100 L
SOLUTION:
Ideal gas equation: PV = nRT
P, pressure of the gas
V, volume of the gas
n, moles of gas
R, Universal gas constant
T, thermodynamic (or absolute) temperature of the gas
From gas equation: PV/T = nR
For cases 1 and 2: P1V1/T1 = P2V2/T2 since n and R are the same for both cases.
From above relation: V2 = P1V1T2/T1P2
Temperatures have to be given in kelvin. T1 = 0oC = 273 K; T2 = 273oC = 546 K
Data on last relation: V2 = 150 kPa (200 L)(546 K)/[(273 K)(600 kPa)] = 100 L
Yes. 150 degrees Celsius is equal to a temperature of 302 degrees Fahrenheit.
At atmospheric pressure, liquid nitrogen boils at -196 degrees Celsius (-321 degrees Fahrenheit). If the pressure is increased, the temperature at which liquid nitrogen boils also increases.
The temperature of the water is 100 degrees celsius.
The boiling temperature of ammonia is -33.34 degrees Celsius or -28.01 degrees Fahrenheit at standard atmospheric pressure of 1 atm.
374 degrees Celsius
Yes. 150 degrees Celsius is equal to a temperature of 302 degrees Fahrenheit.
At atmospheric pressure, liquid nitrogen boils at -196 degrees Celsius (-321 degrees Fahrenheit). If the pressure is increased, the temperature at which liquid nitrogen boils also increases.
A fixed quantity of gas at a constant pressure exhibits a temperature of 27 degrees Celsius and occupies a volume of 10.0 L. Use Charles's law to calculate: the temperature of the gas in degrees Celsius in atmospheres if the volume is increased to 16.0 L
Yes, the temperature of water can exceed 100 degrees Celsius under certain conditions, primarily when it is subjected to increased pressure. In a pressure cooker, for example, water can reach temperatures of around 120 degrees Celsius or higher without boiling. Additionally, superheated water can exist in certain environments, such as deep-sea hydrothermal vents. However, at standard atmospheric pressure, water will boil at 100 degrees Celsius.
The temperature of the water is 100 degrees celsius.
100 degrees Celsius is the boiling point of water, which happens to be 212 degrees Fahrenheit at standard pressure
Standard conditions, or standard temperature and pressure (STP) is the atmospheric pressure at sea level with temperature at zero degrees Celsius (273.15 Kelvin).
The temperature increased by 11 degrees Celsius.
Yeah, the Suns radiant pressure is more increased then Betelgeuse.
The boiling temperature of ammonia is -33.34 degrees Celsius or -28.01 degrees Fahrenheit at standard atmospheric pressure of 1 atm.
Standard conditions, or standard temperature and pressure (STP) is the atmospheric pressure at sea level with temperature at zero degrees Celsius (273.15 Kelvin).
If the temperature decreases by 30 degrees Celsius from 20 degrees Celsius, the new temperature will be -10 degrees Celsius.