๐6๐ฅฐ5๐1๐ฅ1
#STOICHIOMETRY Topic 2
๐ฑ Definition
Quantitative relationship between reactants and p products in a chemical reaction.
โญ Steps in Stoichiometric Calculations
โ๏ธ Write balanced chemical equation
โ๏ธ Convert given data into moles
โ๏ธ Use mole ratio from equation
โ๏ธ Calculate required moles
โ๏ธ Convert final answer into required unit
๐งช Mole Ratio
Ratio of coefficients of substances in a balanced equation.
๐ Example:
2Hโ + Oโ โ 2HโO
Mole ratio: Hโ : Oโ : HโO = 2 : 1 : 2
๐น Types of Stoichiometric Problems
โญ 1๏ธโฃ MassโMass Relationship
โ๏ธ Given mass of one reactant โ find mass of product
โ๏ธ Use moles as bridge
๐ Steps:
mass โ moles โ mole ratio โ moles โ mass
โญ 2๏ธโฃ MassโVolume Relationship (Gas)
โ๏ธ Use 22.4 L at STP
๐ Formula:
Number of moles = Volume / 22.4
โญ 3๏ธโฃ VolumeโVolume Relationship (Gases)
โ๏ธ Volumes are in same ratio as moles
โ๏ธ Valid only for gases at same T & P
โญ 4๏ธโฃ Limiting Reagent
โ๏ธ Reactant consumed first
โ๏ธ Decides amount of product formed
๐ Method:
Given moles / stoichiometric coefficient
โ Smaller value = limiting reagent
Percent Yield
โ๏ธ Theoretical yield โ from calculation
โ๏ธ Actual yield โ given in question
๐ Formula:
Percent yield = (Actual yield / Theoretical yield) ร 100
Percentage Composition
โ๏ธ Used to find composition of compound
๐ Formula:
Percentage of element = (Mass of element / Molar mass of compound) ร 100
#NEETHOTPOINTS
โ๏ธ Stoichiometry always uses balanced equation
โ๏ธ All calculations done in moles first
โ๏ธ Limiting reagent decides product
โ๏ธ Volume ratio applies only to gases
@Ayano1me @Neetugpoll @Neetugquiz
๐ฑ Definition
Quantitative relationship between reactants and p products in a chemical reaction.
โญ Steps in Stoichiometric Calculations
โ๏ธ Write balanced chemical equation
โ๏ธ Convert given data into moles
โ๏ธ Use mole ratio from equation
โ๏ธ Calculate required moles
โ๏ธ Convert final answer into required unit
๐งช Mole Ratio
Ratio of coefficients of substances in a balanced equation.
๐ Example:
2Hโ + Oโ โ 2HโO
Mole ratio: Hโ : Oโ : HโO = 2 : 1 : 2
๐น Types of Stoichiometric Problems
โญ 1๏ธโฃ MassโMass Relationship
โ๏ธ Given mass of one reactant โ find mass of product
โ๏ธ Use moles as bridge
๐ Steps:
mass โ moles โ mole ratio โ moles โ mass
โญ 2๏ธโฃ MassโVolume Relationship (Gas)
โ๏ธ Use 22.4 L at STP
๐ Formula:
Number of moles = Volume / 22.4
โญ 3๏ธโฃ VolumeโVolume Relationship (Gases)
โ๏ธ Volumes are in same ratio as moles
โ๏ธ Valid only for gases at same T & P
โญ 4๏ธโฃ Limiting Reagent
โ๏ธ Reactant consumed first
โ๏ธ Decides amount of product formed
๐ Method:
Given moles / stoichiometric coefficient
โ Smaller value = limiting reagent
Percent Yield
โ๏ธ Theoretical yield โ from calculation
โ๏ธ Actual yield โ given in question
๐ Formula:
Percent yield = (Actual yield / Theoretical yield) ร 100
Percentage Composition
โ๏ธ Used to find composition of compound
๐ Formula:
Percentage of element = (Mass of element / Molar mass of compound) ร 100
#NEETHOTPOINTS
โ๏ธ Stoichiometry always uses balanced equation
โ๏ธ All calculations done in moles first
โ๏ธ Limiting reagent decides product
โ๏ธ Volume ratio applies only to gases
@Ayano1me @Neetugpoll @Neetugquiz
โค7๐2๐1๐ณ1
Question :1 Identify the correct set of statements:
Reaction: 2Al+ fe2o3 =Al2O3+ 2Fe
A. 54 g Al reacts completely with 160 g FeโOโ
B. 27 g Al produces 56 g Fe
C. If Al is excess, FeโOโ is the limiting reagent
D. Mole ratio Al : Fe = 2 : 3
๐ Correct option(s):
1๏ธโฃ A, B and C
2๏ธโฃ A and B only
3๏ธโฃ B and C only
4๏ธโฃ A, C and D
Question 2 (Limiting Reagent )
A mixture of 4 g Hโ and 16 g Oโ reacts to form water.
A. Hโ is the limiting reagent
B. Oโ is the limiting reagent
C. 18 g HโO is formed
D. Some Hโ remains unreacted
๐ Correct option(s):
1๏ธโฃ A and C
2๏ธโฃ B and D
3๏ธโฃ A and D
4๏ธโฃ B and C
โค5๐ฅ4๐1๐1
Extra P block grp number 13 afternoon
โค7๐ณ3๐1
P-BLOCK ELEMENTS
โญ Group 13 โ Boron Family
Elements of Group 13
โ๏ธ Boron (B)
โ๏ธ Aluminium (Al)
โ๏ธ Gallium (Ga)
โ๏ธ Indium (In)
โ๏ธ Thallium (Tl)
โ๏ธ Electronic Configuration
๐ General configuration: nsยฒ npยน
โ๏ธ B โ 1sยฒ 2sยฒ 2pยน
โ๏ธ Al โ [Ne] 3sยฒ 3pยน
โ๏ธ Ga โ [Ar] 3dยนโฐ 4sยฒ 4pยน
โ๏ธ In โ [Kr] 4dยนโฐ 5sยฒ 5pยน
โ๏ธ Tl โ [Xe] 4fยนโด 5dยนโฐ 6sยฒ 6pยน
๐ข Oxidation States
โ๏ธ Common oxidation state โ +3
โ๏ธ +1 oxidation state increases down the group
๐ Reason โ Inert pair effect
โญ Stability of +1 state:
Tl > In > Ga > Al > B
#PhysicalProperties (Trends)
โ๏ธ Atomic size โ down the group Al, GA interchange
โ๏ธ Boron โ Non-metal
โ๏ธ Al, Ga, In, Tl โ Metals
๐ Melting point:
โ๏ธ Boron โ very high
โ๏ธ Gallium โ melts near room temperature โ
#ChemicalProperties
Reaction with Oxygen
โ๏ธ Boron โ BโOโ
โ๏ธ Aluminium โ AlโOโ (protective oxide layer)
๐ Nature of oxides:
โ๏ธ BโOโ โ Acidic
โ๏ธ AlโOโ โ Amphoteric
โ๏ธ GaโOโ, InโOโ โ Amphoteric
โ๏ธ TlโOโ โ Basic
ReactionwithAcids
โ๏ธ Boron โ does NOT react directly
โ๏ธ Aluminium โ reacts but shows passivation due to oxide layer
@Ayano1me @Neetugpoll @Neetugquiz
โญ Group 13 โ Boron Family
Elements of Group 13
โ๏ธ Boron (B)
โ๏ธ Aluminium (Al)
โ๏ธ Gallium (Ga)
โ๏ธ Indium (In)
โ๏ธ Thallium (Tl)
โ๏ธ Electronic Configuration
๐ General configuration: nsยฒ npยน
โ๏ธ B โ 1sยฒ 2sยฒ 2pยน
โ๏ธ Al โ [Ne] 3sยฒ 3pยน
โ๏ธ Ga โ [Ar] 3dยนโฐ 4sยฒ 4pยน
โ๏ธ In โ [Kr] 4dยนโฐ 5sยฒ 5pยน
โ๏ธ Tl โ [Xe] 4fยนโด 5dยนโฐ 6sยฒ 6pยน
๐ข Oxidation States
โ๏ธ Common oxidation state โ +3
โ๏ธ +1 oxidation state increases down the group
๐ Reason โ Inert pair effect
โญ Stability of +1 state:
Tl > In > Ga > Al > B
#PhysicalProperties (Trends)
โ๏ธ Atomic size โ down the group Al, GA interchange
โ๏ธ Boron โ Non-metal
โ๏ธ Al, Ga, In, Tl โ Metals
๐ Melting point:
โ๏ธ Boron โ very high
โ๏ธ Gallium โ melts near room temperature โ
#ChemicalProperties
Reaction with Oxygen
โ๏ธ Boron โ BโOโ
โ๏ธ Aluminium โ AlโOโ (protective oxide layer)
๐ Nature of oxides:
โ๏ธ BโOโ โ Acidic
โ๏ธ AlโOโ โ Amphoteric
โ๏ธ GaโOโ, InโOโ โ Amphoteric
โ๏ธ TlโOโ โ Basic
ReactionwithAcids
โ๏ธ Boron โ does NOT react directly
โ๏ธ Aluminium โ reacts but shows passivation due to oxide layer
@Ayano1me @Neetugpoll @Neetugquiz
โค4๐ค4๐ฅ2๐1
#SpecialPointsaboutBoron
โ๏ธ Forms only covalent compounds
โ๏ธ Does NOT follow octet rule
โ๏ธ Shows diagonal relationship with silicon
โ๏ธ Does NOT form Bยณโบ ion easily
โ๏ธ Boric acid is weak monobasic acid
โ๏ธ Acts as Lewis acid
Aluminium โ NCERT Highlights
โ๏ธ Most abundant metal in earthโs crust
โ๏ธ Extracted by HallโHรฉroult process
โ๏ธ AlโOโ โ amphoteric
โ๏ธ Used in thermite reaction
๐ Thermite reaction:
FeโOโ + 2Al โ AlโOโ + 2Fe + heat
#ImportantCompounds
โญ Borax (NaโBโOโยท10HโO)
โ๏ธ Used in glass industry
โ๏ธ Borax bead test
โ๏ธ On heating โ glassy bead
โญ Boric Acid (HโBOโ)
โ๏ธ Weak acid
โ๏ธ Lewis acid
โ๏ธ Used as antiseptic
โญ Aluminium Chloride (AlClโ)
โ๏ธ Covalent compound
โ๏ธ Lewis acid
โ๏ธ Exists as AlโClโ (dimer)
โญ #NEETHOTPOINTS
โ๏ธ Boron โ non-metal, others metals
โ๏ธ Inert pair effect โ +1 oxidation state
โ๏ธ AlClโ โ Lewis acid
โ๏ธ BโOโ acidic, AlโOโ amphoteric
โ๏ธ Gallium melts in hand โ
@Ayano1me @Neetugpoll @Neetugquiz
โ๏ธ Forms only covalent compounds
โ๏ธ Does NOT follow octet rule
โ๏ธ Shows diagonal relationship with silicon
โ๏ธ Does NOT form Bยณโบ ion easily
โ๏ธ Boric acid is weak monobasic acid
โ๏ธ Acts as Lewis acid
Aluminium โ NCERT Highlights
โ๏ธ Most abundant metal in earthโs crust
โ๏ธ Extracted by HallโHรฉroult process
โ๏ธ AlโOโ โ amphoteric
โ๏ธ Used in thermite reaction
๐ Thermite reaction:
FeโOโ + 2Al โ AlโOโ + 2Fe + heat
#ImportantCompounds
โญ Borax (NaโBโOโยท10HโO)
โ๏ธ Used in glass industry
โ๏ธ Borax bead test
โ๏ธ On heating โ glassy bead
โญ Boric Acid (HโBOโ)
โ๏ธ Weak acid
โ๏ธ Lewis acid
โ๏ธ Used as antiseptic
โญ Aluminium Chloride (AlClโ)
โ๏ธ Covalent compound
โ๏ธ Lewis acid
โ๏ธ Exists as AlโClโ (dimer)
โญ #NEETHOTPOINTS
โ๏ธ Boron โ non-metal, others metals
โ๏ธ Inert pair effect โ +1 oxidation state
โ๏ธ AlClโ โ Lewis acid
โ๏ธ BโOโ acidic, AlโOโ amphoteric
โ๏ธ Gallium melts in hand โ
@Ayano1me @Neetugpoll @Neetugquiz
โค9๐6๐ฅ1๐1๐ค1
Chemistry booster series
P-BLOCK ELEMENTS โญ Group 13 โ Boron Family Elements of Group 13 โ๏ธ Boron (B) โ๏ธ Aluminium (Al) โ๏ธ Gallium (Ga) โ๏ธ Indium (In) โ๏ธ Thallium (Tl) โ๏ธ Electronic Configuration ๐ General configuration: nsยฒ npยน โ๏ธ B โ 1sยฒ 2sยฒ 2pยน โ๏ธ Al โ [Ne] 3sยฒ 3pยน โ๏ธ Ga โ [Ar]โฆ
Accha lga to like krdo guy's so motivation bna rhega upload ka & i will upload 10+ question on p block too
10+ reaction target ๐ฏ
10+ reaction target ๐ฏ
๐14๐ฅ8๐1๐1๐1๐ค1
Question 1
Identify the correct set of statements related to Group 13 elements:
A. Boron shows anomalous behaviour in its group
B. Aluminium forms Alยณโบ ion easily in aqueous solution
C. Gallium has lower melting point than aluminium
D. Inert pair effect increases from B to Tl
๐ Correct option(s):
1๏ธโฃ A, C and D
2๏ธโฃ A and B
3๏ธโฃ B and C
4๏ธโฃ A, B, C and D
Question:2
Identify the correctly matched pairs:
A. Boron trichloride โ strong Lewis acid
B. Aluminium chloride โ exists as AlClโ in vapour phase
C. Diborane โ electron deficient compound
D. Boric acid โ monobasic acid
๐ Correct option(s):
1๏ธโฃ A and C
2๏ธโฃ A, C and D
3๏ธโฃ B and D
4๏ธโฃ A, B, C and D
Question:3
Identify the correct statements:
A. +3 oxidation state stability decreases from B to Tl
B. +1 oxidation state stability increases from B to Tl
C. Tlยณโบ is a strong oxidising agent
D. Boron forms stable Bยณโบ ion
๐ Correct option(s):
1๏ธโฃ A, B and C
2๏ธโฃ A and D
3๏ธโฃ B and C
4๏ธโฃ A, C and D
โค9๐คฉ4
A. Diborane has two 3-centre-2-electron bonds
B. All BโH bonds in diborane are equivalent
C. Boranes are electron-deficient compounds
D. Terminal BโH bonds are longer than bridge BโH bonds
๐ Correct option(s):
1๏ธโฃ A and C
2๏ธโฃ A, B and C
3๏ธโฃ B and D
4๏ธโฃ A, C and D
Identify the correct set regarding trihalides of Group 13:
A. Lewis acidity of BXโ decreases from BFโ to BIโ
B. BFโ is a weaker Lewis acid than BClโ
C. AlClโ acts as a Lewis acid
D. Boron trihalides undergo hydrolysis except BFโ
๐ Correct option(s):
1๏ธโฃ A and C
2๏ธโฃ B, C and D
3๏ธโฃ A, B and D
4๏ธโฃ B and C only
Identify the correct statements:
A. BโOโ is acidic in nature
B. AlโOโ is amphoteric
C. TlโOโ is basic in nature
D. Basic character of oxides decreases down the group
๐ Correct option(s):
1๏ธโฃ A and B
2๏ธโฃ A, B and C
3๏ธโฃ B and D
4๏ธโฃ A, C and D
๐7โค5๐ฏ2๐1
thermodynamics.aac
1.6 MB
Topic cover thermodynamics system surrounding boundaries
Intensive extensive property & sign uses
Intensive extensive property & sign uses
โค9โคโ๐ฅ5๐1
Chemistry booster series
Question 1 Identify the correct set of statements related to Group 13 elements: A. Boron shows anomalous behaviour in its group B. Aluminium forms Alยณโบ ion easily in aqueous solution C. Gallium has lower melting point than aluminium D. Inert pair effect increasesโฆ
โ Answer: Option 1 (A, C and D)๏ปฟ
Boron anomalous โ
Alยณโบ strongly hydrated โ aqueous me stable nahi โ
Ga ka m.p. Al se kam โ
Inert pair effect down the group increase โ
โ Answer: Option 2 (A, C and D)
BClโ = strong Lewis acid โ
AlClโ vapour phase me dimer (AlโClโ) โ
Diborane = electron deficient โ
Boric acid monobasic โ
โ Answer: Option 1 (A, B and C)
+3 down the group unstable โ
+1 stable due to inert pair โ
Tlยณโบ easily reduce hota โ strong oxidiser โ
Boron Bยณโบ ion nahi banata โ
โค8๐ฅฐ2๐ณ1๐1
Chemistry booster series
A. Diborane has two 3-centre-2-electron bonds B. All BโH bonds in diborane are equivalent C. Boranes are electron-deficient compounds D. Terminal BโH bonds are longer than bridge BโH bonds ๐ Correct option(s): 1๏ธโฃ A and C 2๏ธโฃ A, B and C 3๏ธโฃ B and D 4๏ธโฃ A,โฆ
โ Answer: Option 1 (A and C)
Diborane me 2 banana bonds โ
Terminal & bridge bonds same nahi โ
Boranes electron-deficient โ
Bridge bonds longer hote hain โ
โ Answer: Option 2 (B, C and D)
Lewis acidity: BFโ < BClโ < BBrโ < BIโ โ
AlClโ = Lewis acid โ
BFโ hydrolysis nahi karta โ (others karte)
A statement ulta likha โ
โ Answer: Option 2 (A, B and C)
BโOโ acidic โ
AlโOโ amphoteric โ
TlโOโ basic โ
Basic character increase hota hai down the group โ
๐4๐3๐1
#ELECTROMAGNETICRADIATION
Electromagnetic radiation is a form of energy propagated as waves with electric and magnetic fields oscillating perpendicular to each other.
#๏ธโฃ 1๏ธโฃ Characteristics of EM Radiation
โญ Wave Nature
โ๏ธ Travels in space as waves
โ๏ธ Characterized by wavelength (ฮป), frequency (ฮฝ), speed (c)
โ๏ธ Relationship: c = ฮปฮฝ
โญ Particle Nature
โ๏ธ Light also behaves as particles (photons)
โ๏ธ Energy of photon: E = hฮฝ
โ๏ธ Momentum of photon: p = h/ฮป
๐ Constants
โ๏ธ h = Planckโs constant = 6.626 ร 10โปยณโด Jยทs
โ๏ธ c = speed of light = 3 ร 10โธ m/s
๐ Constants
โ๏ธ h = Planckโs constant = 6.626 ร 10โปยณโด Jยทs
โ๏ธ c = speed of light = 3 ร 10โธ m/s
2#TypesofElectromagneticRadiation (NCERT)
๐ Order of increasing wavelength / decreasing frequency:
ฮณ-rays < X-rays < UV < Visible < IR < Microwaves < Radio waves
โ๏ธ UV, Visible, IR โ Important in Atomic Spectra
3๏ธโฃ #ImportantRelations (Atom Chapter)
โ๏ธ Energy of photon: E = hฮฝ = hc/ฮป
โ๏ธ Frequency & wavelength inversely proportional: ฮฝ = c/ฮป
4๏ธโฃ #NEETIMPORTANTPOINTS โญ
โ๏ธ EM radiation has dual nature โ wave + particle
โ๏ธ Wave nature โ explains interference, diffraction, refraction
โ๏ธ Particle nature โ explains photoelectric effect, Compton effect
โ๏ธ Photon energy proportional to frequency (E โ ฮฝ)
@Ayano1me @Neetugpoll @Neetugquiz
Electromagnetic radiation is a form of energy propagated as waves with electric and magnetic fields oscillating perpendicular to each other.
#๏ธโฃ 1๏ธโฃ Characteristics of EM Radiation
โญ Wave Nature
โ๏ธ Travels in space as waves
โ๏ธ Characterized by wavelength (ฮป), frequency (ฮฝ), speed (c)
โ๏ธ Relationship: c = ฮปฮฝ
โญ Particle Nature
โ๏ธ Light also behaves as particles (photons)
โ๏ธ Energy of photon: E = hฮฝ
โ๏ธ Momentum of photon: p = h/ฮป
๐ Constants
โ๏ธ h = Planckโs constant = 6.626 ร 10โปยณโด Jยทs
โ๏ธ c = speed of light = 3 ร 10โธ m/s
๐ Constants
โ๏ธ h = Planckโs constant = 6.626 ร 10โปยณโด Jยทs
โ๏ธ c = speed of light = 3 ร 10โธ m/s
2#TypesofElectromagneticRadiation (NCERT)
๐ Order of increasing wavelength / decreasing frequency:
ฮณ-rays < X-rays < UV < Visible < IR < Microwaves < Radio waves
โ๏ธ UV, Visible, IR โ Important in Atomic Spectra
3๏ธโฃ #ImportantRelations (Atom Chapter)
โ๏ธ Energy of photon: E = hฮฝ = hc/ฮป
โ๏ธ Frequency & wavelength inversely proportional: ฮฝ = c/ฮป
4๏ธโฃ #NEETIMPORTANTPOINTS โญ
โ๏ธ EM radiation has dual nature โ wave + particle
โ๏ธ Wave nature โ explains interference, diffraction, refraction
โ๏ธ Particle nature โ explains photoelectric effect, Compton effect
โ๏ธ Photon energy proportional to frequency (E โ ฮฝ)
@Ayano1me @Neetugpoll @Neetugquiz
โค5๐3๐1
#PBLOCK ELEMENTSGROUP 14 (CARBON FAMILY)
Elements: C, Si, Ge, Sn, Pb
โ๏ธ General electronic configuration: nsยฒ npยฒ
โ๏ธ Valency: 4
โ๏ธ Oxidation states: +4, +2
๐ Stability of +2 state increases down the group (inert pair effect)
1๏ธโฃ #PHYSICALPROPERTIES
โญ Atomic & Ionic Radii
โ๏ธ Increases down the group (C < Si < Ge < Sn < Pb)
โญ Ionisation Enthalpy
โ๏ธ Decreases down the group
๐ Carbon has very high IE โ strong covalent bonding
โญ Electronegativity
โ๏ธ Decreases down the group
๐ C highest, Pb lowest
โญ Catenation (NEET HOT ๐ฅ)
โ๏ธ Ability to form long chains
๐ Order: C >> Si > Ge > Sn > Pb
๐ Strong CโC bond + small size
2๏ธโฃ #ALLOTROPY
โญ Carbon Allotropes
โ๏ธ Crystalline โ Diamond, Graphite, Fullerene
โ๏ธ Amorphous โ Coal, Coke, Charcoal
๐ Diamond
โ๏ธ spยณ hybridised
โ๏ธ Hardest substance
โ๏ธ Electrical insulator
๐ Graphite
โ๏ธ spยฒ hybridised
โ๏ธ Good conductor of electricity
โ๏ธ Layered structure
3๏ธโฃ #CHEMICALPROPERTIES
โญ Oxidation States
โ๏ธ C, Si โ mainly +4
โ๏ธ Ge, Sn, Pb โ +2 & +4
๐ +2 becomes more stable down the group (inert pair effect)
โญ Inert Pair Effect
โ๏ธ nsยฒ electrons do not participate in bonding
๐ Maximum in Pb โ Pbยฒโบ more stable than Pbโดโบ
4๏ธโฃ #HYDRIDES (EHโ)
โ๏ธ CHโ, SiHโ, GeHโ, SnHโ
๐ Trend:
โ๏ธ Thermal stability โ down the group
โ๏ธ Reducing character โ down the group
5๏ธโฃ #HALIDES (MXโ / MXโ)
โญ Tetrahalides (MXโ)
โ๏ธ CClโ, SiClโ โ covalent
โ๏ธ Stability โ down the group
โญ Dihalides (MXโ)
โ๏ธ SnClโ, PbClโ โ more stable down the group
๐ Due to inert pair effect
๐ PbClโ unstable, PbClโ stable
6๏ธโฃ #OXIDES (IMPORTANT ๐ฅ)
โ๏ธ COโ, SiOโ โ Acidic
โ๏ธ GeOโ โ Weakly acidic
โ๏ธ SnOโ โ Amphoteric
โ๏ธ PbO โ Amphoteric / basic
๐ Acidity decreases down the group
7๏ธโฃ #CARBONSPECIALCASE
โญ Shows maximum catenation
โญ Forms multiple bonds (C=C, CโกC)
โญ Large number of organic compounds
โญ No d-orbitals โ strong ฯ bonding
8๏ธโฃ #COMPARISON ( NEET MCQ)
Property :Carbon :Lead
Catenation :Maximum :Negligible
Oxidation state :+4 :+2 more stable
Nature of oxide :Acidic :Amphoteric
Inert pair effect :Absent :Maximum
โ ๏ธ #NCERTLINES
โ Pbโดโบ more stable than Pbยฒโบ โ WRONG
โ๏ธ CClโ does NOT hydrolyse
โ๏ธ SiClโ hydrolyses easily
โ๏ธ Graphite conducts electricity, diamond does not
@Ayano1me @Neetugpoll @Neetugquiz
Elements: C, Si, Ge, Sn, Pb
โ๏ธ General electronic configuration: nsยฒ npยฒ
โ๏ธ Valency: 4
โ๏ธ Oxidation states: +4, +2
๐ Stability of +2 state increases down the group (inert pair effect)
1๏ธโฃ #PHYSICALPROPERTIES
โญ Atomic & Ionic Radii
โ๏ธ Increases down the group (C < Si < Ge < Sn < Pb)
โญ Ionisation Enthalpy
โ๏ธ Decreases down the group
๐ Carbon has very high IE โ strong covalent bonding
โญ Electronegativity
โ๏ธ Decreases down the group
๐ C highest, Pb lowest
โญ Catenation (NEET HOT ๐ฅ)
โ๏ธ Ability to form long chains
๐ Order: C >> Si > Ge > Sn > Pb
๐ Strong CโC bond + small size
2๏ธโฃ #ALLOTROPY
โญ Carbon Allotropes
โ๏ธ Crystalline โ Diamond, Graphite, Fullerene
โ๏ธ Amorphous โ Coal, Coke, Charcoal
๐ Diamond
โ๏ธ spยณ hybridised
โ๏ธ Hardest substance
โ๏ธ Electrical insulator
๐ Graphite
โ๏ธ spยฒ hybridised
โ๏ธ Good conductor of electricity
โ๏ธ Layered structure
3๏ธโฃ #CHEMICALPROPERTIES
โญ Oxidation States
โ๏ธ C, Si โ mainly +4
โ๏ธ Ge, Sn, Pb โ +2 & +4
๐ +2 becomes more stable down the group (inert pair effect)
โญ Inert Pair Effect
โ๏ธ nsยฒ electrons do not participate in bonding
๐ Maximum in Pb โ Pbยฒโบ more stable than Pbโดโบ
4๏ธโฃ #HYDRIDES (EHโ)
โ๏ธ CHโ, SiHโ, GeHโ, SnHโ
๐ Trend:
โ๏ธ Thermal stability โ down the group
โ๏ธ Reducing character โ down the group
5๏ธโฃ #HALIDES (MXโ / MXโ)
โญ Tetrahalides (MXโ)
โ๏ธ CClโ, SiClโ โ covalent
โ๏ธ Stability โ down the group
โญ Dihalides (MXโ)
โ๏ธ SnClโ, PbClโ โ more stable down the group
๐ Due to inert pair effect
๐ PbClโ unstable, PbClโ stable
6๏ธโฃ #OXIDES (IMPORTANT ๐ฅ)
โ๏ธ COโ, SiOโ โ Acidic
โ๏ธ GeOโ โ Weakly acidic
โ๏ธ SnOโ โ Amphoteric
โ๏ธ PbO โ Amphoteric / basic
๐ Acidity decreases down the group
7๏ธโฃ #CARBONSPECIALCASE
โญ Shows maximum catenation
โญ Forms multiple bonds (C=C, CโกC)
โญ Large number of organic compounds
โญ No d-orbitals โ strong ฯ bonding
8๏ธโฃ #COMPARISON ( NEET MCQ)
Property :Carbon :Lead
Catenation :Maximum :Negligible
Oxidation state :+4 :+2 more stable
Nature of oxide :Acidic :Amphoteric
Inert pair effect :Absent :Maximum
โ ๏ธ #NCERTLINES
โ Pbโดโบ more stable than Pbยฒโบ โ WRONG
โ๏ธ CClโ does NOT hydrolyse
โ๏ธ SiClโ hydrolyses easily
โ๏ธ Graphite conducts electricity, diamond does not
@Ayano1me @Neetugpoll @Neetugquiz
โค4๐2๐1๐ณ1
Chemistry booster series pinned ยซ๐ง๐ข๐ฃ ๐ฎ๐ฌ ๐๐๐๐ ๐ช๐๐๐๐๐ง๐๐๐ ๐ง๐ข๐ฃ๐๐๐ฆ โ ๐๐๐๐ ๐๐ฆ๐ง๐ฅ๐ฌ โญ #๐ฃ๐๐ฌ๐ฆ๐๐๐๐๐๐๐๐ ๐๐ฆ๐ง๐ฅ๐ฌ ๐๐๐๐ฃ๐ง๐๐ฅ ๐ญ: ๐ฆ๐ข๐๐จ๐ง๐๐ข๐ก โญ ๐๐๐๐๐ ๐ฆ๐ข๐๐จ๐ง๐๐ข๐ก โญ ๐๐ข๐๐๐๐๐๐ง๐๐ฉ๐ ๐ฃ๐ฅ๐ข๐ฃ๐๐ฅ๐ง๐๐๐ฆ ๐๐๐๐ฃ๐ง๐๐ฅ ๐ฎ๐๐๐๐๐ง๐ฅ๐ข๐๐๐๐ ๐๐ฆ๐ง๐ฅ๐ฌ โญ ๐ก๐๐ฅ๐ก๐ฆ๐ง ๐๐ค๐จ๐๐ง๐๐ข๐ก โญ ๐๐ข๐ก๐๐จ๐๐ง๐๐ฉ๐๐ง๐ฌ ๐๐๐๐ฃ๐ง๐๐ฅ ๐ฏ: ๐๐๐๐ ๐๐๐๐ ๐๐๐ก๐๐ง๐๐๐ฆ โญ ๐๐๐ฅ๐ฆ๐ง ๐ข๐ฅ๐๐๐ฅ ๐ฅ๐๐๐๐ง๐๐ข๐ก๐ฆ โญ ๐๐ฅ๐ฅ๐๐๐ก๐๐จ๐ฆโฆยป
Chemistry booster series
๐ง๐ข๐ฃ ๐ฎ๐ฌ ๐๐๐๐ ๐ช๐๐๐๐๐ง๐๐๐ ๐ง๐ข๐ฃ๐๐๐ฆ โ ๐๐๐๐ ๐๐ฆ๐ง๐ฅ๐ฌ โญ #๐ฃ๐๐ฌ๐ฆ๐๐๐๐๐๐๐๐ ๐๐ฆ๐ง๐ฅ๐ฌ ๐๐๐๐ฃ๐ง๐๐ฅ ๐ญ: ๐ฆ๐ข๐๐จ๐ง๐๐ข๐ก โญ ๐๐๐๐๐ ๐ฆ๐ข๐๐จ๐ง๐๐ข๐ก โญ ๐๐ข๐๐๐๐๐๐ง๐๐ฉ๐ ๐ฃ๐ฅ๐ข๐ฃ๐๐ฅ๐ง๐๐๐ฆ ๐๐๐๐ฃ๐ง๐๐ฅ ๐ฎ๐๐๐๐๐ง๐ฅ๐ข๐๐๐๐ ๐๐ฆ๐ง๐ฅ๐ฌ โญ ๐ก๐๐ฅ๐ก๐ฆ๐ง ๐๐ค๐จ๐๐ง๐๐ข๐ก โญ ๐๐ข๐ก๐๐จ๐๐ง๐๐ฉ๐๐ง๐ฌ ๐๐๐๐ฃ๐ง๐๐ฅ ๐ฏ: ๐๐๐๐ ๐๐๐๐ ๐๐๐ก๐๐ง๐๐๐ฆ โญ ๐๐๐ฅ๐ฆ๐ง ๐ข๐ฅ๐๐๐ฅ ๐ฅ๐๐๐๐ง๐๐ข๐ก๐ฆ โญ ๐๐ฅ๐ฅ๐๐๐ก๐๐จ๐ฆโฆ
Ye vaale sb read kr lena help hogi
Or jo jo topic ka revision ka mood ๐ถh krlo read
Or jo jo topic ka revision ka mood ๐ถh krlo read
๐ฅฐ4๐4โคโ๐ฅ1๐ฏ1
โค5๐2๐1
#BOHRMODELOFHYDROGENATOM
Proposed by Niels Bohr (1913) to explain the line spectrum of hydrogen.
1. #POSTULATES OF BOHR MODEL
โ๏ธ Atom has a small, positively charged nucleus at the centre
โ๏ธ Electron revolves around nucleus in fixed circular orbits (stationary states)
โ๏ธ Each orbit has a definite energy
โ๏ธ Electron does not radiate energy while revolving in a permitted orbit
๐ Allowed orbits โ n = 1, 2, 3, 4โฆ
โ๏ธ Angular momentum of electron is quantised:
๐ mvr = n(h / 2ฯ)
2. #ENERGYOFELECTRON IN HYDROGEN ATOM
โ๏ธ Energy of electron in nth orbit:
๐ Eโ = โ13.6 / nยฒ eV
โ๏ธ Negative sign โ electron is bound to nucleus
๐ Ground state (n = 1):
Eโ = โ13.6 eV
๐ Excited state (n > 1):
Energy becomes less negative
3. #RADIUSOFBOHRORBIT
โ๏ธ Radius of nth orbit:
๐ rโ = 0.529 ร nยฒ ร
๐ For ground state (n = 1):
rโ = 0.529 ร
โ๏ธ Radius increases as nยฒ
4. #SPECTRALLINES (EMISSION & ABSORPTION)
โ๏ธ Electron jumps from higher to lower orbit โ emission of energy
โ๏ธ Electron jumps from lower to higher orbit โ absorption of energy
๐ Energy difference:
๐ ฮE = Eโ โ Eโ = hฮฝ
5 #HYDROGENEMISSION SPECTRUM (IMPORTANT )
โ๏ธ Spectrum consists of discrete lines
๐ Series based on final orbit:
Slines :Final n :Region
Lyman: 1 :UV
Balmer :2 :Visible
Paschen :3 :IR
Brackett :4 :IR
Pfund :5 :IR
๐ Balmer series โ only visible series
6. #RYDBERGEQUATION
โ๏ธ Explains wavelength of spectral lines:
๐ 1/ฮป = R (1/nโยฒ โ 1/nโยฒ)
โ๏ธ nโ > nโ
๐ R = 1.097 ร 10โท mโปยน
7. #SUCCESSOFBOHRMODEL
โ๏ธ Explains hydrogen line spectrum
โ๏ธ Explains stability of hydrogen atom
โ๏ธ Gives correct values of energy & radius for H atom
8. #LIMITATIONSOFBOHRMODEL (VERY IMP โ ๏ธ)
โ Cannot explain spectra of multi-electron atoms
โ Cannot explain Zeeman effect
โ Cannot explain Stark effect
โ Violates Heisenberg uncertainty principle
9. #NCERT ONELINEFACTS (NEET DIRECT)
โ๏ธ Valid only for one-electron systems (H, Heโบ, Liยฒโบ)
โ๏ธ Energy levels are quantised
โ๏ธ Lower n โ more stability
โ๏ธ Higher n โ larger orbit, higher energy
#IMP
Electron radiates energy in stationary orbit โ WRONG
โ๏ธ Ground state has minimum energy
โ๏ธ Transition n=3 โ n=2 โ Balmer series
@Ayano1me @Neetugpoll @Neetugquiz
Proposed by Niels Bohr (1913) to explain the line spectrum of hydrogen.
1. #POSTULATES OF BOHR MODEL
โ๏ธ Atom has a small, positively charged nucleus at the centre
โ๏ธ Electron revolves around nucleus in fixed circular orbits (stationary states)
โ๏ธ Each orbit has a definite energy
โ๏ธ Electron does not radiate energy while revolving in a permitted orbit
๐ Allowed orbits โ n = 1, 2, 3, 4โฆ
โ๏ธ Angular momentum of electron is quantised:
๐ mvr = n(h / 2ฯ)
2. #ENERGYOFELECTRON IN HYDROGEN ATOM
โ๏ธ Energy of electron in nth orbit:
๐ Eโ = โ13.6 / nยฒ eV
โ๏ธ Negative sign โ electron is bound to nucleus
๐ Ground state (n = 1):
Eโ = โ13.6 eV
๐ Excited state (n > 1):
Energy becomes less negative
3. #RADIUSOFBOHRORBIT
โ๏ธ Radius of nth orbit:
๐ rโ = 0.529 ร nยฒ ร
๐ For ground state (n = 1):
rโ = 0.529 ร
โ๏ธ Radius increases as nยฒ
4. #SPECTRALLINES (EMISSION & ABSORPTION)
โ๏ธ Electron jumps from higher to lower orbit โ emission of energy
โ๏ธ Electron jumps from lower to higher orbit โ absorption of energy
๐ Energy difference:
๐ ฮE = Eโ โ Eโ = hฮฝ
5 #HYDROGENEMISSION SPECTRUM (IMPORTANT )
โ๏ธ Spectrum consists of discrete lines
๐ Series based on final orbit:
Slines :Final n :Region
Lyman: 1 :UV
Balmer :2 :Visible
Paschen :3 :IR
Brackett :4 :IR
Pfund :5 :IR
๐ Balmer series โ only visible series
6. #RYDBERGEQUATION
โ๏ธ Explains wavelength of spectral lines:
๐ 1/ฮป = R (1/nโยฒ โ 1/nโยฒ)
โ๏ธ nโ > nโ
๐ R = 1.097 ร 10โท mโปยน
7. #SUCCESSOFBOHRMODEL
โ๏ธ Explains hydrogen line spectrum
โ๏ธ Explains stability of hydrogen atom
โ๏ธ Gives correct values of energy & radius for H atom
8. #LIMITATIONSOFBOHRMODEL (VERY IMP โ ๏ธ)
โ Cannot explain spectra of multi-electron atoms
โ Cannot explain Zeeman effect
โ Cannot explain Stark effect
โ Violates Heisenberg uncertainty principle
9. #NCERT ONELINEFACTS (NEET DIRECT)
โ๏ธ Valid only for one-electron systems (H, Heโบ, Liยฒโบ)
โ๏ธ Energy levels are quantised
โ๏ธ Lower n โ more stability
โ๏ธ Higher n โ larger orbit, higher energy
#IMP
Electron radiates energy in stationary orbit โ WRONG
โ๏ธ Ground state has minimum energy
โ๏ธ Transition n=3 โ n=2 โ Balmer series
@Ayano1me @Neetugpoll @Neetugquiz
โค5โคโ๐ฅ3๐1๐ฏ1๐1
1๏ธโฃ #PBLOCKGROUP15 โญ (Nitrogen Family / Pnictogens)
๐ Group members:
โ๏ธ Nitrogen (N)
โ๏ธ Phosphorus (P)
โ๏ธ Arsenic (As)
โ๏ธ Antimony (Sb)
โ๏ธ Bismuth (Bi)
๐ General electronic configuration:
โ๏ธ nsยฒ npยณ
NEET point:
โ๏ธ 5 valence electrons โ trivalent nature common
2๏ธโฃ #GENERALTRENDS โญ
๐ Atomic & ionic size:
โ๏ธ Increases down the group
๐ Ionisation enthalpy:
โ๏ธ Decreases down the group
โ๏ธ Nitrogen โ highest (small size)
๐ Electronegativity:
โ๏ธ Decreases down the group
๐ Metallic character:
โ๏ธ Increases down the group
โ๏ธ N & P โ non-metals
โ๏ธ As & Sb โ metalloids
โ๏ธ Bi โ metal
3๏ธโฃ #OXIDATIONSTATES โญ
โ๏ธ Common oxidation states: โ3, +3, +5
๐ Trends:
โ๏ธ โ3 โ stability decreases down the group
โ๏ธ +5 โ stability decreases down the group
โ๏ธ +3 โ stability increases down the group
๐ง Reason:
โ๏ธ Inert pair effect increases down the group
๐ Examples:
โ๏ธ NโOโ โ +5 (stable)
โ๏ธ Biยณโบ โ more stable than Biโตโบ
4๏ธโฃ #HYDRIDES (NHโ TYPE) โญ
๐ General formula:
โ๏ธ EHโ
๐ Bond angle:
โ๏ธ NHโ > PHโ > AsHโ > SbHโ > BiHโ
๐ Basic nature:
โ๏ธ NHโ โ most basic
โ๏ธ Basicity decreases down the group
Reason:
โ๏ธ Lone pair availability decreases
๐ Thermal stability:
โ๏ธ Decreases down the group
5๏ธโฃ #OXIDES โญ
โ๏ธ Form EโOโ and EโOโ
๐ Nature of oxides:
โ๏ธ NโOโ , PโOโ โ acidic
โ๏ธ AsโOโ โ amphoteric
โ๏ธ BiโOโ โ basic
Trend:
โ๏ธ Acidic โ basic character increases down the group
6๏ธโฃ #HALIDES โญ
๐ Trihalides (EXโ):
โ๏ธ All elements form EXโ
๐ Pentahalides (EXโ ):
โ๏ธ Formed by P, As, Sb
โ๏ธ Nitrogen โ (no d-orbitals)
โ๏ธ Bi โ (inert pair effect)
Important:
โ๏ธ PClโ โ exists as solid (ionic) & gas (covalent)
7๏ธโฃ #ANOMALOUSBEHAVIOUROFNITROGEN โญ
โ๏ธ Small size
โ๏ธ High electronegativity
โ๏ธ High ionisation enthalpy
โ๏ธ Absence of d-orbitals
๐ Results:
โ๏ธ Nโ has strong triple bond
โ๏ธ Limited oxidation states
โ๏ธ Different properties from rest of group
8๏ธโฃ #IMPORTANTCOMPOUNDS
โ๏ธ Ammonia (NHโ):
โข Basic gas
โข Forms hydrogen bonding
โ๏ธ Phosphine (PHโ):
โข Weak base
โข Toxic gas
โ๏ธ PโOโ :
Strong dehydrating agent
#NEETTAKEAWAY
โ๏ธ Inert pair effect โ key to oxidation states
โ๏ธ NHโ strongest base in group
โ๏ธ Acidic โ basic oxide trend important
โ๏ธ Nitrogen always exceptional
@Ayano1me @Neetugpoll @Neetugquiz
๐ Group members:
โ๏ธ Nitrogen (N)
โ๏ธ Phosphorus (P)
โ๏ธ Arsenic (As)
โ๏ธ Antimony (Sb)
โ๏ธ Bismuth (Bi)
๐ General electronic configuration:
โ๏ธ nsยฒ npยณ
NEET point:
โ๏ธ 5 valence electrons โ trivalent nature common
2๏ธโฃ #GENERALTRENDS โญ
๐ Atomic & ionic size:
โ๏ธ Increases down the group
๐ Ionisation enthalpy:
โ๏ธ Decreases down the group
โ๏ธ Nitrogen โ highest (small size)
๐ Electronegativity:
โ๏ธ Decreases down the group
๐ Metallic character:
โ๏ธ Increases down the group
โ๏ธ N & P โ non-metals
โ๏ธ As & Sb โ metalloids
โ๏ธ Bi โ metal
3๏ธโฃ #OXIDATIONSTATES โญ
โ๏ธ Common oxidation states: โ3, +3, +5
๐ Trends:
โ๏ธ โ3 โ stability decreases down the group
โ๏ธ +5 โ stability decreases down the group
โ๏ธ +3 โ stability increases down the group
๐ง Reason:
โ๏ธ Inert pair effect increases down the group
๐ Examples:
โ๏ธ NโOโ โ +5 (stable)
โ๏ธ Biยณโบ โ more stable than Biโตโบ
4๏ธโฃ #HYDRIDES (NHโ TYPE) โญ
๐ General formula:
โ๏ธ EHโ
๐ Bond angle:
โ๏ธ NHโ > PHโ > AsHโ > SbHโ > BiHโ
๐ Basic nature:
โ๏ธ NHโ โ most basic
โ๏ธ Basicity decreases down the group
Reason:
โ๏ธ Lone pair availability decreases
๐ Thermal stability:
โ๏ธ Decreases down the group
5๏ธโฃ #OXIDES โญ
โ๏ธ Form EโOโ and EโOโ
๐ Nature of oxides:
โ๏ธ NโOโ , PโOโ โ acidic
โ๏ธ AsโOโ โ amphoteric
โ๏ธ BiโOโ โ basic
Trend:
โ๏ธ Acidic โ basic character increases down the group
6๏ธโฃ #HALIDES โญ
๐ Trihalides (EXโ):
โ๏ธ All elements form EXโ
๐ Pentahalides (EXโ ):
โ๏ธ Formed by P, As, Sb
โ๏ธ Nitrogen โ (no d-orbitals)
โ๏ธ Bi โ (inert pair effect)
Important:
โ๏ธ PClโ โ exists as solid (ionic) & gas (covalent)
7๏ธโฃ #ANOMALOUSBEHAVIOUROFNITROGEN โญ
โ๏ธ Small size
โ๏ธ High electronegativity
โ๏ธ High ionisation enthalpy
โ๏ธ Absence of d-orbitals
๐ Results:
โ๏ธ Nโ has strong triple bond
โ๏ธ Limited oxidation states
โ๏ธ Different properties from rest of group
8๏ธโฃ #IMPORTANTCOMPOUNDS
โ๏ธ Ammonia (NHโ):
โข Basic gas
โข Forms hydrogen bonding
โ๏ธ Phosphine (PHโ):
โข Weak base
โข Toxic gas
โ๏ธ PโOโ :
Strong dehydrating agent
#NEETTAKEAWAY
โ๏ธ Inert pair effect โ key to oxidation states
โ๏ธ NHโ strongest base in group
โ๏ธ Acidic โ basic oxide trend important
โ๏ธ Nitrogen always exceptional
@Ayano1me @Neetugpoll @Neetugquiz
๐ฅ3๐3โค1๐1๐1
๐พ๐๐๐ข๐๐จ๐ฉ๐ง๐ฎ ๐๐๐ฃ๐ ๐ฝ๐ค๐ค๐จ๐ฉ๐๐ง ๐๐๐โ๐ ๐พ๐๐ผ๐พ๐ ๐๐ ๐๐๐๐๐ โ๏ธ ๐๐๐ฎ ๐ฉ๐ค ๐จ๐ช๐๐๐๐จ๐จ:
1๏ธโฃ #PERIODICCLASSIFICATIONOFELEMENTS โญ
โ๏ธ Elements ko increasing atomic number ke order me arrange karna
โ๏ธ Purpose โ study of properties in a systematic way
๐ Modern periodic law:
โ๏ธ Physical & chemical properties of elements are periodic functions of their atomic numbers
#NEETpoint:
โ๏ธ Atomic number (Z) is basis, not atomic mass
2๏ธโฃ #HISTORICALDEVELOPMENT โญ
โ๏ธ Dobereinerโs Triads
โข Middle element mass โ average of other two
โ๏ธ Newlandsโ Law of Octaves
โข Every 8th element similar properties
โ๏ธ Mendeleevโs Periodic Table
โข Based on atomic mass
โข Left gaps for undiscovered elements
โ๏ธ Modern Periodic Table (Moseley)
โข Based on atomic number
#NEETIMP
โ๏ธ Anomalies of Mendeleev solved by modern table
3๏ธโฃ #MODERNPERIODICTABLE โญ
๐ Structure:
โ๏ธ 7 periods (horizontal rows)
โ๏ธ 18 groups (vertical columns)
๐ Blocks:
โ๏ธ s-block
โ๏ธ p-block
โ๏ธ d-block
โ๏ธ f-block
#NEETpoint:
โ๏ธ Period number = highest principal quantum number (n)
4๏ธโฃ #PERIODICITYINPROPERTIES โญ
โ๏ธ Repetition of properties at regular intervals
๐ Important properties:
โ๏ธ Atomic radius
โ๏ธ Ionisation enthalpy
โ๏ธ Electron affinity
โ๏ธ Electronegativity
โ๏ธ Metallic & non-metallic character
5๏ธโฃ #ATOMICRADIUS โญ
๐ Trend:
โ๏ธ Decreases across a period โ left to right
โ๏ธ Increases down a group
#Reason:
โ๏ธ Effective nuclear charge โ across period
โ๏ธ New shell added down the group
๐ Ionic radius:
โ๏ธ Cation < atom
โ๏ธ Anion > atom
6๏ธโฃ #IONISATIONENTHALPY โญ
โ๏ธ Energy required to remove an electron
๐ Trend:
โ๏ธ Increases across a period
โ๏ธ Decreases down a group
#Exceptions (NEET favourite ๐ฅ):
โ๏ธ Be > B
โ๏ธ N > O
7๏ธโฃ #ELECTRONAFFINITY โญ
โ๏ธ Energy released when electron is added
๐ Trend:
โ๏ธ Increases across a period
โ๏ธ Decreases down a group
#NEETpoint:
โ๏ธ Halogens โ highest electron affinity
โ๏ธ Noble gases โ ~0
8๏ธโฃ #ELECTRONEGATIVITY โญ
โ๏ธ Tendency to attract shared electron pair
๐ Trend:
โ๏ธ Increases across a period
โ๏ธ Decreases down a group
โญNEETpoint:
โ๏ธ Fluorine โ most electronegative
9๏ธโฃ #METALLICCHARACTER โญ
๐ Trend:
โ๏ธ Decreases across a period
โ๏ธ Increases down a group
โญNEETclarity:
โ๏ธ Metals โ lose electrons
โ๏ธ Non-metals โ gain electrons
๐ #ANOMALOUSBEHAVIOUR โญ
โ๏ธ First element of each group shows different properties
๐ Reason:
โ๏ธ Small size
โ๏ธ High electronegativity
โ๏ธ Absence of d-orbitals
โญExample:
โ๏ธ Li โ Na
โ๏ธ Be โ Mg
1๏ธโฃ1๏ธโฃ #NEETONELINERS๐ฅ
โ๏ธ Basis of modern periodic table โ atomic number
โ๏ธ Periodicity due to electronic configuration
โ๏ธ s-block โ highly electropositive
โ๏ธ p-block โ variable oxidation states
โ๏ธ d-block โ transition elements
1๏ธโฃ2๏ธโฃ #SUMMARY โญ
โ๏ธ Periodic table = map of chemistry
โ๏ธ Trends help predict properties
โ๏ธ Exceptions are more important for NEET
@Ayano1me @Neetugpoll @Neetugquiz
1๏ธโฃ #PERIODICCLASSIFICATIONOFELEMENTS โญ
โ๏ธ Elements ko increasing atomic number ke order me arrange karna
โ๏ธ Purpose โ study of properties in a systematic way
๐ Modern periodic law:
โ๏ธ Physical & chemical properties of elements are periodic functions of their atomic numbers
#NEETpoint:
โ๏ธ Atomic number (Z) is basis, not atomic mass
2๏ธโฃ #HISTORICALDEVELOPMENT โญ
โ๏ธ Dobereinerโs Triads
โข Middle element mass โ average of other two
โ๏ธ Newlandsโ Law of Octaves
โข Every 8th element similar properties
โ๏ธ Mendeleevโs Periodic Table
โข Based on atomic mass
โข Left gaps for undiscovered elements
โ๏ธ Modern Periodic Table (Moseley)
โข Based on atomic number
#NEETIMP
โ๏ธ Anomalies of Mendeleev solved by modern table
3๏ธโฃ #MODERNPERIODICTABLE โญ
๐ Structure:
โ๏ธ 7 periods (horizontal rows)
โ๏ธ 18 groups (vertical columns)
๐ Blocks:
โ๏ธ s-block
โ๏ธ p-block
โ๏ธ d-block
โ๏ธ f-block
#NEETpoint:
โ๏ธ Period number = highest principal quantum number (n)
4๏ธโฃ #PERIODICITYINPROPERTIES โญ
โ๏ธ Repetition of properties at regular intervals
๐ Important properties:
โ๏ธ Atomic radius
โ๏ธ Ionisation enthalpy
โ๏ธ Electron affinity
โ๏ธ Electronegativity
โ๏ธ Metallic & non-metallic character
5๏ธโฃ #ATOMICRADIUS โญ
๐ Trend:
โ๏ธ Decreases across a period โ left to right
โ๏ธ Increases down a group
#Reason:
โ๏ธ Effective nuclear charge โ across period
โ๏ธ New shell added down the group
๐ Ionic radius:
โ๏ธ Cation < atom
โ๏ธ Anion > atom
6๏ธโฃ #IONISATIONENTHALPY โญ
โ๏ธ Energy required to remove an electron
๐ Trend:
โ๏ธ Increases across a period
โ๏ธ Decreases down a group
#Exceptions (NEET favourite ๐ฅ):
โ๏ธ Be > B
โ๏ธ N > O
7๏ธโฃ #ELECTRONAFFINITY โญ
โ๏ธ Energy released when electron is added
๐ Trend:
โ๏ธ Increases across a period
โ๏ธ Decreases down a group
#NEETpoint:
โ๏ธ Halogens โ highest electron affinity
โ๏ธ Noble gases โ ~0
8๏ธโฃ #ELECTRONEGATIVITY โญ
โ๏ธ Tendency to attract shared electron pair
๐ Trend:
โ๏ธ Increases across a period
โ๏ธ Decreases down a group
โญNEETpoint:
โ๏ธ Fluorine โ most electronegative
9๏ธโฃ #METALLICCHARACTER โญ
๐ Trend:
โ๏ธ Decreases across a period
โ๏ธ Increases down a group
โญNEETclarity:
โ๏ธ Metals โ lose electrons
โ๏ธ Non-metals โ gain electrons
๐ #ANOMALOUSBEHAVIOUR โญ
โ๏ธ First element of each group shows different properties
๐ Reason:
โ๏ธ Small size
โ๏ธ High electronegativity
โ๏ธ Absence of d-orbitals
โญExample:
โ๏ธ Li โ Na
โ๏ธ Be โ Mg
1๏ธโฃ1๏ธโฃ #NEETONELINERS๐ฅ
โ๏ธ Basis of modern periodic table โ atomic number
โ๏ธ Periodicity due to electronic configuration
โ๏ธ s-block โ highly electropositive
โ๏ธ p-block โ variable oxidation states
โ๏ธ d-block โ transition elements
1๏ธโฃ2๏ธโฃ #SUMMARY โญ
โ๏ธ Periodic table = map of chemistry
โ๏ธ Trends help predict properties
โ๏ธ Exceptions are more important for NEET
@Ayano1me @Neetugpoll @Neetugquiz
โค4๐2๐1๐คฉ1๐1๐1