because of isotopes.
there is 75% Cl with mass number 35 and 25% with mass number 37
so 35 x 3/4 + 37 x 1/4 = 35.5
Chlorine's mass number is 35.5. This is an average value due to the presence of two isotopes of chlorine, chlorine-35 and chlorine-37, in nature.
the atomic number would be 17 && the mass would be 35
The two isotopes of chlorine, chlorine-35 and chlorine-37, have different mass numbers because they have a different number of neutrons in their atomic nuclei. Chlorine-35 has 18 neutrons and chlorine-37 has 20 neutrons, leading to their distinct mass numbers of 35 and 37, respectively.
37, as the isotope is identified by its mass number.
Chlorine (Cl) can have three different values of mass number (isotopes) because it has multiple stable isotopes with different numbers of neutrons. The three isotopes of chlorine are chlorine-35, chlorine-36, and chlorine-37, corresponding to different numbers of neutrons in the nucleus.
The atomic mass of chlorine is not 355 it is 35.5 (approx). So, if the molecular mass is 71 then the atomicity is 71/35.5 = 2.
Chlorine has isotopes with mass numbers ranging from 32 to 40.
The element with an atomic mass of 35.453 is chlorine. It is a halogen and has the atomic number 17.
Chlorine's mass number is 35.5. This is an average value due to the presence of two isotopes of chlorine, chlorine-35 and chlorine-37, in nature.
Chlorine has a mass number of 35.5 because it is a mixture of two stable isotopes, chlorine-35 and chlorine-37. The average atomic mass of chlorine is calculated by taking into account the abundance of each isotope in nature. The weighted average of these isotopes gives the atomic mass value of 35.5 for chlorine.
The atomic mass for chlorine (Cl) is 17
The atomic number of chlorine is 17, which indicates the number of protons in its nucleus. The atomic mass number of chlorine is about 35.5, which represents the average mass of its isotopes considering their relative abundances.
The element with a mass number of 37 is chlorine (Cl).
Atomic number is unique to an element. Since both Chlorine-35 and Chlorine-37 has atomic number of 17, they are both Chlorine. However they have different atomic mass (caused by different number of neutrons in the atom) thus they are called isotope.
17 plus 17 equals 34. However, Chlorine-34 does not exist; the stable isotopes are Chlorine-35 and Chlorine-37.
To find the number of moles in 355 grams of Au, you need to divide the given mass by the molar mass of gold (Au). The molar mass of Au is approximately 197 grams/mol. Therefore, 355 grams of Au is equivalent to 355/197 = approximately 1.80 moles of Au.
Chlorine is a non metallic element. Mass number of it is 35.