99 reactions in total, let me know if I missed any.
INORGANIC:
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2NaOH + Cl2 -> NaCl + NaClO + H2O ← for COLD DILUTE NaOH
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6NaOH + 3Cl2 -> 5NaCl + NaClO3 + 3H2O ← for HOT concentrated NaOH
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Na2O + H2O -> NaOH
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Na2O + 2HCl -> 2NaCl + H2O
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MgO + H2O -> Mg(OH)2
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MgO + 2HCl -> MgCl2 + H2O
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Al2O3 + H2O -> NO REACTION
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Al2O3 + 6HCl -> 2AlCl3 + 3H2O
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Al2O3 + 2NaOH + 3H2O -> 2NaAl(OH)4
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SiO2 + H20 -> NO REACTION
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SiO2 + 2NaOH -> NaSiO3 + H2O ← HOT NaOH
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P4O10 + 6H2O -> 4H3PO4
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P4O10 + 12NaOH -> 4Na3PO4 + 6H2O
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SO2 + H2O -> H2SO3 (sulfurous acid)
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SO2 + 2NaOH -> Na2SO3 + H2O
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NaSO3 + H2O + SO2 -> 2NaHSO3
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CaO + SO2 -> CaSO3
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CaO + SO2 + 2H2O + ½O2 -> CaSO4.2H2O
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CaCO3 + SO2 -> CaSO3 + CO2
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Ca(OH)2 + SO2 -> CaSO3 + H2O
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CaO + ½O2 + SO2 -> CaSO4
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2Na(s) + Cl2(g) -> 2NaCl(s)
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Mg(s) + Cl2(g) -> MgCl2(s)
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2Al(s) + 3Cl2(g) -> Al2Cl6(s)
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Si(s) + 2Cl2(g) -> SiCl4(l)
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2P(s) + 5Cl2(g) -> PCl5(s)
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Al2Cl6 + 12H2O -> 2[Al(H2O)6]3+ + 6Cl-
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SiCl4 + 2H2O -> SiO2 + 4HCl
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PCl5 + 4H2O -> H3PO4 + 5HCl
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2M(s) + O2 -> 2MO (M = metal)
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Mg(s) + 2H2O -> Mg(OH)2 + H2 (cold)
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Mg(s) + H2O -> MgO + H2 (hot)
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M(s) + 2H2O -> M(OH)2 + H2 ← M = Ca, Sr, Ba
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M(s) + H2SO4 -> MSO4 + H2 ← M = metal
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M(s) + 2H+ -> M2+ + H2 ← M = metal
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MgO + H2O -> Mg(OH)2 ← pH 9
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CaO + H2O -> Ca(OH)2 ← pH 11-13
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MO + H2O -> M(OH)2 ← pH 12-14 - M = Sr, Ba, Ra
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M(s) + H2SO4 -> MSO4 + H2 ← M = metal
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M(s) + 2H+ -> M2+ + H2 ← M = metal
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MO + H2SO4 -> MSO4 + H2O ← M = metal
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MO + 2H+ -> M2+ + H2O ← M = metal
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M(OH)2 + H2SO4 -> MSO4 + 2H2O ← M = metal
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M(OH)2 + 2H+ -> M2+ + 2H2O ← M = metal
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CO2 + H2O + CaCO3 -> Ca(HCO3)2
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Ca(HCO3)2 -> CaCO3 + CO2 + H2O ← thermal decomposition
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MgCO3 + HNO3 -> Mg(NO3)2 + CO2 + H2O
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MgCO3 + 2H+ -> Mg2+ + CO2 + H2O
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CO2 + Ca(OH)2 -> CaCO3 + H2O
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M(NO3)2 -> MO + 2NO2 + ½O2 ← thermal decomposition← M = Mg/Ca/Sr/Ba← brown gas, solid melts
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MCO3 -> MO + CO2
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Cl2 + H2O -> HCl + HOCl
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Br2 + H2O -> HBr + HOBr
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H2 + Cl2 -> 2HCl <- in UV light
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H2 + Br2 -> 2HBr <- heat gently
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H2 + I2 -> 2HI <- heat
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NH3(g) + HCl(g) -> NH4Cl(s)
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NaCl + H2SO4 -> HCl + NaHSO4 ← conc H2SO4
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2NaCl + H2SO4 -> 2HCl + Na2SO4 ← conc H2SO4
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NaBr + H2SO4 -> HBr + NaHSO4 ← conc H2SO4
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HBr + H2SO4 -> Br2 + SO2 + 2H2O ← bromide=stronger reducing agent
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NaI + H2SO4 -> HI + NaHSO4 ← conc H2SO4
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HI + H2SO4 -> I2 + SO2 + 2H2O ← iodide=stronger reducing agent
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6HI + H2SO4 -> 3I2 + S + 4H2O
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8HI + H2SO4 -> 4I2 + H2S + 4H2O
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2Cl2 + 2H2O -> 4HCl + O2
ORGANIC:
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ALKANE + excess O2 -> CO2 + H2O
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Type: Complete combustion
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ALKANE + limited O2 -> CO/C + H2O
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Type: incomplete combustion
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ALKANE + Cl2/Br2 -> HALOGENOALKANE
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Type: homolytic free radical substitution
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Condition: UV light
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ALKENE + H2 -> ALKANE
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Type: electrophilic addition
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Conditions: 150C + Ni catalyst
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ALKENE + Cl2/Br2 -> DI-HALOGENOALKANE
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Type: electrophilic addition
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Conditions: room temp
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ALKENE + HX(g) -> HALOGENOALKANE
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Type: electrophilic addition
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Conditions: room temp
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ALKENE + KMnO4/H2SO4 -> DIOL
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Type: oxidation/redox/addition
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Conditions: room temp
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ALKENE + STEAM -> alcohol
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Type: electrophilic addition
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Conditions: 300C, 60 ATM, H3PO4
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LOTS OF ALKENE -> ADDITION POLYMER
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Type: Addition polymerisation
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Conditions: Very high pressure
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HALOGENOALKANE + NaOH(aq) -> ALCOHOL + Na+X-
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Type: nucleophilic substitution
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Conditions: NaOH(aq) + heat under reflux
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HALOGENOALKANE + NaOH(ethanolic) -> Alkene
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Type: elimination
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Conditions: NaOH(ethanolic) + heat under reflux
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HALOGENOALKANE + conc. NH3 -> AMINE
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Type: nucleophilic substitution
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Condition: Ethanolic solution of ammonia + heat in sealed tube/under high pressure
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HALOGENOALKANE + HCN -> NITRILE
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Type: nucleophilic substitution
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Condition: KCN dissolved in ethanol + heat under reflux
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PRIMARY ALCOHOL -> ALDEHYDE
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Type: oxidation/redox
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Conditions: K2CrO7/H2SO4, distill
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PRIMARY ALCOHOL -> CARBOXYLIC ACID
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Type: oxidation/redox
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Conditions: K2Cr2O7/H2SO4 + heat under reflux
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SECONDARY ALCOHOL -> KETONE
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Type: oxidation/redox
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Conditions: K2Cr2O7 + heat under reflux
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ALCOHOL -> ALKENE
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Type: dehydration
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Conc. H3PO4/AL2O3/H2SO4
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ALDEHYDE -> CARBOXYLIC ACID
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Type: oxidation/redox
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Conditions: K2Cr2O7/H2SO4 + heat under reflux
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ALDEHYDE -> PRIMARY ALCOHOL
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Type: reduction
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Conditions: LiAlH4 (dry ether) or NaBH4(aq)
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KETONE -> SECONDARY ALCOHOL
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Type: reduction
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Conditions: LiAlH4 (dry ether) or NaBH4(aq)
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ALDEHYDE/KETONE -> HYDROXYNITRILE
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Type: nucleophilic substitution
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Conditions: KCN + H2SO4 + heat under reflux
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ALDEHYDE -> CARBOXYLIC ACID with Tollens’ reagent
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Type: redox
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Conditions: AgNO4(aq) + NaOH(aq) then add NH3(aq)
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ALDEHYDE -> CARBOXYLIC ACID with Fehling’s solution
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Type: redox
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Conditions: Fehling’s solution
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ALDEHYDE/KETONE -> HYDRAZONE
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Type: nucleophilic addition-elimination
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Conditions: 2,4-DNPH
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METHYL KETONE/SECONDARY ALCOHOL, ETHANAL, ETHANOL, PROPAN-2-OL -> iodoform/triiodomethane + sodium carboxylate
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Type: N/A
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Conditions: I2(aq) + NaOH(aq)
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NITRILE + Na + ETHANOL -> AMINE
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Type: reduction
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NITRILE + dilute HCl(aq) -> CARBOXYLIC ACID
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Type: acid hydrolysis
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NITRILE + dilute NaOH(aq) -> CARBOXYLIC ACID SALT
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Type: alkaline hydrolysis
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CARBOXYLIC ACID + Na(s) -> CARBOXYLIC ACID SALT
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Type: redox
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Conditions: dry conditions
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CARBOXYLIC ACID + BASE -> CARBOXYLIC ACID SALT
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Type: neutralization
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CARBOXYLIC ACID + METAL CARBONATE -> CARBOXYLIC ACID SALT
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Type: neutralization
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Effervescence
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CARBOXYLIC ACID + LiAlH4 -> PRIMARY ALCOHOL
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Type: reduction
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Conditions: LiAlH4 should be In dry ether
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CARBOXYLIC ACID + ALCOHOL -> ESTER
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Type: esterification
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Conditions: Conc H2SO4 catalyst
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