The atom economy of aspirin synthesis is relatively high, around 90%. This means that about 90% of the reactant atoms are found in the final product, while only around 10% are considered waste. This efficiency is one of the reasons why the synthesis of aspirin is considered to be environmentally friendly.
Aspirin is a white crystalline powder with a melting point of 135°C. The common chemical name for aspirin is acetylsalicylic acid. Its systematic name is 2-(acetyloxy)benzoic acid. The chemical formula of aspirin is C9H8O4.
There are twenty-one atoms per molecule. Acetylsalicylic acid's formula has the simple form C9H8O4.
The molecule C9H8O4 contains 21 atoms.
Carbon, Hydrogen, Oxygen and Nitrogen.
The atom economy of aspirin synthesis is relatively high, around 90%. This means that about 90% of the reactant atoms are found in the final product, while only around 10% are considered waste. This efficiency is one of the reasons why the synthesis of aspirin is considered to be environmentally friendly.
2.6 moles C9H8O4 (9 moles C/1 mole C9H8O4)(6.022 X 10^23/ 1mole C) = 1.4 X 10^25 atoms of carbon
Hydrogen - 8 Oxygen - 4 Carbon - 9 So, shorthand formula is C9H8O4 = aspirin
Aspirin is a white crystalline powder with a melting point of 135°C. The common chemical name for aspirin is acetylsalicylic acid. Its systematic name is 2-(acetyloxy)benzoic acid. The chemical formula of aspirin is C9H8O4.
There are twenty-one atoms per molecule. Acetylsalicylic acid's formula has the simple form C9H8O4.
It depends on the mass of the tablet and the molar mass of the aspirin molecule itself, find out the mass in grams of one tablet, divide it by the sum of the number of neutrons and protons in one molecule of aspirin and it will give you the molar mass of the aspirin tablet.
There are 21 atoms, because there are 9 atoms of Carbon 8 atoms of Hydrogen and 4 atoms of Oxygen.
Pure aspirin is salicylic acid acetate, and therefore contains carbon, hydrogen, and oxygen atoms, which are also elements.
Naturally. Carbon atoms are present in everything that are organic or are organic derivatives. In any substance obtained from plants or animals, carbon atoms are naturally present.
There are two chiral carbon atoms present in 2,3,4-trichloropentane.
There are four atoms of carbon present in a molecule of carbon tetrafluoride, which is represented by the chemical formula CF4.
There are carbon and hydrogen atoms present in hydrocarbons.