According to ChemicalElements.com, the boiling point of rubidium is:
688.0 °C (961.15 K, 1270.4 °F)
at standard (atmospheric) pressure.
The boiling poit of rubidium is 688 oC.
Rubidium is a solid at room temperature and pressure. It has a melting point of 39.3°C (102.7°F) and a boiling point of 688°C (1270°F), so it can exist in liquid and gaseous forms at higher temperatures.
Physical Properties : Colour State(liquid, gas and solid) Melting point Boiling point Density Chemical Properties : How it reacts with other things or substances.
Rubidium's melting point in celsius is 39.48 degrees.
The freezing point of rubidium, a soft, silvery-white metallic element with the symbol Rb and atomic number 37, is approximately 39.3 degrees Celsius (102.7 degrees Fahrenheit) at standard atmospheric pressure. Rubidium is a solid at temperatures below its freezing point and will transition into a liquid state as it is heated above this temperature.
Sodium has a melting point of 97.72 oC and rubidium has a melting point of 39.48 oC.
The element Rubidium is part of the alkali metals group and is silvery-white and soft. It has a melting point of about 40 degrees celsius and a boiling point of 696 degrees celsius. It can ignite randomly in air and reacts violently with water. It can form amalgams with mercury and its flame is a yellowish purple.
Yes, rubidium has a higher melting point than potassium. Rubidium has a melting point of 39.3°C, while potassium has a melting point of 63.4°C.
Boiling is the phase where the boiling occurs. The point at which the boiling occurs is the boiling point.
there is no boiling point
Krypton is a Nobel gas, which means that it has a full outer valance shell of electrons. This means there are no bonds or forces between the atoms such as Van der Walls or dipoles. Rubidium however is held together by a metallic bond, which means that it's electrons are delcocalized into a sort of "sea" of electrons. This leads to attractive forces between the atoms, meaning they're held closer together and it takes more energy to separate them into a gaseous form.
Whether or not the boiling point of neon is negative depends on the temperature scale used to describe the boiling point. If the boiling point is given in Celsius or Fahrenheit, the boiling point is negative. However, in Kelvin, which cannot be negative, the boiling point is positive.