Dalton’s Law of Partial Pressure
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CHXI06:STATES OF MATTER

314109 Equal number of moles of \(\mathrm{\mathrm{CO}}\) and \(\mathrm{\mathrm{CO}_{2}}\) are filled in a chamber at room temperature. The correct relationship w.r.t their partial pressure, \(\mathrm{P_{C O}}\) and \(\mathrm{P_{\mathrm{CO}_{2}}}\) is

1 \(\mathrm{P_{\mathrm{CO}}>P_{\mathrm{CO}_{2}}}\)
2 \(\mathrm{P_{\mathrm{CO}} < P_{\mathrm{CO}_{2}}}\)
3 \(\mathrm{P_{\mathrm{CO}}=P_{\mathrm{CO}_{2}}}\)
4 zero
CHXI06:STATES OF MATTER

314124 Aqueous tension is dependent on

1 Volume
2 Pressure
3 Temperature
4 Weight of gas
CHXI06:STATES OF MATTER

314110 What will be the partial pressure of \(\mathrm{He}\) and \(\mathrm{O}_{2}\) respectively, if \(200 \mathrm{~mL}\) of \(\mathrm{He}\) at \(0.66 \mathrm{~atm}\) and \(400 \mathrm{~mL}\) of \(\mathrm{O}_{2}\) at \(0.52 \mathrm{~atm}\) pressure are mixed in \(400 \mathrm{~mL}\) vessel at \(20^{\circ} \mathrm{C}\) ?

1 0.33 and 0.56
2 0.33 and 0.52
3 0.38 and 0.52
4 0.25 and 0.45
CHXI06:STATES OF MATTER

314111 The pressure of a 1:4 mixture of dihydrogen and dioxygen enclosed in a vessel is one atmosphere. What would be the partial pressure of dioxygen?

1 \(\mathrm{0.8 \times 10^{5} \mathrm{~atm}}\)
2 \(\mathrm{0.008 \mathrm{Nm}^{-2}}\)
3 \(\mathrm{8 \times 10^{4} \mathrm{Nm}^{-2}}\)
4 \(\mathrm{0.25 \mathrm{~atm}}\)
CHXI06:STATES OF MATTER

314109 Equal number of moles of \(\mathrm{\mathrm{CO}}\) and \(\mathrm{\mathrm{CO}_{2}}\) are filled in a chamber at room temperature. The correct relationship w.r.t their partial pressure, \(\mathrm{P_{C O}}\) and \(\mathrm{P_{\mathrm{CO}_{2}}}\) is

1 \(\mathrm{P_{\mathrm{CO}}>P_{\mathrm{CO}_{2}}}\)
2 \(\mathrm{P_{\mathrm{CO}} < P_{\mathrm{CO}_{2}}}\)
3 \(\mathrm{P_{\mathrm{CO}}=P_{\mathrm{CO}_{2}}}\)
4 zero
CHXI06:STATES OF MATTER

314124 Aqueous tension is dependent on

1 Volume
2 Pressure
3 Temperature
4 Weight of gas
CHXI06:STATES OF MATTER

314110 What will be the partial pressure of \(\mathrm{He}\) and \(\mathrm{O}_{2}\) respectively, if \(200 \mathrm{~mL}\) of \(\mathrm{He}\) at \(0.66 \mathrm{~atm}\) and \(400 \mathrm{~mL}\) of \(\mathrm{O}_{2}\) at \(0.52 \mathrm{~atm}\) pressure are mixed in \(400 \mathrm{~mL}\) vessel at \(20^{\circ} \mathrm{C}\) ?

1 0.33 and 0.56
2 0.33 and 0.52
3 0.38 and 0.52
4 0.25 and 0.45
CHXI06:STATES OF MATTER

314111 The pressure of a 1:4 mixture of dihydrogen and dioxygen enclosed in a vessel is one atmosphere. What would be the partial pressure of dioxygen?

1 \(\mathrm{0.8 \times 10^{5} \mathrm{~atm}}\)
2 \(\mathrm{0.008 \mathrm{Nm}^{-2}}\)
3 \(\mathrm{8 \times 10^{4} \mathrm{Nm}^{-2}}\)
4 \(\mathrm{0.25 \mathrm{~atm}}\)
CHXI06:STATES OF MATTER

314109 Equal number of moles of \(\mathrm{\mathrm{CO}}\) and \(\mathrm{\mathrm{CO}_{2}}\) are filled in a chamber at room temperature. The correct relationship w.r.t their partial pressure, \(\mathrm{P_{C O}}\) and \(\mathrm{P_{\mathrm{CO}_{2}}}\) is

1 \(\mathrm{P_{\mathrm{CO}}>P_{\mathrm{CO}_{2}}}\)
2 \(\mathrm{P_{\mathrm{CO}} < P_{\mathrm{CO}_{2}}}\)
3 \(\mathrm{P_{\mathrm{CO}}=P_{\mathrm{CO}_{2}}}\)
4 zero
CHXI06:STATES OF MATTER

314124 Aqueous tension is dependent on

1 Volume
2 Pressure
3 Temperature
4 Weight of gas
CHXI06:STATES OF MATTER

314110 What will be the partial pressure of \(\mathrm{He}\) and \(\mathrm{O}_{2}\) respectively, if \(200 \mathrm{~mL}\) of \(\mathrm{He}\) at \(0.66 \mathrm{~atm}\) and \(400 \mathrm{~mL}\) of \(\mathrm{O}_{2}\) at \(0.52 \mathrm{~atm}\) pressure are mixed in \(400 \mathrm{~mL}\) vessel at \(20^{\circ} \mathrm{C}\) ?

1 0.33 and 0.56
2 0.33 and 0.52
3 0.38 and 0.52
4 0.25 and 0.45
CHXI06:STATES OF MATTER

314111 The pressure of a 1:4 mixture of dihydrogen and dioxygen enclosed in a vessel is one atmosphere. What would be the partial pressure of dioxygen?

1 \(\mathrm{0.8 \times 10^{5} \mathrm{~atm}}\)
2 \(\mathrm{0.008 \mathrm{Nm}^{-2}}\)
3 \(\mathrm{8 \times 10^{4} \mathrm{Nm}^{-2}}\)
4 \(\mathrm{0.25 \mathrm{~atm}}\)
CHXI06:STATES OF MATTER

314109 Equal number of moles of \(\mathrm{\mathrm{CO}}\) and \(\mathrm{\mathrm{CO}_{2}}\) are filled in a chamber at room temperature. The correct relationship w.r.t their partial pressure, \(\mathrm{P_{C O}}\) and \(\mathrm{P_{\mathrm{CO}_{2}}}\) is

1 \(\mathrm{P_{\mathrm{CO}}>P_{\mathrm{CO}_{2}}}\)
2 \(\mathrm{P_{\mathrm{CO}} < P_{\mathrm{CO}_{2}}}\)
3 \(\mathrm{P_{\mathrm{CO}}=P_{\mathrm{CO}_{2}}}\)
4 zero
CHXI06:STATES OF MATTER

314124 Aqueous tension is dependent on

1 Volume
2 Pressure
3 Temperature
4 Weight of gas
CHXI06:STATES OF MATTER

314110 What will be the partial pressure of \(\mathrm{He}\) and \(\mathrm{O}_{2}\) respectively, if \(200 \mathrm{~mL}\) of \(\mathrm{He}\) at \(0.66 \mathrm{~atm}\) and \(400 \mathrm{~mL}\) of \(\mathrm{O}_{2}\) at \(0.52 \mathrm{~atm}\) pressure are mixed in \(400 \mathrm{~mL}\) vessel at \(20^{\circ} \mathrm{C}\) ?

1 0.33 and 0.56
2 0.33 and 0.52
3 0.38 and 0.52
4 0.25 and 0.45
CHXI06:STATES OF MATTER

314111 The pressure of a 1:4 mixture of dihydrogen and dioxygen enclosed in a vessel is one atmosphere. What would be the partial pressure of dioxygen?

1 \(\mathrm{0.8 \times 10^{5} \mathrm{~atm}}\)
2 \(\mathrm{0.008 \mathrm{Nm}^{-2}}\)
3 \(\mathrm{8 \times 10^{4} \mathrm{Nm}^{-2}}\)
4 \(\mathrm{0.25 \mathrm{~atm}}\)