At 300 K, 36 g of glucose present in a litre of its solution …?

At 300 K, 36 g of glucose present in a litre of its solution …?

WebSo, this is 754 Torr. And then we're going to multiply that times the volume. And here, they give the volume in liters in several of these, and we're probably going to be using this one, this version of the ideal gas constant, that has liters, Torr, moles, and Kelvin. And so let's multiply times the volume, so times 1.85 liters. WebJul 6, 2024 · At 300 K, 36 g of glucose present per litre in its solution has an osmotic pressure of 4.98 bar. If the osmotic pressure of a urea solution is 1.52 bar its at the same temperature,concentration is. Updated On: Jul 6, 2024. 1.6 M. class 9 maths ncert solutions chapter 2 pdf download Webpi2=C2RT. Pi1/pi2=C1/C2. Let us calculate the concentration of the first solution with osmotic pressure of 4.98 bar: Mass of glucose = 36 g. Molar mass of glucose = 180 g/mol. Number of moles of glucose = 36/180 = … WebFeb 22, 2024 · At `300 K`, `36 g` of glucose present per litre in its solution has an osmotic pressure of `4.98 bar`. If the osmotic pressure of the solution is `1.5. ea brown company WebQ. At 300 K, 36 g of glucose present in a litre of its solution has an osmotic pressure of 4.98 bar. If the osmotic pressure of the solution is 1.52 bar at the same temperature, … ea brown 97d WebAt '300 K, 36 g' of glucose present in a litre of its solution has an osmotic pressure of 4.98 bar. If the osmotic pressure of the solution is 1.52 bars at t...

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