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To help compare different orders of magnitude this page lists lengths between 100 pm and 1 nm (10-10 m and 10-9 m). See also lengths of other orders of magnitude.- Lengths shorter than 100 pm
- 100 pm = 1 Ångström
- 100 pm (0.1 nm) -- covalent radius of sulfur atom
- 126 pm (0.126 nm) -- covalent radius of ruthenium atom
- 135 pm (0.135 nm) -- covalent radius of technetium atom
- 153 pm (0.153 nm) -- covalent radius of silver atom
- 154 pm (0.154 nm) -- length of a typical covalent bond ( C-C).
- 155 pm (0.155 nm) -- covalent radius of zirconium atom
- 175 pm (0.175 nm) -- covalent radius of thuliumErbium Thulium Ytterbium Tm Md Full table General Name, Symbol, NumberThulium, Tm, 69 Chemical series Lanthanides Group, Period, BlockNA, 6 , f Density, Hardness 9321 kg/m3, no data Appearance silvery gray Atomic properties Atomic weight 168. 93421 u Atom atom
- 225 pm (0.225 nm) -- covalent radius of caesiumCaesium (also spelled cesium and pronounced /'sizm/, though it goes against Latin phonetics) is a chemical element in the periodic table that has the symbol Cs and atomic number 55. It is a soft silvery-gold Alkali metal which is one of at least three met atom
- 500 pm (0.50 nm) -- width of proteinmyoglobin, showing coloured alpha helices. This protein was the first to have its structure solved by X-ray crystallography by Max Perutz and Sir John Cowdery Kendrew in 1958, which led to them receiving a Nobel Prize in Chemistry. A protein is a complex, α helixIn proteins, the alpha; helix is a major structural motif in secondary structure. It was first postulated by Linus Pauling, Robert Corey, and Herman Branson in 1951 based on the known crystal structures of amino acids and peptides and Pauling's prediction
- Lengths longer than 1 nmTo help compare different orders of magnitudes this page lists lengths between 1 nm and 10 nm (10-9 m and 10-8 m). See also lengths of other orders of magnitude. Lengths shorter than 1 nm 1 nm 1000 picometres 10 Angstroms is roughly the length of a sucros
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Orders of magnitude (length)
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