First find out how many moles of gas are collected under the given conditions using the Ideal Gas Law.
See the Related Questions link to the left for how to do that. Then use that number of moles and determine the volume of that much gas at STP, also using the Ideal Gas Law question to the left.
The final temperature of the water after mixing will be the average of the initial temperatures, which is (30 + 50) / 2 = 40 degrees Celsius.
This depends on the volume.
It is a solid
Water at 0 oC is ice.
0 degree Celsius.
55 degrees celsius
The boiling point of water is 100 degree celsius. Therefore water changes in to vapor after 100 degree celsius. Therefore the physical state of water at 250 degree celsius is "Gas".
When water at zero degrees Celsius is heated, its volume initially decreases until it reaches its maximum density at 4 degrees Celsius. Beyond this temperature, as the water continues to heat up, it expands and its volume increases.
When water is heated from 0°C to 10°C, it undergoes thermal expansion and its volume will increase. The exact amount of volume increase will depend on the coefficient of volume expansion for water, which is approximately 0.00021 per degree Celsius.
The final temperature of the water after mixing will be the average of the initial temperatures, which is (30 + 50) / 2 = 40 degrees Celsius.
Water at 0 degrees Celsius is in a solid state, known as ice.
100 degrees celsius
The volume increases.
boil it at 100 degree Celsius or freeze it at 0 degree Celsius
It is not.
Hot, water on 100 degree Celsius is boiling
The triple point of water is zero degree Celsius this is because 1)zero degree Celsius is the melting point of ice. 2)water changes from liquid to solid in zero degree Celsius.