well i think its 32
The atomic mass of iodine is about 126.9 g/mol, which is indeed less than the atomic mass of many other elements. This low atomic mass for iodine is due to its position in the periodic table and the number of protons and neutrons in its nucleus.
Trace elements.
Equal, for all practical purposes, due to conservation of mass. In theory, it can be slightly less, but the effect is insignificant. Do some reading on "mass deficit" for more information; but briefly, energy can escape during a chemical reaction, and this energy has some mass.
well a lot of elements have atomic mass so then you would have to look at the periodic table to find the right answer
it bonds with many elements but it is less reactive than the rest of the halogens
Elemental hydrogen and helium have atomic masses less than twice their atomic numbers.
Infinite
7 of them.
The mass is less than 1 kg.
Elements with an atomic mass of less than 10 include hydrogen (1.008), helium (4.0026), lithium (6.94), beryllium (9.0122), and boron (10.81). Among these, hydrogen, helium, lithium, and beryllium all have atomic masses below 10, while boron is just above. These elements are primarily found in the first two rows of the periodic table.
Jewels come in several sizes, but usually their mass will be less than a kilogram.Jewels come in several sizes, but usually their mass will be less than a kilogram.Jewels come in several sizes, but usually their mass will be less than a kilogram.Jewels come in several sizes, but usually their mass will be less than a kilogram.
The empirical formula molar mass is the mass of the simplest whole-number ratio of the elements in a compound, while the actual molar mass corresponds to the molar mass of the compound's molecular formula. The empirical formula molar mass is always less than or equal to the actual molar mass because the empirical formula represents the smallest ratio of atoms, which can be multiplied to obtain the molecular formula. Therefore, for compounds with a molecular formula that is a multiple of the empirical formula, the empirical molar mass will be less than the actual molar mass.