessels of equal volume contain air at P_(0) pressure, T_(0) temperature and are connected through a narrow tube, If one of the vessels is now maintained at T_(0) and other at T, what will be the pressure in the vessels?

Two closed vessels of equal volume containing air at pressure P_(1) and temperature T_(1) are connected to each other through a narrow tube. If the temperature in one of the vessels is now maintained at T_(1) and that in the other at T_(2) , what will be the pressure in the vessels?

Two closed vessels of equal volume containing air at pressure P_(1) and temperature T_(1) are connected to each other through a narrow tube. If the temperature in one of the vessels is now maintained at T_(1) and that in the other at T_(2) , what will be the pressure in the vessels?

Two closed vessels of equal volume containing air at pressure P_(1) and temperature T_(1) are connected to each other through a narrow tube. If the temperature in one of the vessels is now maintained at T_(1) and that in the other at T_(2) , what will be the pressure in the vessels?