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Pattern & Syllabus
 NEET-UG
 Syllabus of Unit Test-5
Biology
GENETICS-II : Chemical constituents of living cells: Biomolecules structure and function of
proteins, carbohydrates, lipids, nucleic acids. Molecular basis of Inheritance : Structure and
function of protein, carbohydrate lipid and Nucleic acid (Protoplasm) Search for genetic
material and DNA as genetic material; Structure of DNA and RNA; DNA packaging; DNA
replication; Central dogma; Transcription, genetic code, translation; Gene expression and
regulation-Lac Operon; Genome and human genome project; DNA finger printing. Biology
and Human Welfare (Domestication of Plants) : Improvement in food production, Plant
breeding, tissue culture, single cell protein, Biofortification. Cell Structure and Function : Cell
theory and cell as the basic unit of life; Structure of prokaryotic and eukaryotic cell; Plant cell
and animal cell; Cell envelope, cell membrane, cell wall; Cell organelles-structure and
function; Endomembrane system endoplasmic reticulum, Golgi bodies, lysosomes, vacuoles;
mitochondria, ribosomes, plastids, micro bodies; Cytoskeleton, cilia, flagella, centrioles (ultra
structure and function); Nucleusnuclear membrane, chromatin, nucleolus. Cell Division : Cell
cycle, mitosis, meiosis and their significance.
Chemistry
Surface Chemistry : Adsorption-physisorption and chemisorption; factors affecting
adsorption of gases on solids, catalysis homogeneous and heterogeneous, activity and
selectivity: enzyme catalysis; colloidal state: distinction between true solutions, colloids and
suspensions; lyophillic, lyophobic multimolecular and macromolecular colloids; properties of
colloids; Tyndall effect, Brownian movement, electrophoresis, coagulation; emulsions- types
of emulsions. SOME BASIC CONCEPTS OF CHEMISTRY : General Introduction: Important
and scope of chemistry. Laws of chemical combination, Dalton's atomic theory: concept of
elements, atoms and molecules. Atomic and molecular masses. Mole concept and molar
mass; percentage composition and empirical and molecular formula; chemical reactions,
stoichiometry and calculations based on stoichiometry. THERMODYNAMICS : First law of
thermodynamics-internal energy and enthalpy, heat capacity and specific heat,
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 state function, Second law of
thermodynamics, Gibbs energy change for spontaneous and nonspontaneous process,
criteria for equilibrium and spontaneity. Third law of thermodynamics- Brief introduction.
Physics
COLLISIONS AND CENTRE OF MASS : Impulse of a force and Impulse-Momentum
theorem, Idea about Impulsive forces, Law of conservation of linear momentum and its
applications, Elastic and inelastic collisions in one and two dimensions (Headon and Oblique
collisions), Coefficient of restitution and line of impact, Expression of loss in Kinetic energy in
inelastic collision, Centre of mass of discrete system: two-particle system and n-particle
system, Centre of mass of continuous system: General formula, Centre of mass of
symmetrical rigid bodies; centre of mass of uniform rod, Centre of mass of composite and
truncated bodies, Motion of centre of mass: Velocity, Acceleration and linear momentum
vector of centre of mass of the system, Momentum conservation and centre of mass motion.
Electromagnetic Induction : Magnetic Flux, Electromagnetic induction (Faraday's
Experiments), Faraday's law, Induced emf, induced, current and induced charge, Lenz's Law
and its applications, Static, Dynamic and Rotational Emf, Induced Electric Field and its
properties, Eddy currents, Self Induction (Coefficient of self induction (L), Growth and Decay
of Current in L-R circuits), Mutual Induction (Coefficient of Mutual induction (M), Coefficient
of Coupling (K)], AC generator, Transformer.

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New microsoft office word document

  • 1. Pattern & Syllabus  NEET-UG  Syllabus of Unit Test-5 Biology GENETICS-II : Chemical constituents of living cells: Biomolecules structure and function of proteins, carbohydrates, lipids, nucleic acids. Molecular basis of Inheritance : Structure and function of protein, carbohydrate lipid and Nucleic acid (Protoplasm) Search for genetic material and DNA as genetic material; Structure of DNA and RNA; DNA packaging; DNA replication; Central dogma; Transcription, genetic code, translation; Gene expression and regulation-Lac Operon; Genome and human genome project; DNA finger printing. Biology and Human Welfare (Domestication of Plants) : Improvement in food production, Plant breeding, tissue culture, single cell protein, Biofortification. Cell Structure and Function : Cell theory and cell as the basic unit of life; Structure of prokaryotic and eukaryotic cell; Plant cell and animal cell; Cell envelope, cell membrane, cell wall; Cell organelles-structure and function; Endomembrane system endoplasmic reticulum, Golgi bodies, lysosomes, vacuoles; mitochondria, ribosomes, plastids, micro bodies; Cytoskeleton, cilia, flagella, centrioles (ultra structure and function); Nucleusnuclear membrane, chromatin, nucleolus. Cell Division : Cell cycle, mitosis, meiosis and their significance. Chemistry Surface Chemistry : Adsorption-physisorption and chemisorption; factors affecting adsorption of gases on solids, catalysis homogeneous and heterogeneous, activity and selectivity: enzyme catalysis; colloidal state: distinction between true solutions, colloids and suspensions; lyophillic, lyophobic multimolecular and macromolecular colloids; properties of colloids; Tyndall effect, Brownian movement, electrophoresis, coagulation; emulsions- types of emulsions. SOME BASIC CONCEPTS OF CHEMISTRY : General Introduction: Important and scope of chemistry. Laws of chemical combination, Dalton's atomic theory: concept of elements, atoms and molecules. Atomic and molecular masses. Mole concept and molar mass; percentage composition and empirical and molecular formula; chemical reactions, stoichiometry and calculations based on stoichiometry. THERMODYNAMICS : First law of thermodynamics-internal energy and enthalpy, heat capacity and specific heat, 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 state function, Second law of thermodynamics, Gibbs energy change for spontaneous and nonspontaneous process, criteria for equilibrium and spontaneity. Third law of thermodynamics- Brief introduction. Physics COLLISIONS AND CENTRE OF MASS : Impulse of a force and Impulse-Momentum theorem, Idea about Impulsive forces, Law of conservation of linear momentum and its applications, Elastic and inelastic collisions in one and two dimensions (Headon and Oblique collisions), Coefficient of restitution and line of impact, Expression of loss in Kinetic energy in inelastic collision, Centre of mass of discrete system: two-particle system and n-particle system, Centre of mass of continuous system: General formula, Centre of mass of symmetrical rigid bodies; centre of mass of uniform rod, Centre of mass of composite and truncated bodies, Motion of centre of mass: Velocity, Acceleration and linear momentum vector of centre of mass of the system, Momentum conservation and centre of mass motion. Electromagnetic Induction : Magnetic Flux, Electromagnetic induction (Faraday's Experiments), Faraday's law, Induced emf, induced, current and induced charge, Lenz's Law and its applications, Static, Dynamic and Rotational Emf, Induced Electric Field and its properties, Eddy currents, Self Induction (Coefficient of self induction (L), Growth and Decay of Current in L-R circuits), Mutual Induction (Coefficient of Mutual induction (M), Coefficient of Coupling (K)], AC generator, Transformer.