314151 A certain gas diffuses from two different vessels \(\mathrm{\mathrm{A}}\) and \(\mathrm{\mathrm{B}}\). The vessel A has a circular orifice while vessel B has a square orifice of length equal to the radius of the orifice of vessel \(\mathrm{A}\). Calculate the ratio of the rates of diffusion of the gas from vessel A to vessel B, assuming same temperature and pressure is
314153 Helium gas at 1 atm and \(\mathrm{SO}_{2}\) at 2 atm pressure, temperature being the same, are released separately at the same moment into 1 m long evacuated tubes of equal diameters. If helium reaches the other end of the tube in t s , what distance, \(\mathrm{SO}_{2}\) would traverse in the same time interval in the other tube?
314151 A certain gas diffuses from two different vessels \(\mathrm{\mathrm{A}}\) and \(\mathrm{\mathrm{B}}\). The vessel A has a circular orifice while vessel B has a square orifice of length equal to the radius of the orifice of vessel \(\mathrm{A}\). Calculate the ratio of the rates of diffusion of the gas from vessel A to vessel B, assuming same temperature and pressure is
314153 Helium gas at 1 atm and \(\mathrm{SO}_{2}\) at 2 atm pressure, temperature being the same, are released separately at the same moment into 1 m long evacuated tubes of equal diameters. If helium reaches the other end of the tube in t s , what distance, \(\mathrm{SO}_{2}\) would traverse in the same time interval in the other tube?
314151 A certain gas diffuses from two different vessels \(\mathrm{\mathrm{A}}\) and \(\mathrm{\mathrm{B}}\). The vessel A has a circular orifice while vessel B has a square orifice of length equal to the radius of the orifice of vessel \(\mathrm{A}\). Calculate the ratio of the rates of diffusion of the gas from vessel A to vessel B, assuming same temperature and pressure is
314153 Helium gas at 1 atm and \(\mathrm{SO}_{2}\) at 2 atm pressure, temperature being the same, are released separately at the same moment into 1 m long evacuated tubes of equal diameters. If helium reaches the other end of the tube in t s , what distance, \(\mathrm{SO}_{2}\) would traverse in the same time interval in the other tube?
314151 A certain gas diffuses from two different vessels \(\mathrm{\mathrm{A}}\) and \(\mathrm{\mathrm{B}}\). The vessel A has a circular orifice while vessel B has a square orifice of length equal to the radius of the orifice of vessel \(\mathrm{A}\). Calculate the ratio of the rates of diffusion of the gas from vessel A to vessel B, assuming same temperature and pressure is
314153 Helium gas at 1 atm and \(\mathrm{SO}_{2}\) at 2 atm pressure, temperature being the same, are released separately at the same moment into 1 m long evacuated tubes of equal diameters. If helium reaches the other end of the tube in t s , what distance, \(\mathrm{SO}_{2}\) would traverse in the same time interval in the other tube?