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This is because, the electron deactivating nitro group is replaced by electron-rich amino group.
The reaction is robust regarding electronic effects because the electron rich substrates are more reactive.
It increases at higher temperature because the electron scatters from ion vibrations.
Cathode ray tubes are inherently bulky, because the electron gun must sit back far enough to hit the entire screen.
Bohr's model accounts for the stability of atoms because the electron cannot lose more energy than it has in the smallest orbit, the one with n = 1.
The spread arises from the fact that, because the electron can make a transition to another state, the initial state has a finite lifetime.
Because the electron and the positive hole have equal but opposite electrical charges, the exciton as a whole has no net electrical charge (though it transports energy).
Because the electron is spinning and has electric charge, it behaves like a tiny magnet, the strength of which is expressed by the value of μe.
Bohr's model accounts for the stability of atoms because the electron cannot lose more energy than it has in the smallest orbit, the one with n = 1.
In going down the group, the metals become more likely to lose an electron because the electron being removed lies increasingly farther from the positive nucleus.
A π bond forms a region of increased electron density because the electron pair is more distant from the positively charged carbon nuclei than is the electron pair of the σ bond (see chemical bonding: The quantum mechanics of bonding).
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CEO of Professional Science Editing for Scientists @ prosciediting.com