Rate of Effusion for Second Gas given Densities by Graham's law Solution

STEP 0: Pre-Calculation Summary
Formula Used
Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Density of Second Gas/Density of First Gas))
r2 = r1/(sqrt(d2/d1))
This formula uses 1 Functions, 4 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Rate of Effusion of Second Gas - (Measured in Cubic Meter per Second) - The Rate of Effusion of Second Gas is the special case of diffusion when the second gas is allowed to escape through the small hole.
Rate of Effusion of First Gas - (Measured in Cubic Meter per Second) - The Rate of Effusion of First Gas is the special case of diffusion when the first gas is allowed to escape through the small hole.
Density of Second Gas - (Measured in Kilogram per Cubic Meter) - The Density of Second Gas is defined as mass per unit volume of second gas under specific conditions of temperature and pressure.
Density of First Gas - (Measured in Kilogram per Cubic Meter) - The Density of First Gas is defined as mass per unit volume of first gas under specific conditions of temperature and pressure.
STEP 1: Convert Input(s) to Base Unit
Rate of Effusion of First Gas: 2.12 Cubic Meter per Second --> 2.12 Cubic Meter per Second No Conversion Required
Density of Second Gas: 2.3 Kilogram per Cubic Meter --> 2.3 Kilogram per Cubic Meter No Conversion Required
Density of First Gas: 0.63 Kilogram per Cubic Meter --> 0.63 Kilogram per Cubic Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
r2 = r1/(sqrt(d2/d1)) --> 2.12/(sqrt(2.3/0.63))
Evaluating ... ...
r2 = 1.10953809425756
STEP 3: Convert Result to Output's Unit
1.10953809425756 Cubic Meter per Second --> No Conversion Required
FINAL ANSWER
1.10953809425756 1.109538 Cubic Meter per Second <-- Rate of Effusion of Second Gas
(Calculation completed in 00.004 seconds)

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8 Graham's Law Calculators

Rate of Effusion for Second Gas by Graham's law
​ Go Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Molar Mass of Second Gas/Molar Mass of First Gas))
Rate of Effusion for First Gas by Graham's law
​ Go Rate of Effusion of First Gas = (sqrt(Molar Mass of Second Gas/Molar Mass of First Gas))*Rate of Effusion of Second Gas
Rate of Effusion for Second Gas given Densities by Graham's law
​ Go Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Density of Second Gas/Density of First Gas))
Rate of Effusion for First Gas given Densities by Graham's law
​ Go Rate of Effusion of First Gas = (sqrt(Density of Second Gas/Density of First Gas))*Rate of Effusion of Second Gas
Molar Mass of Second Gas by Graham's law
​ Go Molar Mass of Second Gas = ((Rate of Effusion of First Gas/Rate of Effusion of Second Gas)^2)*Molar Mass of First Gas
Molar Mass of First Gas by Graham's law
​ Go Molar Mass of First Gas = Molar Mass of Second Gas/((Rate of Effusion of First Gas/Rate of Effusion of Second Gas)^2)
Density of Second Gas by Graham's law
​ Go Density of Second Gas = ((Rate of Effusion of First Gas/Rate of Effusion of Second Gas)^2)*Density of First Gas
Density of First Gas by Graham's Law
​ Go Density of First Gas = Density of Second Gas/((Rate of Effusion of First Gas/Rate of Effusion of Second Gas)^2)

Rate of Effusion for Second Gas given Densities by Graham's law Formula

Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Density of Second Gas/Density of First Gas))
r2 = r1/(sqrt(d2/d1))

What is Graham's law?

Graham's law of effusion (also called Graham's law of diffusion) was formulated by Scottish physical chemist Thomas Graham in 1848. Graham found experimentally that the rate of effusion of a gas is inversely proportional to the square root of the molar mass of its particles. Graham's law is most accurate for molecular effusion which involves the movement of one gas at a time through a hole. It is only approximate for diffusion of one gas in another or in air, as these processes involve the movement of more than one gas. In the same conditions of temperature and pressure, the molar mass is proportional to the mass density. Therefore, the rates of diffusion of different gases are inversely proportional to the square roots of their mass densities.

How to Calculate Rate of Effusion for Second Gas given Densities by Graham's law?

Rate of Effusion for Second Gas given Densities by Graham's law calculator uses Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Density of Second Gas/Density of First Gas)) to calculate the Rate of Effusion of Second Gas, The Rate of effusion for second gas given densities by Graham's law formula is defined as rate of diffusion or of effusion of a gas is inversely proportional to the square root of its densities. Rate of Effusion of Second Gas is denoted by r2 symbol.

How to calculate Rate of Effusion for Second Gas given Densities by Graham's law using this online calculator? To use this online calculator for Rate of Effusion for Second Gas given Densities by Graham's law, enter Rate of Effusion of First Gas (r1), Density of Second Gas (d2) & Density of First Gas (d1) and hit the calculate button. Here is how the Rate of Effusion for Second Gas given Densities by Graham's law calculation can be explained with given input values -> 1.109538 = 2.12/(sqrt(2.3/0.63)).

FAQ

What is Rate of Effusion for Second Gas given Densities by Graham's law?
The Rate of effusion for second gas given densities by Graham's law formula is defined as rate of diffusion or of effusion of a gas is inversely proportional to the square root of its densities and is represented as r2 = r1/(sqrt(d2/d1)) or Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Density of Second Gas/Density of First Gas)). The Rate of Effusion of First Gas is the special case of diffusion when the first gas is allowed to escape through the small hole, The Density of Second Gas is defined as mass per unit volume of second gas under specific conditions of temperature and pressure & The Density of First Gas is defined as mass per unit volume of first gas under specific conditions of temperature and pressure.
How to calculate Rate of Effusion for Second Gas given Densities by Graham's law?
The Rate of effusion for second gas given densities by Graham's law formula is defined as rate of diffusion or of effusion of a gas is inversely proportional to the square root of its densities is calculated using Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Density of Second Gas/Density of First Gas)). To calculate Rate of Effusion for Second Gas given Densities by Graham's law, you need Rate of Effusion of First Gas (r1), Density of Second Gas (d2) & Density of First Gas (d1). With our tool, you need to enter the respective value for Rate of Effusion of First Gas, Density of Second Gas & Density of First Gas and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Rate of Effusion of Second Gas?
In this formula, Rate of Effusion of Second Gas uses Rate of Effusion of First Gas, Density of Second Gas & Density of First Gas. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Rate of Effusion of Second Gas = Rate of Effusion of First Gas/(sqrt(Molar Mass of Second Gas/Molar Mass of First Gas))
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