Chemistry booster series
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๐Ÿ”ฅ12๐Ÿ†1๐Ÿ˜ด1
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โค4๐ŸŽ‰2๐Ÿคฉ1๐Ÿ’ฏ1
โค1๐Ÿ‘1๐Ÿ™1๐Ÿณ1
#ALKANES
โœ”๏ธ Saturated hydrocarbons
โœ”๏ธ Only Cโ€“C & Cโ€“H single bonds
โœ”๏ธ Least reactive hydrocarbons
๐Ÿ“Œ General formula:
โœ”๏ธ Cโ‚™Hโ‚‚โ‚™โ‚Šโ‚‚
๐Ÿ“Œ Hybridisation:
โœ”๏ธ Carbon โ†’ spยณ
๐Ÿ“Œ Geometry:
โœ”๏ธ Tetrahedral (109.5ยฐ)


2๏ธโƒฃ #NOMENCLATURE
โœ”๏ธ Longest carbon chain = parent
โœ”๏ธ Lowest locant rule
โœ”๏ธ Alkyl groups as substituents
๐Ÿ“Œ Example:
โœ”๏ธ (CHโ‚ƒ)โ‚ƒCH โ†’ 2-methylpropane


3๏ธโƒฃ #ISOMERISM โญ
โœ”๏ธ Chain isomerism only
๐Ÿ“Œ First alkane showing isomerism:
โœ”๏ธ Butane (Cโ‚„Hโ‚โ‚€) โญโญ
๐Ÿ“Œ Note:
โœ”๏ธ More branching โ†’ more stable


4๏ธโƒฃ #PHYSICALPROPERTIES
โœ”๏ธ Colourless, odourless
โœ”๏ธ Insoluble in water
โœ”๏ธ Soluble in organic solvents
๐Ÿ“Œ Boiling point:
โœ”๏ธ โ†‘ with molar mass
โœ”๏ธ Straight chain > branched โญ


5๏ธโƒฃ #PREPARATIONOFALKANES
(a) #WURTZREACTION โญ
โœ”๏ธ Alkyl halide + Na (dry ether)
๐Ÿ“Œ Reaction:
2Rโ€“X + 2Na โ†’ Rโ€“R + 2NaX
๐Ÿ“Œ Limitation:
โœ”๏ธ Unsymmetrical alkanes not formed
(b) #DECARBOXYLATION
โœ”๏ธ Sodium salt + soda lime
๐Ÿ“Œ Reaction:
Rโ€“COONa โ†’ Rโ€“H + Naโ‚‚COโ‚ƒ
โœ”๏ธ Carbon number decreases by 1
(c) #KOLBEELECTROLYSIS โญ
โœ”๏ธ Electrolysis of sodium salt of acid
๐Ÿ“Œ Product:
โœ”๏ธ Alkane with even number of carbons


6๏ธโƒฃ #CHEMICALPROPERTIES โญโญ


7๏ธโƒฃ #COMBUSTION
โœ”๏ธ Burns in excess Oโ‚‚
โœ”๏ธ Highly exothermic
๐Ÿ“Œ Example:
CHโ‚„ + 2Oโ‚‚ โ†’ COโ‚‚ + 2Hโ‚‚O


8๏ธโƒฃ #SUBSTITUTIONREACTION โญโญโญ
โœ”๏ธ Characteristic reaction of alkanes
๐Ÿ“Œ Halogenation:
โœ”๏ธ UV light / heat
๐Ÿ“Œ Example:
CHโ‚„ + Clโ‚‚ โ†’ CHโ‚ƒCl + HCl
โœ”๏ธ Free-radical mechanism


9๏ธโƒฃ #FREERADICALMECHANISM โญโญ
๐Ÿ“Œ Steps:
โœ”๏ธ Initiation
โœ”๏ธ Propagation
โœ”๏ธ Termination
๐Ÿ“Œ Radical stability:
โœ”๏ธ 3ยฐ > 2ยฐ > 1ยฐ > CHโ‚ƒโ€ข


๐Ÿ”Ÿ #SELECTIVITYOFHALOGENS
โœ”๏ธ Chlorination โ†’ fast, less selective
โœ”๏ธ Bromination โ†’ slow, more selective
๐Ÿ“Œ Reactivity:
Fโ‚‚ > Clโ‚‚ > Brโ‚‚ > Iโ‚‚


1๏ธโƒฃ1๏ธโƒฃ #CONTROLLEDOXIDATION โญ
โœ”๏ธ Oxidising agents: KMnOโ‚„ / Kโ‚‚Crโ‚‚Oโ‚‡
๐Ÿ“Œ NCERT sequence:
CHโ‚„ โ†’ HCHO โ†’ HCOOH โ†’ COโ‚‚


1๏ธโƒฃ2๏ธโƒฃ #NITRATIONOFALKANES
โœ”๏ธ With conc. HNOโ‚ƒ
๐Ÿ“Œ Condition:
โœ”๏ธ 400โ€“500 K
๐Ÿ“Œ Example:
CHโ‚„ โ†’ CHโ‚ƒNOโ‚‚


1๏ธโƒฃ3๏ธโƒฃ #ISOMERISATION โญ
โœ”๏ธ Straight chain โ†’ branched
๐Ÿ“Œ Catalyst:
โœ”๏ธ Anhydrous AlClโ‚ƒ / HCl
๐Ÿ“Œ Example:
n-Butane โ†’ Isobutane


1๏ธโƒฃ4๏ธโƒฃ #PYROLYSIS / CRACKING โญโญโญ
โœ”๏ธ Thermal decomposition
โœ”๏ธ Absence of air
๐Ÿ“Œ Products:
โœ”๏ธ Lower alkane + alkene
๐Ÿ“Œ Example:
Cโ‚โ‚€Hโ‚‚โ‚‚ โ†’ Cโ‚…Hโ‚โ‚‚ + Cโ‚…Hโ‚โ‚€


1๏ธโƒฃ5๏ธโƒฃ #AROMATISATION (REFORMING)
โœ”๏ธ Higher alkanes โ†’ aromatic
๐Ÿ“Œ Example:
n-Hexane โ†’ Benzene + Hโ‚‚
๐Ÿ“Œ Conditions:
โœ”๏ธ 773 K
โœ”๏ธ Pt / Crโ‚‚Oโ‚ƒ / Alโ‚‚Oโ‚ƒ


1๏ธโƒฃ6๏ธโƒฃ #CONFORMATIONSOFETHANE โญ
โœ”๏ธ Due to Cโ€“C rotation
๐Ÿ“Œ Types:
โœ”๏ธ Staggered (most stable)
โœ”๏ธ Eclipsed (least stable)
๐Ÿ“Œ Reason:
โœ”๏ธ Torsional strain


1๏ธโƒฃ7๏ธโƒฃ #NEETIMPORTANTPOINTS
โœ”๏ธ Alkanes โ†’ substitution only
โœ”๏ธ First isomerism โ†’ butane
โœ”๏ธ Branched alkane โ†’ lower BP
โœ”๏ธ Cracking = alkene + alkane
โœ”๏ธ Free radical mechanism


1๏ธโƒฃ8๏ธโƒฃ #ONELINEREVISION
โœ”๏ธ Alkanes = saturated
โœ”๏ธ Formula = Cโ‚™Hโ‚‚โ‚™โ‚Šโ‚‚
โœ”๏ธ spยณ hybridisation
โœ”๏ธ Halogenation = substitution
โœ”๏ธ Combustion highly exothermic
โค3
1๏ธโƒฃ #ALKENES
โœ”๏ธ Unsaturated hydrocarbons
โœ”๏ธ Contain one or more C=C double bond
๐Ÿ“Œ General formula:
โœ”๏ธ Cโ‚™Hโ‚‚โ‚™ (one double bond)
๐Ÿ“Œ Hybridisation:
โœ”๏ธ Carbon of C=C โ†’ spยฒ
๐Ÿ“Œ Geometry:
โœ”๏ธ Trigonal planar (120ยฐ)


2๏ธโƒฃ #NOMENCLATURE
โœ”๏ธ Longest chain containing C=C
โœ”๏ธ Lowest number to double bond
โœ”๏ธ Suffix โ†’ โ€“ene
๐Ÿ“Œ Example:
โœ”๏ธ CHโ‚‚=CHโ‚‚ โ†’ Ethene


3๏ธโƒฃ #ISOMERISM โญ
โœ”๏ธ Chain isomerism
โœ”๏ธ Position isomerism
โœ”๏ธ Geometrical isomerism (cisโ€“trans) โญโญ
๐Ÿ“Œ Condition for geometrical isomerism:
โœ”๏ธ Each C of C=C attached to two different groups


4๏ธโƒฃ #PHYSICALPROPERTIES
โœ”๏ธ Colourless
โœ”๏ธ Insoluble in water
โœ”๏ธ Slightly soluble in organic solvents
๐Ÿ“Œ Boiling point:
โœ”๏ธ Increases with molar mass
โœ”๏ธ cis > trans (due to polarity) โญ


5๏ธโƒฃ #PREPARATIONOFALKENES
(a) #DEHYDRATIONOFALCOHOL โญ
โœ”๏ธ Alcohol โ†’ Alkene + Hโ‚‚O
๐Ÿ“Œ Reagent:
โœ”๏ธ Conc. Hโ‚‚SOโ‚„ (443 K)
โœ”๏ธ Alโ‚‚Oโ‚ƒ (623 K)
๐Ÿ“Œ Example:
CHโ‚ƒCHโ‚‚OH โ†’ CHโ‚‚=CHโ‚‚
(b) #DEHYDROHALOGENATION โญ
โœ”๏ธ Alkyl halide + alcoholic KOH
๐Ÿ“Œ Example:
CHโ‚ƒCHโ‚‚Cl โ†’ CHโ‚‚=CHโ‚‚
(c) #DEHALOGENATION
โœ”๏ธ Vicinal dihalide + Zn
๐Ÿ“Œ Example:
BrCHโ‚‚โ€“CHโ‚‚Br โ†’ CHโ‚‚=CHโ‚‚


6๏ธโƒฃ #CHEMICALPROPERTIES โญโญ


7๏ธโƒฃ #ADDITIONREACTIONS โญโญโญ
โœ”๏ธ Characteristic reaction of alkenes
(a) #HYDROGENATION
โœ”๏ธ Alkene + Hโ‚‚ โ†’ Alkane
๐Ÿ“Œ Catalyst:
โœ”๏ธ Ni / Pt / Pd
๐Ÿ“Œ Example:
CHโ‚‚=CHโ‚‚ โ†’ CHโ‚ƒโ€“CHโ‚ƒ
(b) #HALOGENATION โญ
โœ”๏ธ Alkene + Xโ‚‚
๐Ÿ“Œ Observation:
โœ”๏ธ Decolourisation of bromine water โญ
๐Ÿ“Œ Example:
CHโ‚‚=CHโ‚‚ + Brโ‚‚ โ†’ BrCHโ‚‚โ€“CHโ‚‚Br
(c) #HYDROHALOGENATION โญโญ
โœ”๏ธ Alkene + HX
๐Ÿ“Œ Follows Markovnikovโ€™s rule
๐Ÿ“Œ Example:
CHโ‚ƒโ€“CH=CHโ‚‚ + HBr โ†’ CHโ‚ƒโ€“CHBrโ€“CHโ‚ƒ


8๏ธโƒฃ #MARKOVNIKOVSRULE โญโญโญ
โœ”๏ธ H adds to C with more H atoms
โœ”๏ธ X adds to C with less H atoms


9๏ธโƒฃ #ANTIMARKOVNIKOVRULE (PEROXIDEEFFECT) โญโญ
โœ”๏ธ In presence of peroxide
โœ”๏ธ Only with HBr
๐Ÿ“Œ Example:
CHโ‚ƒโ€“CH=CHโ‚‚ + HBr โ†’ CHโ‚ƒโ€“CHโ‚‚โ€“CHโ‚‚Br


๐Ÿ”Ÿ #HYDRATIONOFALKENES
โœ”๏ธ Alkene + Hโ‚‚O โ†’ Alcohol
๐Ÿ“Œ Catalyst:
โœ”๏ธ Dil. Hโ‚‚SOโ‚„
๐Ÿ“Œ Follows Markovnikov rule


1๏ธโƒฃ1๏ธโƒฃ #OXIDATIONOFALKENES โญโญ
(a) Mild oxidation
โœ”๏ธ Cold alkaline KMnOโ‚„
โœ”๏ธ Gives vicinal diol (glycol)
๐Ÿ“Œ Test:
โœ”๏ธ Baeyerโ€™s test โญ
(b) Ozonolysis โญโญโญ
โœ”๏ธ Alkene + Oโ‚ƒ
๐Ÿ“Œ Product:
โœ”๏ธ Aldehydes / ketones
๐Ÿ“Œ Used to locate double bond


1๏ธโƒฃ2๏ธโƒฃ #POLYMERISATION โญ
โœ”๏ธ Many alkene molecules โ†’ polymer
๐Ÿ“Œ Example:
โœ”๏ธ Ethene โ†’ Polyethene


1๏ธโƒฃ3๏ธโƒฃ #STABILITYOFALKENES โญ
โœ”๏ธ More substituted alkene โ†’ more stable
๐Ÿ“Œ Order:
โœ”๏ธ Tetra > Tri > Di > Mono


1๏ธโƒฃ4๏ธโƒฃ #NEETIMPORTANTPOINTS
โœ”๏ธ Alkenes show addition reactions
โœ”๏ธ Markovnikov rule frequently asked
โœ”๏ธ Peroxide effect only with HBr
โœ”๏ธ Baeyer test detects C=C
โœ”๏ธ Ozonolysis โ†’ double bond position


1๏ธโƒฃ5๏ธโƒฃ #ONELINEREVISION
โœ”๏ธ Alkenes = unsaturated
โœ”๏ธ Formula = Cโ‚™Hโ‚‚โ‚™
โœ”๏ธ spยฒ hybridisation
โœ”๏ธ Addition reactions dominate
โœ”๏ธ Ozonolysis identifies structure
โค1๐Ÿ‘1๐Ÿ’ฏ1
1๏ธโƒฃ #SOLUTION
โœ”๏ธ Homogeneous mixture
โœ”๏ธ Consists of solute + solvent
๐Ÿ“Œ Example:
โœ”๏ธ Sugar in water


2๏ธโƒฃ #TYPESOFSOLUTIONS
โœ”๏ธ Solid in liquid โ†’ sugar + water
โœ”๏ธ Liquid in liquid โ†’ alcohol + water
โœ”๏ธ Gas in liquid โ†’ COโ‚‚ in water
โœ”๏ธ Gas in gas โ†’ air


3๏ธโƒฃ #SOLUBILITY โญ
โœ”๏ธ Maximum amount of solute that dissolves in a given amount of solvent
โœ”๏ธ At given temperature & pressure
๐Ÿ“Œ Units:
โœ”๏ธ g / 100 g solvent
โœ”๏ธ mol Lโปยน


4๏ธโƒฃ #FACTORAFFECTINGSOLUBILITY โญโญ
(a) Nature of solute & solvent
โœ”๏ธ Like dissolves like
โœ”๏ธ Polar in polar, non-polar in non-polar
(b) Temperature
โœ”๏ธ Solid in liquid โ†’ solubility โ†‘ with temp
โœ”๏ธ Gas in liquid โ†’ solubility โ†“ with temp โญ
(c) Pressure
โœ”๏ธ Significant only for gases
โœ”๏ธ Solubility โ†‘ with pressure


5๏ธโƒฃ #HENRYSLAW โญโญโญ
โœ”๏ธ Solubility of gas โˆ pressure of gas
๐Ÿ“Œ Statement:
โœ”๏ธ At constant temperature, amount of gas dissolved is directly proportional to its partial pressure
๐Ÿ“Œ Formula:
โœ”๏ธ p = kโ‚• x
Where:
โœ”๏ธ p = partial pressure
โœ”๏ธ x = mole fraction
โœ”๏ธ kโ‚• = Henryโ€™s constant
๐Ÿ“Œ Applications (PYQ):
โœ”๏ธ Soft drinks
โœ”๏ธ Scuba diving
โœ”๏ธ High altitude sickness


6๏ธโƒฃ #SOLUBILITYOFGASES โญโญ
โœ”๏ธ Increases with pressure
โœ”๏ธ Decreases with temperature
๐Ÿ“Œ Example:
โœ”๏ธ Cold water holds more oxygen


7๏ธโƒฃ #RAOULTSLAW โญโญโญ
โœ”๏ธ For ideal solutions
๐Ÿ“Œ Statement:
โœ”๏ธ Partial vapour pressure of each component โˆ its mole fraction
๐Ÿ“Œ Formula:
โœ”๏ธ pโ‚ = xโ‚ pโ‚โฐ
โœ”๏ธ Total pressure = pโ‚ + pแตฆ


8๏ธโƒฃ #IDEALSOLUTION
โœ”๏ธ Obeys Raoultโ€™s law at all concentrations
โœ”๏ธ ฮ”Hmix = 0
โœ”๏ธ ฮ”Vmix = 0
๐Ÿ“Œ Example:
โœ”๏ธ Benzene + toluene


9๏ธโƒฃ #NON-IDEALSOLUTION
โœ”๏ธ Deviates from Raoultโ€™s law
๐Ÿ“Œ Types:
โœ”๏ธ Positive deviation
โœ”๏ธ Negative deviation


๐Ÿ”Ÿ #POSITIVEDDEVIATION โญ
โœ”๏ธ Aโ€“B attraction < Aโ€“A or Bโ€“B
โœ”๏ธ Vapour pressure โ†‘
๐Ÿ“Œ Example:
โœ”๏ธ Ethanol + acetone


1๏ธโƒฃ1๏ธโƒฃ #NEGATIVEDEVIATION โญ
โœ”๏ธ Aโ€“B attraction > Aโ€“A or Bโ€“B
โœ”๏ธ Vapour pressure โ†“
๐Ÿ“Œ Example:
โœ”๏ธ Chloroform + acetone


1๏ธโƒฃ2๏ธโƒฃ #COLLIGATIVEPROPERTIES โญโญ
โœ”๏ธ Depend only on number of solute particles
๐Ÿ“Œ Types:
โœ”๏ธ Relative lowering of vapour pressure
โœ”๏ธ Elevation of boiling point
โœ”๏ธ Depression of freezing point
โœ”๏ธ Osmotic pressure


1๏ธโƒฃ3๏ธโƒฃ #OSMOTICPRESSURE โญโญ
โœ”๏ธ Pressure required to stop osmosis
๐Ÿ“Œ Formula:
โœ”๏ธ ฯ€ = CRT
โœ”๏ธ Used to determine molar mass


1๏ธโƒฃ4๏ธโƒฃ #NEETIMPORTANTPOINTS
โœ”๏ธ Henryโ€™s law โ†’ gases
โœ”๏ธ Raoultโ€™s law โ†’ ideal solutions
โœ”๏ธ Gas solubility โ†“ with temp
โœ”๏ธ Colligative properties depend on particles
โœ”๏ธ Osmotic pressure works at room temp


1๏ธโƒฃ5๏ธโƒฃ #ONELINEREVISION
โœ”๏ธ Solution = homogeneous mixture
โœ”๏ธ Solubility depends on T, P, nature
โœ”๏ธ Henryโ€™s law โ†’ p โˆ x
โœ”๏ธ Raoultโ€™s law โ†’ vapour pressure
โœ”๏ธ Colligative โ†’ number of particles
โค4๐Ÿ‘2๐Ÿฅฐ1๐Ÿ™ˆ1
Ionic equilibrium Notes โค๏ธ
Allllllll concepts cleared in just 3 pages
โค3๐Ÿ”ฅ1๐Ÿ‘Œ1๐Ÿ•Š1
โŒจ๏ธ - โŒจ๏ธโŒจ๏ธโŒจ๏ธโŒจ๏ธโŒจ๏ธ
Handmade short notes
๐Ÿ”ฅ2โค1๐Ÿคฉ1๐Ÿ•Š1
๐ŸŒŸ Such Type Of Electron Pairs Are โ€“ ๐ŸŒŸ

Two โ€“ sp hybridisation
Three โ€“ sp2 hybridisation
Four โ€“ sp3 hybridisation
Five โ€“ sp3d hybridisation
Six โ€“ sp3d2 hybridisation
Seven โ€“ sp3d3 hybridisation
โค2๐Ÿฅฐ1๐Ÿ•Š1๐Ÿณ1