MBSE Class 11th Chemistry Syllabus 2024 PDF Download – Mizoram Board has released the syllabus of MBSE Class 11th Chemistry Syllabus 2024 along with the official notification on the official website – mbose.in. The MBSE Class 11th Chemistry 2024 Syllabus pdf comprises the subject-wise topics which will be asked in the class 11 Chemistry exam. Students of Mizoram State Board Class 11th Chemistry can download the syllabus PDF from this page.
Mizoram Board Class 11 Chemistry Syllabus 2024-2025 PDF
Using the MBSE Class 11th Chemistry Syllabus 2024 PDF, students can prepare their study schedule and exam preparation strategy. As the MBSE exam date has been released, candidates can plan their schedule according to it, therefore, they can prepare their syllabus of MBSE Class 11th Chemistry Exam 2024 accordingly. Along with the MBSE Class 11th Chemistry 2024 syllabus, candidates can also check the official Mizoram Board exam pattern and the previous year’s Mizoram Board Class 11th Chemistry question papers.
Mizoram State Board Class 11th Chemistry Syllabus 2024 PDF Online
Name of the Board |
MBSE |
Name of the Grade |
11 |
Subjects |
Chemistry |
Year |
2024-2025 |
Format |
PDF/DOC |
Provider |
|
Official Website |
mbose.in |
How To Download Mizoram State Board Class 11th Chemistry Syllabus 2024 PDF Online?
Follow the steps as under to download MBSE Class 11 Chemistry Syllabus 2024 PDF:
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MBSE Class 11th Chemistry Syllabus 2024-2025 PDF
Students of download the MBSE Class 11th Chemistry Syllabus 2024-2025 PDF online using the links provided below:
The following is the Mizoram Board Chemistry Deleted Syllabus for Class 11:
Chapter Name | Topic / Portion deleted |
---|---|
1. Some Basic Concepts of Chemistry | Historical approach to particulate nature of matter Laws of chemical combination Dalton’s atomic theory: the concept of elements, atoms and molecules |
2. Structure of Atom | Discovery of electron, proton and neutron Atomic number, isotopes and isobars Thomson’s model and its limitations Rutherford’s model and its limitations |
3. Classification of Elements and Periodicity in properties | Significance of classification A brief history of the development of periodic table |
4. States of Matter: Gases and Liquids | Kinetic energy and molecular speeds (elementary idea), liquefaction of gases, critical temperature Liquid State – Vapour pressure, viscosity and surface tension (qualitative idea only, no mathematical derivations) |
5. Thermodynamics | Heat capacity and specific heat Criteria for equilibrium |
6. Equilibrium | Hydrolysis of salts (elementary idea) Henderson equation |
7. Redox reactions | Applications of redox reactions |
8. Hydrogen | Preparation, properties and uses of hydrogen Hydrogen peroxide-preparation, reactions, use and structure |
9. Block Elements (Alkali and Alkaline earth metals) | Group 1 and Group 2 elements:― Preparation and Properties of Some Important Compounds: Sodium carbonate, sodium chloride, sodium hydroxide and sodium hydrogen carbonate, biological importance of sodium and potassium. CaO, CaCO3, and industrial use of lime and limestone, biological importance of Mg and Ca. |
10. Some p-Block Elements | Some important compounds: borax, boric acids, boron hydrides Aluminium: uses, reactions with acids and alkalies Uses of some important compounds: oxides Important compounds of silicon and a few uses: silicon tetrachloride, silicones, silicates and zeolites, their uses |
11. Organic Chemistry: Some Basic Principles and Techniques | Methods of purification, qualitative and quantitative analysis |
12. Hydrocarbons | Classification of Hydrocarbons Aliphatic Hydrocarbons Alkanes – including free radical mechanism of halogenation, combustion and pyrolysis |
The following is the Mizoram Board Chemistry Revised Syllabus for Class 11:
Chapter Name | Revised Topics |
---|---|
1. Some Basic Concepts of Chemistry | General Introduction: Importance and scope of chemistry. Atomic and molecular masses. Mole concept and molar mass; percentage composition and empirical and molecular formula; chemical reactions, stoichiometry and calculations based on stoichiometry. |
2. Structure of Atom | Bohr’s model and its limitations, the concept of shells and sub-shells, dual-nature of matter and light, de Broglie’s relationship, Heisenberg uncertainty principle, the concept of orbitals, quantum numbers, shapes of s, p and d orbitals; rules for filling electrons in orbitals -Aufbau principle, Pauli exclusion principle and Hund’s rule, electronic configuration of atoms, stability of half-filled and completely filled orbitals. |
3. Classification of Elements and Periodicity in properties | Modern periodic law and the present form of the periodic table, periodic trends in properties of elements —atomic radii, ionic radii, inert gas radii, ionization enthalpy, electron gain enthalpy, electronegativity, valence. Nomenclature of elements with atomic number greater than 100. |
4. Chemical Bonding and Molecular Structure | Valence electrons, ionic bond, covalent bond, bond parameters, Lewis Structure, the polar character of covalent bond, the covalent character of ionic bond, valence bond theory, resonance, the geometry of covalent molecules, VSEPR theory, the concept of hybridization involving s, p and d orbitals and shapes of some simple molecules, molecular orbital theory of homonuclear diatomic molecules (qualitative idea only). Hydrogen bond. |
5. States of Matter: Gases and Liquids | Three states of matter, intermolecular interactions, types of bonding, melting and boiling points, the role of gas laws in elucidating the concept of the molecule, Boyle’s law, Charle’s law, Gay Lussac’s law, Avogadro’s law, ideal behaviour, empirical derivation of gas equation, Avogadro’s number, ideal gas equation. Deviation from ideal behaviour. Liquid State —Vapour pressure, viscosity and surface tension (qualitative idea only, no mathematical derivations) |
6. Thermodynamics | Concepts of system, types of systems, surroundings, work, heat, energy, extensive and intensive properties, state functions. The first law of thermodynamics — internal energy and enthalpy, measurement of ∆U and ∆H, Hess’s law of constant heat summation, enthalpy of bond dissociation, combustion, formation, atomization, sublimation; phase transition; ionization, solution and dilution. Introduction of entropy as a state function, Second law of thermodynamics, Gibbs energy change for spontaneous and non-spontaneous processes. Third law of thermodynamics – Brief introduction. |
7. Equilibrium | Equilibrium in physical and chemical processes, dynamic nature of equilibrium, the law of mass action, equilibrium constant, factors affecting equilibrium —Le Chatelier’s principle; ionic equilibrium—ionization of acids and bases, strong and weak electrolytes, degree of ionization, ionization of polybasic acids, acid strength, the concept of pH, buffer solutions, solubility product, common ion effect (with- illustrative examples). |
8. Redox reactions | Concept of oxidation and reduction, redox reactions, oxidation number, balancing redox reactions in terms of loss and gain of electrons and change in oxidation numbers. |
9. Hydrogen | Position of hydrogen in the periodic table, occurrence, isotopes; hydrides — ionic, covalent and interstitial; physical and chemical properties of water, heavy water; hydrogen as a fuel. |
10. Block Elements (Alkali and Alkaline earth metals) | Group 1 and Group 2 elements: General introduction, electronic configuration, occurrence, anomalous properties of the first element of each group, diagonal relationship, trends in the variation of properties (such as ionization enthalpy, atomic and ionic radii), trends in chemical reactivity with oxygen, water, hydrogen and halogens; uses. |
11. Some p-Block Elements | General Introduction to p-Block Elements. Group 13 elements: General introduction, electronic configuration, occurrence, variation of properties, oxidation states, trends in chemical reactivity, anomalous properties of the first element of the group; Boron-physical and chemical properties. Group 14 elements: General introduction, electronic configuration, occurrence, variation of properties, oxidation states, trends in chemical reactivity, anomalous behaviour of the first element. Carbon – catenation, allotropic forms, physical and chemical properties. |
12. Organic Chemistry: Some Basic Principles and Techniques | General introduction, classification and IUPAC nomenclature of organic compounds. Electronic displacements in a covalent bond-. inductive effect, electromeric effect, resonance and hyperconjugation. Homolytic and heterolytic fission of a covalent bond: free radicals, carbocation. |
13. Hydrocarbons | Classification of Hydrocarbons – Aliphatic Hydrocarbons: Alkanes — Nomenclature, isomerism, conformations (ethane only), physical properties, chemical reactions. Alkenes —Nomenclature, the structure of double bond (ethene), geometrical isomerism, physical properties, methods of preparation; chemical reactions: addition of hydrogen, halogen, water, hydrogen halides (Markovnikov’s addition and peroxide effect), ozonolysis, oxidation, mechanism of electrophilic addition. Alkynes —Nomenclature, the structure of triple bond (ethyne), physical properties, methods of preparation, chemical reactions: acidic character of alkynes, addition reaction of – hydrogen, halogens, hydrogen halides and water. Aromatic hydrocarbons: Introduction, IUPAC nomenclature; Benzene: resonance, aromaticity, chemical properties: mechanism of electrophilic substitution— nitration, sulphonation, halogenation, Friedel Craft’s alkylation and acylation; directive influence of the functional group in mono-substituted benzene; carcinogenicity and toxicity. |
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