What is the boiling point of a common gas? Comparison of boiling points between liquid, solid, and g

Updated on science 2024-06-05
6 answers
  1. Anonymous users2024-02-11

    Nitrogen: minus 196 degrees Celsius.

    Oxygen: -183 degrees Celsius.

    Carbon dioxide: minus degrees Celsius.

    Helium is normally a colorless, odorless gas; melting point at atmospheric pressure), boiling point; Density gram liter, critical temperature, critical pressure atmospheric pressure.

    Neon (neon) Neon is a colorless, odorless, tasteless gas, melting point, boiling point, gas density gram liter (0, 1 105 Pa), solubility in water μl kg water.

    Argon is a colorless, odorless and tasteless gas. It is the most abundant of the noble gases in the air, containing about 934 milliliters in 100 liters of air. Density grams. Melting point boiling point. The ionization energy is electron volts.

    Krypton is colorless, odorless, and tasteless. Density gram liter (gas), gram centimeter3 (liquid, melting point, boiling point first ionization energy electron volts.

    Xenon is colorless, odorless, and tasteless. It is a type of inert gas. Density grams, gram cm3 (liquid), gram cm3 (solid).Melting point, boiling point, ionization energy, electron volts.

    Radon has a melting point of -71 and a boiling point of

  2. Anonymous users2024-02-10

    At 1 standard atmosphere:

    Nitrogen: minus 196 degrees Celsius.

    Oxygen: -183 degrees Celsius.

    Carbon dioxide: minus degrees Celsius.

  3. Anonymous users2024-02-09

    <> boiling point: the solid is larger than the liquid and the gas is larger.

    The boiling point is the temperature at which the liquid boils, that is, the saturated vapor pressure of the liquid.

    The temperature at which the source is measured at the same time as the external pressure. Boiling is a phenomenon of violent vaporization that occurs simultaneously inside and on the surface of a liquid at a certain temperature.

    The higher the concentration of the liquid, the higher the boiling point. Different liquids have different boiling points. The boiling point changes with the change of external pressure, and if the pressure is low, the boiling point is low. When a liquid boils, the saturated vapor pressure in the bubble beam that forms inside it.

    When equal to the pressure exerted by the outside world, the bubble becomes larger and rises, so the boiling point, the saturated vapor pressure of the liquid, is equal to the temperature at the outside pressure. The boiling point of a liquid is related to the external pressure.

    When the pressure of the liquid increases, its boiling point rises; When the pressure decreases, the boiling point decreases.

  4. Anonymous users2024-02-08

    Summary. The boiling point generally refers to the temperature at which the liquid boils, and for gases it is the condensation point, which is the same as the boiling point temperature.

    In general, gases have boiling points, gases are already boiling, and their liquefaction is called condensation. Therefore, when the gas reaches the boiling point, it is gasified, and it is liquefied only when it is below the boiling point.

    Does gas have a boiling point.

    The boiling point generally refers to the temperature at which the liquid boils, and the source ridge is the condensation point for the gas, which is the same as the boiling point temperature. In general, the gas Zheng group has a boiling point, the gas is already boiling, and its liquefaction is called condensation. The hail plexus seeps into the gas when it reaches the boiling point, which is gasification, and only below the boiling point is it liquefied.

    Thank you. You are welcome!

  5. Anonymous users2024-02-07

    The boiling point refers to the fact that when the temperature system rises to the boiling point of the substances, the substances will boil into gases, and there is a d substance, like iron. Gold. Stone.

    Wait. The boiling point is higher than room temperature due to the boiling point being higher than room temperature.

    So it doesn't boil.

    Solids (Supplemental.

    It hasn't even melted the point.

    So it didn't dissolve.

    solid) like water.

    The liquid is at room temperature, and the left melting point of the ridge has not reached the boiling point, such as the melting point of water is 0 degrees.

    The boiling point is 100 degrees, and the room temperature is 25 degrees, because it will dissolve left but not boiled, it is a liquid, and there is a d substance, O, both the melting point and the boiling point are very low.

    The boiling point of argon is -186 degrees Celsius, the boiling point of nitrogen is -196 degrees Celsius, and the boiling point of oxygen is -183 degrees Celsius.

    It becomes a gaseous state, so it is a gas in the air (i.e. room temperature) if the temperature is lowered to minus 200 degrees Celsius oxygen.

    You have to accept the concept that a substance can have a negative degree Celsius o boiling point and is related to the bonding of the earth if you want to explain that o is maintained by the wan der waals force.

    It is so weak that it can be separated so that it can be turned into a gaseous stone with a little temperature.

    Water with ionic bond

    Metallic Bond or Covalent Bond is much stronger than Van der Waals.

    There is a high D boiling point Remember that it is a high zero-crossing and a low zero-crossing system is meaningful, and the system is only a number Well, the conversation is low zero-crossing (that is, negative) will not exist Well, it is misleading like a water system boiling at 100 degrees!

    Yi d said that the sister is a boiling point sister is a substance that is gaseous, and it is liquid below -186, and the boiling point is a gaseous substance!

  6. Anonymous users2024-02-06

    The boiling point rises as the pressure increases. The volume is compressed, so that the pressure increases and the boiling point increases. Liquefaction occurs when the boiling point is higher than the current temperature of the gas.

    There are two ways to achieve liquefaction, one is to reduce the temperature, and the other is to compress the volume.

    The critical temperature is the maximum temperature at which a gas can liquefy. Because usually the volume of gas liquefaction will become one thousandth of the original, which is convenient for storage and transportation, so Liang Cheng usually liquefies some gases (such as ammonia and natural gas) in reality, because the critical point of these two gases is higher, so it can become liquid under pressure at room temperature, while the critical point of some other gases such as hydrogen and nitrogen is very low, and deep cooling must be carried out while pressurizing, which is called liquefaction.

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