Single option match maxtix :
Column – I | Column - II | ||
(a) | P1V1 = P2V2 = P3V3 = .............. | (p) | Kinetic equation of ideal gases. |
(b) | = = = .... at constant pressure. | (q) | Boyle’s law |
(c) | r ∝ | (r) | Dalton’s law of partial pressures at constant temperature |
(d) | P = P1 + P2 + P3 +............ | (s) | Graham’s law |
(E) | PV = mnc2 | (t) | Charles’ law |
Text Solution
Verified by ExpertsA
(A - q) ; (B - t) ; (C - s) ; (D - r) ; (E - p)
PV = K (Boyle's law)
P 1 V 1 = P 2 V 2 = P 3 V 3
From charle's law
V ∝ T ⇒
= K ⇒
= 
From Graham's law
r ∝
andd =
⇒ d ∝ M.
So, r ∝
.
From Dalton's law of partial pressure at constant temperature.
P = P 1 + P 2 + .......
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