If you increase pressure on one liter of nitrogen the volume occupied by that liter of gas will decrease.
One liter of nitrogen can be bought for six cents if by the truckload, or a dollar or two in exceptionally small quantities. It's actually cheaper to produce than bottled water.
you need to state the temperature and pressure. The ideal gas law shows that pressure is inversely proportional to volume and temp is proportionally to volume, so volume, and thus, concentration of molecules, thus weight would be different depending on the temperature and pressure.
The mass of 1 liter of helium is approximately 0.1785 grams, while the mass of 1 liter of air (at sea level) is around 1.225 grams. Helium is lighter than air because its atomic mass is lower than the average molecular weight of air, which is mainly composed of nitrogen and oxygen.
Air is less dense than lead, meaning it has fewer particles per unit volume. Lead is a dense metal with a high atomic mass, while air is a mixture of gases like nitrogen and oxygen with much lower individual particle masses. As a result, 1 liter of lead contains more mass than 1 liter of air.
The cost of liquid nitrogen can vary depending on the supplier and location, but generally it ranges from $0.25 to $3 per liter. Additional costs may include delivery fees and equipment rental for storage and handling.
To decrease the pressure of the nitrogen to 1.0 atm, you would need to increase the volume. Use the combined gas law (P1V1/T1 = P2V2/T2) to calculate the new volume required. Given that the initial pressure is 3.2 atm, initial volume is 2.0 liters, and final pressure is 1.0 atm, you can rearrange the equation to solve for V2.
It all depends on a litre of what.
The density of nitrogen is 1.251 g/liter at 0° C (32° F) and 1 atmosphere pressure. The density of ultrapure nitrogen gas at 0 0C and 101,325 kPa is: 1,251 g/L and at 15 0C is 1,185 g/L. 0.0012506 g/cm3
About twice the size of a 2 liter soda bottle. Liquid nitrogen is extremely cold- the container must be vacuum insulated, or the liquid nitrogen quickly turn to gas.
One liter of nitrogen can be bought for six cents if by the truckload, or a dollar or two in exceptionally small quantities. It's actually cheaper to produce than bottled water.
Decreasing the temperature and increasing the pressure will decrease the total amount of gaseous solute able to be dissolved in a liter of liquid water. Conversely, increasing the temperature and decreasing the pressure will increase the amount of gaseous solute that can be dissolved.
To work this out there are two possible methods, the first uses knowledge about densities: At it boiling point, Liquid Nitrogen has a density of 807.0 grams per liter At Standard Temperature and Pressure, Nitrogen Gas has a density of 1.251 grams per liter Thus:- 25 liters of Liquid Nitrogen will weigh 25*807 = 20175 grams At STP 20175 grams of Nitrogen Gas will occupy 20175/1.251 = 16127.1 liters. The second method is to use the published expansion ratio for Liquid Nitrogen: Liquid Nitrogen has a liquid-to-gas expansion ratio of 1:694 at 20°C (68 °F) Thus:- 25*694=17350 liters. You will see the numbers are similar but slightly different, of the two I would be more confident in the density calculation method result. Although I suspect most people would use the expansion ratio method.
20.95%oxygen and 78.08% nitrogen
1 Kilometer per liter = 2.35 miles per US gallon So, 10 kl per liter = 23.5 mpg A close estimate (if you're converting in your head) is to double the kilometers per liter value, and increase the result by 15%.
The density of nitrogen gas at standard conditions (0°C and 1 atm pressure) is approximately 1.25 grams per liter. Nitrogen gas is less dense than air, which is why it is often used to displace air in certain applications.
you need to state the temperature and pressure. The ideal gas law shows that pressure is inversely proportional to volume and temp is proportionally to volume, so volume, and thus, concentration of molecules, thus weight would be different depending on the temperature and pressure.
The mass of 1 liter of helium is approximately 0.1785 grams, while the mass of 1 liter of air (at sea level) is around 1.225 grams. Helium is lighter than air because its atomic mass is lower than the average molecular weight of air, which is mainly composed of nitrogen and oxygen.