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E1 and E2 are both elimination reactions. Both consist of a step where the leaving group leaves, and one where a proton is abstracted to form a \u03c0 bond. Both can generally occur in polar protic solvent (there are extreme exceptions), and both are technically always in competition with nucleophilic substitution.
A substitution reaction (also known as single displacement reaction or single substitution reaction) is a chemical reaction during which one functional group in a chemical compound is replaced by another functional group.
An elimination reaction occurs when a reactant is broken up into two products. Elimination reactions occur with saturated compounds. The general equation for an elimination reaction: A \u2192 B+C. A substitution reaction occurs when an exchange of elements in the reactants takes place.
The main difference between elimination and eradication is that elimination is the reduction of the disease to zero new cases in a geographical area while eradication is the permeant and complete worldwide reduction to zero new cases of the disease.
E2 elimination will compete with substitution in 2º-halides, and dominate in the case of 3º-halides. In high dielectric ionizing solvents SN1 and E1 products may be formed. Nitrogen and sulfur nucleophiles will give SN2 substitution in the case of 1º and 2º-halides.

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Explanation: Elimination reactions compete with substitution reactions because both reaction mechanisms favour the same conditions: Alkyl halide and a nucleophile. Under some conditions, the elimination reactions cannot compete with substitution reactions because they cannot occur and vice versa.
The main difference between substitution and elimination reactions is that substitution reaction proceeds with replacement with one another while elimination reactions proceed with the removal of atom or group.
: the act, process, or an instance of eliminating or discharging: such as. a : the act of discharging or excreting waste products from the body. b : the removal from a molecule of the constituents of a simpler molecule ethylene is formed by the elimination of water from ethanol \u2014 compare addition sense 4.
The main difference between substitution and elimination reactions is that substitution reaction proceeds with replacement with one another while elimination reactions proceed with the removal of atom or group.
Look at the substrate. In the presence of a strong base, E2 will be the favored pathway. Elimination is typically preferred over substitution unless the reactant is a strong nucleophile, but weak base. Substitution is typically preferred over elimination unless a strong bulky base is used.

competition between elimination and substitution reaction