1 g hydrogen (H) has 6,022 140 857.10e23 atoms.
One atomic mass unit (amu) is defined as one twelfth the mass of a carbon-12 atom, and it is not directly related to the number of atoms. However, in 1 gram of hydrogen, there are approximately 6.022 x 10²³ atoms, which is Avogadro's number. Since the molar mass of hydrogen is about 1 g/mol, 1 gram corresponds to 1 mole of hydrogen atoms, containing roughly 6.022 x 10²³ individual hydrogen atoms.
One atomic mass unit (amu) is defined as one twelfth of the mass of a carbon-12 atom, which is approximately (1.66 \times 10^{-24}) grams. In 1 gram of hydrogen, there are about (6.02 \times 10^{23}) atoms (Avogadro's number), since the molar mass of hydrogen is approximately 1 g/mol. Therefore, 1 gram of hydrogen contains roughly (6.02 \times 10^{23}) atoms, while 1 amu represents a much smaller fraction of a single atom's mass.
One atomic mass unit (amu) is defined as one twelfth of the mass of a carbon-12 atom, which is approximately (1.66 \times 10^{-27}) kg. In 1 nanogram (ng) of hydrogen, which is (1 \times 10^{-9}) grams, there are roughly (5.56 \times 10^{15}) hydrogen atoms, since the molar mass of hydrogen is about 1 g/mol. Thus, 1 ng of hydrogen contains a significantly large number of atoms compared to the mass represented by 1 amu.
1 gram is 1 mole of hydrogen because the molecular weight is 1. so. 1 mole contains 6.022x10^23 molecules according to avagadro's law. 1amu cannot be directly related to molecule number as far as i am aware
Atomic mass unit is a unit of mass for all chemical elements, not only for hydrogen. The atomic weight of hydrogen is [1,00784; 1,00811]; the conventional atomic weight is 1,008. 1 atom is equal to 1 amu.
There is 1 atom in 1 atomic mass unit (amu) of hydrogen, as amu is a unit used to express the mass of individual atoms. In 1 gram of hydrogen, there are approximately 6.022 x 10^23 atoms, which is equivalent to Avogadro's number and is known as a mole of atoms.
One atomic mass unit (amu) is defined as one twelfth the mass of a carbon-12 atom, and it is not directly related to the number of atoms. However, in 1 gram of hydrogen, there are approximately 6.022 x 10²³ atoms, which is Avogadro's number. Since the molar mass of hydrogen is about 1 g/mol, 1 gram corresponds to 1 mole of hydrogen atoms, containing roughly 6.022 x 10²³ individual hydrogen atoms.
One atomic mass unit (amu) is defined as one twelfth of the mass of a carbon-12 atom, which is approximately (1.66 \times 10^{-24}) grams. In 1 gram of hydrogen, there are about (6.02 \times 10^{23}) atoms (Avogadro's number), since the molar mass of hydrogen is approximately 1 g/mol. Therefore, 1 gram of hydrogen contains roughly (6.02 \times 10^{23}) atoms, while 1 amu represents a much smaller fraction of a single atom's mass.
One atomic mass unit (amu) is defined as one twelfth of the mass of a carbon-12 atom, which is approximately (1.66 \times 10^{-27}) kg. In 1 nanogram (ng) of hydrogen, which is (1 \times 10^{-9}) grams, there are roughly (5.56 \times 10^{15}) hydrogen atoms, since the molar mass of hydrogen is about 1 g/mol. Thus, 1 ng of hydrogen contains a significantly large number of atoms compared to the mass represented by 1 amu.
This is a not correct question.The atomic weight of oxygen is 15,999 amu.
1 gram is 1 mole of hydrogen because the molecular weight is 1. so. 1 mole contains 6.022x10^23 molecules according to avagadro's law. 1amu cannot be directly related to molecule number as far as i am aware
Mass of 1 Helium atom is 4 amu and mass of 1 Carbon atom is 12 amu. So there are 10 helium atoms and 10 carbon atoms
The molecular mass of hydrogen gas is 2. A molecule of hydrogen gas contains two hydrogen atoms covalently bonded. Since each hydrogen atom has an atomic mass of 1 (as we can derive from the Periodic Table of Elements), the molecular mass of hydrogen gas as a molecule is 1 + 1 = 2.
The Empirical formula simply means that it is the lowest ratio of atoms, not the number of atoms. Therefore, because the ratio of Hydrogen atoms to Oxygen atoms is 1:1, the weight of this is the same as normal:1.008 + 16 = 17.008 amu
There is no fixed number of atoms in 1 atomic mass unit (1 amu) because an atomic mass unit is a unit for measuring the mass of an individual atom. The mass of an atom is determined by the total number of protons, neutrons, and electrons it contains.
Atomic mass unit is a unit of mass for all chemical elements, not only for hydrogen. The atomic weight of hydrogen is [1,00784; 1,00811]; the conventional atomic weight is 1,008. 1 atom is equal to 1 amu.
There are 3 atoms of hydrogen in 1 molecule of ethanol (C2H5OH).