The molar mass of N 2 O 4 has to be given. Concept Introduction: The molar mass (M) of any atom, molecule or compound is the mass (in grams) of one mole of the substance. The molar mass of an element is numerically equal to its atomic mass , but in units of grams per mole ( g/mol ) rather than u . The molar mass of a molecular substance is numerically equal to its molar mass, also expressed in units of grams per mole ( g/mol ). The molar mass of ionic compound is the formula mass expressed in grams per mole.
The molar mass of N 2 O 4 has to be given. Concept Introduction: The molar mass (M) of any atom, molecule or compound is the mass (in grams) of one mole of the substance. The molar mass of an element is numerically equal to its atomic mass , but in units of grams per mole ( g/mol ) rather than u . The molar mass of a molecular substance is numerically equal to its molar mass, also expressed in units of grams per mole ( g/mol ). The molar mass of ionic compound is the formula mass expressed in grams per mole.
Solution Summary: The author explains that the molar mass of any atom, molecule or compound is the mass (in grams) of one mole of the substance.
The molar mass (M) of any atom, molecule or compound is the mass (in grams) of one mole of the substance. The molar mass of an element is numerically equal to its atomic mass, but in units of grams per mole (g/mol ) rather than u. The molar mass of a molecular substance is numerically equal to its molar mass, also expressed in units of grams per mole (g/mol). The molar mass of ionic compound is the formula mass expressed in grams per mole.
Identifying electron-donating and
For each of the substituted benzene molecules below, determine the inductive and resonance effects the substituent will have on the
benzene ring, as well as the overall electron-density of the ring compared to unsubstituted benzene.
Molecule
Inductive Effects
NH2
○ donating
NO2
Explanation
Check
withdrawing
no inductive effects
Resonance Effects
Overall Electron-Density
○ donating
O withdrawing
O no resonance effects
O donating
O withdrawing
O donating
withdrawing
O no inductive effects
Ono resonance effects
O electron-rich
electron-deficient
O similar to benzene
O electron-rich
O electron-deficient
O similar to benzene
olo
18
Ar
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Step by Step Stoichiometry Practice Problems | How to Pass ChemistryMole Conversions Made Easy: How to Convert Between Grams and Moles; Author: Ketzbook;https://www.youtube.com/watch?v=b2raanVWU6c;License: Standard YouTube License, CC-BY