No, atoms and molecules are not living things. All living things, however, are made up of atoms and molecules.
In the Haber process, nitrogen gas and hydrogen gas react to form ammonia gas. You can draw a particle diagram by representing nitrogen molecules (N2) as pairs of N atoms, hydrogen molecules (H2) as pairs of H atoms, and ammonia molecules (NH3) as a combination of N and H atoms. Show the collisions between nitrogen and hydrogen molecules and the formation of ammonia molecules.
To find the mass of 8.2 x 10²² atoms of N₂I₆, first determine the number of molecules, which is equal to the number of atoms divided by the number of atoms in one molecule of N₂I₆ (which contains 8 atoms). This gives approximately 1.025 x 10²² molecules. The molar mass of N₂I₆ is about 360.8 g/mol. Therefore, the mass in grams can be calculated by multiplying the number of molecules by the molar mass and dividing by Avogadro's number (6.022 x 10²³), resulting in approximately 57.4 grams.
The chemical formula 4C11H18O13NsP3 indicates that there are 4 molecules of the compound represented by the formula C11H18O13NsP3. Each molecule contains 11 carbon (C) atoms, 18 hydrogen (H) atoms, 13 oxygen (O) atoms, 1 nitrogen (N), and 3 phosphorus (P) atoms, but the total number of molecules is specified as 4.
The most electronegative atoms typically present in biological molecules are oxygen (O) and nitrogen (N). These elements are often involved in forming polar bonds with hydrogen (H) atoms, contributing to the overall structure and function of biomolecules.
it isn't made up of atoms or molecules, and havent got a clue what nitrogen is!!! ------------- Nitrogen is a natural chemical element with the symbol N; nitrogen exist, as other many gases, as a diatomic molecule - N2.
This is an unknown number of atoms or molecules.
Each bio-molecule has a specific chemical formula and a different number of atoms; generally bio-molecules contain C, H, O, N.
the faster the atoms move the more space they need n the more heat they produce . the slower the atoms move they less room they need n the colder an object is. examples: think of steam hot it expands n needs to escape the tea pot or what ever n moves fast enough to make that noise. my teacher used an examples of students. atoms don't wanna bump into each other so lets say if the atoms (kids) were to walk around the room nice n calm we could do that without bumping into each other n we wouldn't get hot n sweaty. but if we were to run around the class room we would start getting hot n bump into each other n need more room n expand. n yeah that's all i know :)
2 (atoms N / molecule N2) * 8.5*10+24 (molecules N2) / 6.02*10+23 (atoms N / mole N-atoms) = 28 mole N-atoms
In the Haber process, nitrogen gas and hydrogen gas react to form ammonia gas. You can draw a particle diagram by representing nitrogen molecules (N2) as pairs of N atoms, hydrogen molecules (H2) as pairs of H atoms, and ammonia molecules (NH3) as a combination of N and H atoms. Show the collisions between nitrogen and hydrogen molecules and the formation of ammonia molecules.
living eats nonliving
To find the mass of 8.2 x 10²² atoms of N₂I₆, first determine the number of molecules, which is equal to the number of atoms divided by the number of atoms in one molecule of N₂I₆ (which contains 8 atoms). This gives approximately 1.025 x 10²² molecules. The molar mass of N₂I₆ is about 360.8 g/mol. Therefore, the mass in grams can be calculated by multiplying the number of molecules by the molar mass and dividing by Avogadro's number (6.022 x 10²³), resulting in approximately 57.4 grams.
Nitrogen gas is composed of molecules, each containing two nitrogen atoms bonded together. These molecules behave as a single unit in chemical reactions and physical properties, thus they are referred to as molecules rather than individual atoms.
Multiply 8.7 by avagadros number to get the number of molecules. 8.7x6.02x1023=5.24x1024 molecules of NO. as there is 1 atom of N and one of O for each molecule there are 5.24x1024 atoms of each element. this means that the total number of atoms is 2x5.24x1024 = 1.05x1025 atoms
The chemical formula 4C11H18O13NsP3 indicates that there are 4 molecules of the compound represented by the formula C11H18O13NsP3. Each molecule contains 11 carbon (C) atoms, 18 hydrogen (H) atoms, 13 oxygen (O) atoms, 1 nitrogen (N), and 3 phosphorus (P) atoms, but the total number of molecules is specified as 4.
Many organic molecules necessary to life all contain nitrogen (N) atoms. Amino acids that comprise proteins, cellular energy from ATPs, and the genetic blueprint of DNA all contain N.
There are 3.01 x 10^23 atoms of sodium in 0.250 moles of Na2SO4. This is calculated by multiplying the Avogadro's number (6.022 x 10^23 atoms/mol) by the stoichiometric ratio (2 sodium atoms per molecule of Na2SO4).