360247 The molecules of a given mass of gas have a root mean square velocity of \(200\;m\;{s^{ - 1}}\) at \(27^\circ C\) and \(1.0 \times {10^5}\;N{m^{ - 2}}\) pressure. When the temperature is \(127^\circ C\) and the pressure \(0.5 \times {10^5}N{m^{ - 2}}\), the root mean square velocity in \(m{s^{ - 1}}\), is
360247 The molecules of a given mass of gas have a root mean square velocity of \(200\;m\;{s^{ - 1}}\) at \(27^\circ C\) and \(1.0 \times {10^5}\;N{m^{ - 2}}\) pressure. When the temperature is \(127^\circ C\) and the pressure \(0.5 \times {10^5}N{m^{ - 2}}\), the root mean square velocity in \(m{s^{ - 1}}\), is
360247 The molecules of a given mass of gas have a root mean square velocity of \(200\;m\;{s^{ - 1}}\) at \(27^\circ C\) and \(1.0 \times {10^5}\;N{m^{ - 2}}\) pressure. When the temperature is \(127^\circ C\) and the pressure \(0.5 \times {10^5}N{m^{ - 2}}\), the root mean square velocity in \(m{s^{ - 1}}\), is
360247 The molecules of a given mass of gas have a root mean square velocity of \(200\;m\;{s^{ - 1}}\) at \(27^\circ C\) and \(1.0 \times {10^5}\;N{m^{ - 2}}\) pressure. When the temperature is \(127^\circ C\) and the pressure \(0.5 \times {10^5}N{m^{ - 2}}\), the root mean square velocity in \(m{s^{ - 1}}\), is