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BPC Second Year

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Botany:
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Intermediate II Year - Botany
Second Year – Theory

UNIT - I Plant Kingdom: 22 Periods

Introduction and Classification of Plant Kingdom in brief. Study of the structure and life history of the following forms.Spirogyra, Rhizopus, Funaria, Pteris and Cycas.

UNIT-II Microbiology: 10 Periods

Introduction and importance of microbiology. Bacteria: Introduction, structure, nutrition, reproduction and economic importance. Viruses: Introduction, structure of TMV and Bacteriophage, multiplication, transmission, symptoms of plant viral diseases and their control measures.

UNIT-III Plant Pathology: 10 Periods

Introduction to plant pathology Symptoms, causative organism and control measures of the Following Diseases
  1. Blast of paddy
  2. Red rot of sugarcane
  3. Grain (covered) smut of Sorghum
  4. Citrus canker
UNIT-IV Plants And Human Welfare: 22 Periods

A. Crop improvement:
Aims of Crop improvement:
Methods of crop improvements: Definition, method, merits, limitations and achievements of Introduction, Selection (Mass, pureline, clonal), Hybridization and Hybrid vigour (Heterosis); Mutation (Spontaneous and induced) and Polyploidy (Euploidy and Aneuploidy) breeding and their applications in Crop improvement.

B. Biotechnology:
Definition, Scope and application of Biotechnology. Genetic Engineering – Recombinant DNA Technology. Gene Cloning, Transgenic plants, Single cell protein.
Tissue Culture: Process of tissue culture;
Anther and Embryo cultures; Applications of plant tissue culture.
Mushroom Cultivation: Food value, Types of mushrooms, Method ofCultivation of white button mushroom.


UNIT-V Plant Physiology: 04 Periods

A. Soil And Water Relations Of Plants:
  1. Soil: Definition, soil profile and components of soil.
  2. Diffusion, Imbibition, Osmosis, Plasmolysis, water potential, Absorption of water.
  3. Ascent of Sap: Definition, Cohesion – Tension theory
  4. Transpiration: Definition and types of transpiration, structure of stomata, mechanism of stomatal  movement, factors, significance. Antitranspirants.
  5. Mineral nutrition: Definition, List of macro and micronutrients, ion absorption (carrier concept
    only), Bio – fertilizers.
B. Metabolism:
  1. Enzymes: Definition, Properties and nomenclature, major groups of Enzymes (hydrolases and desmolases)
  2. Photosynthesis: Definition, photosynthetic pigments (chlorophylls, carotenoids and phycobilins); Hills reaction, Emerson enhancement effect, PSI and PSII, Calvin cylce (C 3 – cycle) Hatch and Slack pathway (C 4 – cycle); Factors influencing photosynthesis – Blackman's law of limiting factors.
  3. Respiration: Types of respiration; Mechanism of aerobic respiration: Glycolysis, Krebs cycle,    Electron transport system: Mechanism of anaerobic respiration, Alcoholic fermentation; Respiratory quotient (R.Q)
  4. Nitrogen metabolism: Introduction, Biological nitrogen fixation (Symbiotic, Non-symbiotic); Biosynthesis of proteins (Genetic code, transcription and translation).
  5. Plant growth regulators: Auxins, Gibberillins, Cytokinins, Abscisic acid and Ethylene and their physiological functions and applications in agriculture and horticulture;

Zoology
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Intermediate Ii Year - Zoology
(Effective From 2004-2005)

UNIT – I - Phylum: Chordata 8 Periods
  1. General characters and out line classification of Chordata upto classes with typical examples.
  2. Fishes : Distinctive features of cartilaginous and Bony fishes with typical examples.
  3. Amphibia : Distinctive features of Urodela, Anura and Apoda with typical examples.
UNIT –II - Reptilia, Aves And Mammalia: 6 Periods

Types of Locomotion:
  1. Types and Structure of locomotary oraganelles – Pseudopodia,Cilia and Flgellae giving examples.
  2. Amoeboid movement (Pseudopodial movement) - Sol – gel theory only.
  3. Ciliary and Flagellar movements – Synchronal and Metachronal movements
    (Eg. Paramoecium) Effective stroke and recovery stroke (Eg. Euglena).
Types of Reproduction:
  1. Asexual reproduction –Binary fission ( Transverse and longitudinal).
  2. Sexual reproduction – Conjugation in Vorticella and its significance
UNIT – III Animal Organisation. 6 Periods
  1. Reptilia: Distinctive characters of Squamata, Rhynchocephalia, Crocodilia and Chelonia with typical examples.
  2. Identification of Poisonous and Non- Poisonous Snakes, Poison apparatus, toxicity of Snake venom and treatment of snake bite including the first aid. coelom.
  3. Aves: Distintive features of Carinatae and Ratitae with typical examples.
  4. Mammalia: Distinctive features of Prototheria , Metatheria and Eutheria.

UNIT –III - Funtional Anatomy Of Rabbit – Digestive System,
Respiratory System And Circulatory System
10 Periods
  1. Digestive system of Rabbit
  2. Nutrition and Digestion
    I. Role of Vitamins and minerals in nutrition.
    II. Digestion: The sequence of digestion and absorption
  3. Respiratory system of Rabbit –Mechanism of Respiration and Transport of respiratory gases.
  4. Circulatory system of Rabbit
    I. Structure of Heart, Arterial and Venous systems
    II. Working of the heart of Rabbit
    III. Coagulation of blood.


UNIT- IV - Functional Anatomy Of Rabbit –Excretory,
Musculo Skeletal And Reproductive System
10 Periods
  1. Excretory system of Rabbit
    A. Structure and function of Nephron
    B. Urine formation and its composition
  2. Musculoskeletal system.
    A. Ultra structure and contraction of muscle-sliding filament theory only.
    B. Types of joints
  3. Reproductive system of Rabbit
    A. Fertilization
    B. Development of Rabbit upto gastrulation-gestation and viviparity.
UNIT – V - Functional Anatomy Of Rabbit Nervous And Endocrine System 8 Periods
  1. Central, Peripheral and autonomous Nervous systems in brief.
  2. Production and propagation of nerve impulse and reflex action.
  3. Endocrine system- Endocrine glands and the role of their hormones.
UNIT – VI - Genetics: 10 Periods
  1. Mendel's laws
  2. Sex determination
  3. Sex linked inheritance
  4. Regulation of gene expression
  5. Blood group inheritance
  6. Basic concepts of Animal Breeding
UNIT –VII - Organic Evolution: 10 Periods
  1. Origin of Life
  2. Theories of Organic evolution
  3. Evidences of Organic evolution
  4. Hardy -Weinberg law
  5. Synthetic theory evolution (NeoDarwinism)
UNIT –VIII - Applied Biology: 12 Periods
  1. Aquaculture
    i. List of animals of aquacultural importance in Tabular form only
    ii. Fisheries - Fish culture and rearing methods
  2. Poultry
    i. Poultry farming methods
    ii. Layers and Broilers
    iii. Poultry diseases (Bacterial,Viral and Fungal – Three each)
  3. Immunity – AIDS, Hepatitis and Allergic reactions
  4. Biotechnology ( Elementary aspects)(Transferred from First Year)
  5. Regulation of Cell cycle, Cancer biology, Stem cells (Elementary aspects) (Newly introduced)

Physics
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Intermediate Ii Year - Physics
(Only S.I.Units are to be adopted)
(With Effect from 2004-2005)

Sound 12 Periods

Characteristics of a sound note – Formation of stationary waves in stretched strings – Laws of vibrating strings – Experimental verifica-tion by Sonometer – Beats – Definition and explanation – Doppler Effect – Derivation of formula for apparent frequency in specific cases – Applications and limitations of Doppler Effect – Echoes – Absorp-tion of sound waves – Reverberations – Fundamentals of Building acoustics – Statement of Sabine's formula (Qualitative treatment only)

Ray Optics And Optical Instruments: 15 Periods

Nature of light – Newton's corpuscular theory – Huygen's wave theory – Electromagnetic wave theory, Properties of Electro-magnetic waves – Quantum theory (Elementary ideas only) –– Critical angle – Total internal reflection – Application to Optical fibres. Len's Maker's for-mula 1/f = ( m - 1) (1/R 1 + 1/R 2 ) (expression only) – Defects of images – Spherical and Chromatic aberrations and their elimination (Qualita-tive treatment) – Construction of Ramsden's and Huygen's eyepieces. Dispersion of light – Dispersive Power – Pure and impure spectra – Conditions for obtaining pure spectrum. Different kinds of spectra – Emission spectra-line, band and continu-ous spectra; Absorption spectra – Their significance; Fraunhofer lines  and their significance.


Physical Optics: 8 Periods

Interference – Coherent sources – young's double slit experiment – Applications – Diffraction – phenomenon of diffraction – Fresnel and Fraunhofer Diffraction – Applications - Polarisation – concepts of polarisation – production of plane polarised light by reflection, refrac-tion and double refraction (Polaroids).

Dynamics: 10Periods

Concept of resultant force – Apparent weight in lift – Impulse – Law of conservation of linear momentum (statement only) – Work – Power – Energy – Definition and Units – Derivation of expression for P.E & K.E – Work – Energy theorem – Law of conservation of energy – Examples – Vertically projected and freely falling bodies.

Magnetism: 5 Periods

Coulomb's inverse square law – Couple acting on a bar magnet placed in a uniform magnetic field – Magnetic moment of a magnet – Ex-pression for Magnetic induction due to a bar magnet on axial and Equatorial lines – Superposition of magnetic fields – Tangent law – Deflection Magnetometer – Comparison of magnetic moments in Tan-A and Tan-B positions by Equal distance method and null method – Verification of Inverse square law; vibration Magnetometer – Experi-mental determination of M and H.

Electrostatics: 3 Periods

Coulomb's Law – Permittivity – concept of electric field – Electric lines of force – Force on a charge in an electric field (F=Eq) – Electric potential – Potential due to point charge – potential energy of a point charge in a uniform electric field – electron volt – relation between E and V (E=V/d). Capacitance – Dielectric constant – Parallel plate capacitor – men-tion of formula for capacitance – di-electric materials (Elementary treatment) - effect of di-electric on capacity (Expressions only) – derivation of formulae for resultant capacitance, when capacitors are connected in series and parallel – Energy stored in a capacitor – effect of di-electric on the
energy – types of capacitors and their uses.

Current Electricity: 10 Periods

Ohm's Law – Ohmic and non-ohmic resistances – specific resistance – conductance – temperature dependence of resistivity – thermistor – emf of a cell – internal resistance and back e.m.f. Kirchoff's laws – statement and explanation – application to wheatstone's bridge for its balance conditions – metre bridge – prin-ciple of potentiometer – Comparison of e.m.f. of cell – determination of internal resistance of a primary cell - Series and parallel combi-nation of cells.

Rotary Motion: 10 Periods

Concepts of torque and couple – Relation between angular momentum and torque – Moment of inertia – Parallel and perpendicular axes theorems – Derivation of Expressions for M.I. of a thin rod, uniform disc, and rectangular lamina. Expressions for M.I. of sphere, circular ring and cylinder (statement of expressions only) – Law of Conservation of angular momentum with examples – Motion in vertical circle.

Thermoelectricity:: 5 Periods

Seebeck effect – peltier and Thomson effects and their coefficients – variation of thermo e.m.f. with temperature – Neutral and inversion temperatures – application of thermo couples.

Electromagnitics: 20 Periods

Oersted's experiment – Biot-Savart law – Ampere law – magnetic field near a long straight wire and at the centre of a circular coil carry-ing current (expressions only) – Tangent galvanometer principle and working – force on a moving charge in a magnetic field – f=(q.VxB) – force on a current carrying conductor in a magnetic field – force between two straight parallel conductors carrying current – definition of ampere – Fleming's left hand rule-force and torque on current loop in a magnetic field – construction and working of a moving coil galva-nometer – shunt and its uses – conversion of moving coil galvanom-eter into ammeter and voltmeter – Comparison of MCG with T.G. Electromagnetic induction – Magnetic flux and induced emf-Faraday and lenz's laws – Fleming's right hand rule – self and mutual induc-tance – Henry – Principle of transformer (Elementary ideas). a.c. current circuits – Introduction – Instantaneous, maximum and r-ms

values of a.c current – growth and decay of current in an inductor – growth and decay of charge in a capacitor – A.C. Circuits – L.C, C.R. and L.C.R. circuits.

Atomic Physics: 10 Periods

Discovery of electron-e/m of electron by Thomson's method – charge of an electron by Millikan's oil drop method (Principle only). Photoelectric effect-laws of photo electric emission – Einstein's Pho-toelectric equation and its experimental verification by Millikan's method – photo electric cells and their uses. X-ray spectra – Mosley's law and its importance – Compton effect –dual nature of matter – DeBroglie's hypothesis (concepts only)

Nuclear Physics: 10 Periods

Composition of nucleus – nuclear forces – mass defect and binding energy (Explanations with examples) – artificial transmutation of ele-ments – Discovery of neutron – nuclear fission – chain reaction – Principle and working of a nuclear reactor – Radio-Isotopes and their uses – Nuclear radiation hazards – Protective shielding – Nuclear fusion – energy of the sun and the stars (Carbon – Nitrogen cycle and Proton – Proton cycle) – elementary particles.

Semi-Conductor Devices: 8 Periods

Junction diode – depletion layer – barrier potential – forward and re-verse bias – current – voltage characteristics – junction diode as half wave and full wave rectifiers – Zener diode as Voltage regulator. Transistors pnp and npn transistors – Transistor characteristics - Tran-sistor amplifier (common emitter).


Chemistry
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Chemistry – Syllabus
Intermediate Course – Ii Year
Chemistry (Theory)


V A Group Elements: 6 Periods
  1. V A group elements – Nitrogen and Phosphorus General characteristics with special reference to Hydrides, Oxides, Halides, Structural aspect of Oxy-acids.
  2. Preparation and uses of Ammonia and super-phosphate.

VI A Group Elements: 6 Periods
  1. Oxygen and sulphur – Allotropy – General characteristics with special reference to Hydries, Oxides (SO 2 , SO 3 ) Halides, Structural aspect of Oxy acids.
  2. Preparation and properties of Ozone and Sodium thiosulphate.
VII A Group Elements: 10 Periods
  1. General characteristics of Halogens.
  2. Preparation, properties and uses of flourine and chlorine.
  3. Oxides and oxy-acids of chlorine only (only structural treatment and oxidation states).
  4. Preparation, properties and uses of Bleaching Powder.
Transition-Elements (D-Block Elements):

Definition – General characterisitcs of 3d series with special reference to variable Oxidation states, magnetic properties, colour, formation of alloys and complex compounds – Werner's theory.


Solutions: 8 Periods
  1. Methods of expressing concentration of solutions – Molarity, Molality,normality and molefraction.
  2. Vapour pressure-effect of temperature on Vapour pressure-Vapour pressure and Boiling point. Relative lowering of vapour pressure-Raoult's law (elementary treatment).
Acids And Bases:: 8 Periods
  1. Theories of Acids and Bases Lowry – Bronsted concept Lewis theory of acids and bases.
  2. Ionic product of water, PH, Buffers – Numerical problems on these, Indicators – Choice of indicators, PH-range and uses.
  3. Salt hydrolysis – Types of hydrolysis with examples.
Chemical Kinetics, Chemical Equilibrium And Energetics: 14 Periods
  1. Concepts of reaction rate, factors affecting reaction rates, Rate law, rate constant and its units. Order and Molecularity – First order rate equation and half life – Collission Theory of reaction rate (No derivation).
  2. Reversible and Irreversible reactions. Concept of chemical equilibrium – Law of Mass Action – chemical equilibrium-Kc, Kp and their relationship with respect to Ammonia and Sulphur Trioxide.
  3. Lechatelier's Principle and its application to the industrial processes like Ammonia and Sulphur Trioxide.
  4. Thermochemistry: Exothermic and Endothermic reactions with examples – Heat of reaction (the relation between DE and DH) Combustion, formation, solution and neutralisation – Hess's law of constant heat summation
Electro-Chemistry: 6 Periods
  1. Electrolytes and Non-electrolytes.
  2. Faraday's laws of electrolysis.
  3. Galvanic & Voltaic cells – representation
  4. Nernst equation (No derivation) – e.m.f. calculations.
Nuclear Chemistry:  
  1. Composition of Nucleus – Isotopes, Isotones, Isobars, Isodiaphers, Nuclear stability – Factors effecting Nuclear stability, mass defect, binding energy, Average binding energy, N/P ratio, Magic Numbers.
  2. Radio-active disintegration and its rate-Half-life and average life.
  3. Natural and artificial radio-activity, disintegration series-Group displacement law-Types of Nuclear reactions (fission and fusion)-Differences between Nuclear and Chemical reactions- Radio-active isotopes and their applications Idoine 131 , Cobalt 60 , Sodium 24 , C 14 and P 30 .
Surface Chemistry : 8 Periods
  1. Adsorption and absorption. Physical and chemical adsorption-distinguishing properties-Adsorption of gases on Metals Adsorption from solutions (Elementary treatment).
  2. Colloidal state:- True and colloidal solutions – Explanation of the terms – Dispersion medium, dispersed phase, Iyo-phillic and Iyo-phobic sols using the examples; smoke, cloud, blood, milk, starch solution and gold sol.
  3. Emulsions:- Emulsifying agent and emulsification – its applications. Miscelles – cleansing
    action of soap.
  4. Catalysis – Explanation of the terms – Homogeneous and Hetero-geneous catalysis – distinctions with suitable Examples-auto-catalysis with one example.
Carbon Compounds: 14 Periods
  1. Alkyl Halides – Nomenclature-Preparation, properties and uses of Ethyl chloride and chloroform.
  2. Oxygen compounds:- Nomenclature of Alcohols, Ethers, Aldehydes, Ketones and Carboxylic acids. Preparation, properties and uses of Ethyl Alcohol, Diethyl ether, Acetaldehyde, Acetone and Acetic acid.
  3. Nitro-compounds-Nomenclature of Amines and Nitro-compounds- Preparation, Properties and uses of Nitro-benzene and aniline.
Chemistry In Biology And Medicine: 8 Periods
  1. Brief Survey on the importance of Metals in the bio-molecules viz., Haemoglobin Cyanocobalamin (Vitamin Bl2) and Chlorophyll-basic structure, function of metal ions and uses.
  2. Common drugs used in Medicine-Acetyl Salicylic Acid (Aspirin)-Paracetamol, Methyl Salicylate (Oil of winter green) preparation and uses only.

English
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 Poetry

  1. Little Black Boy - William Blake
  2. Three Years She Grew - William Wordsworth
  3. If - Rudyard Kipling
  4. The Tiger and the Deer - Sri Aurobindo
  5. An Introduction - Kamala Das

Prose

  1. The Great Journey to the West - Romain Rolland
  2. A Tiger comes to School - R. K. Narayan
  3. The Lost Child - Mulk Raj Anand
  4. On Cloning a Human Being - Lewis Thomas
  5. Lithuania - Rupert Brooke

 Customized Passages

  1. Environmental Pollution
  2. AIDS Awareness
  3. Music

 Non-Detailed Text


Treasure Island (Abridged) - R. L. Stevenson


English Grammar
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Chemistry – Syllabus
Intermediate Course – Ii Year
Chemistry (Theory)

Objective:

To enable learners to function effectively in different academic and real life situations using skills of English (listening/speaking/reading/writing).

To develop an interest among learners for reading literature written in English and to able to communicate intelligibly.

Main Reader:
Paet-A

The course aims at helping learners to read and enjoy poetry and prose in English and appreciate the use of language in them. The linguistic skills of learners shall be developed by giving them opportunities to practice them. An attempt also has been made to reinforce and extend the vocabulary of students. Preparation of curriculum vitae filling up of forms, report writing, letter writing and such other study skills are focussed upon to enhance the students ability to use English in real life situations.
  • The total number of prose lessons shall be five.
  • The lessons should be interesting in nature and from both Indian and Western authors.
  • The selections shall be representative of different forms of literature – essay, short story, biography, non-   fiction, one-act play.
  • The prose lessons shall be on the following themes:
  1. Triumph of will/culture and heritage.
  2. Values (human/moral)
  3. Emotions/adventure
  4. Science & technology
Part-B

The total number of poems shall be five. They shall cover themes such as
  • Development of human values
  • Appreciation of nature
  • Patriotism/Co-existence / tolerance
  • Independent decision making/growth of individuality
  • Empowerment of women/social equality

 The poems prescribed shall be read and enjoyed for the ideas they present / linguistic/ literary values. They shall be from modern native or non-native writers. The maximum length of each poem shall not exceed 4 to 6 stanzas.

Part- C

n this section students shall be given passages to read, interpret and appreciate. These passages shall be called customized passages to show how authentic texts may be read even though they have not been encountered before. The poems shall be on how to read them rather than on what they contain. Graphic information and such other texts are also presented for specific reading and comprehension. The topics may be of current thematic interest such as environmental pollution, AIDS awareness and music.

Three passages shall be customized for training students in reading articles, advertisements, understanding non-verbal items like flow-chart, pie-chart, bar-chart and tables.
After reading the customized passages the students were expected to

  • Identify the topic, source and main ideas of the text
  • Recognise words from a given text
  • Interpret non-verbal items
  • Understand and respond to advertisements
  • Participate in various other language activities.

 The students shall also be presented words and one-word substitutes to extend and re-inforce their vocabulary. Some training shall also be provided in pronunciation by creating awareness about the significance of stress in English. Lists of some common words with monosyllabic, disyllabic and tri-syllabic stress shall be given for practice.

Part - D
All selections shall contain a brief write-up about

  • The author
  • The title
  • Gist/summary
  • Critical appreciation
  • Glossary
  • Check your understanding
  • Paragraph questions
  • Annotations
  • Language activities

Part-E
Supplementary Reader:
The Supplementary Reader shall be an abridged and simplified version of a novel. The novel should deal with any one of the following themes:

  1. Adventure
  2. Adolescence
  3. Rural life

Part- F
Comprehension, Composition and Communication Skills:

  1. Reading comprehension
  2. Reading advertisements
  3. Interpreting Non-verbal items
  4. Letter writing
  5. Describing on process
  6. Report writing
  7. Filling in forms
  8. Preparing curriculum vitae
  9. Note making
  10. Role – Play
  11. One word substitutes
  12. Syllable division and stress marking

The following are the prescribed lessons in Poetry, Prose and Non-detailed texts and Comprehension, Composition and Communication skills:


Book - 1
Poetry

  1. Little Black Boy – William Blake
  2. Three years she grew – William Wordsworth
  3. If - Rudyard Kipling
  4. The Tiger and the Deer – Sri Aurobindo
  5. An Introduction – Kamala Das

Prose

  1. The Great Journey to the west – Romain Rolland
  2. A Tiger comes to school – R.K. Narayan
  3. The Lost child – Mulk Raj Anand
  4. On cloning a human being – Lewis Thomas
  5. Lithuania – Rupert Brooke

Customized passages:

  1. Environmental pollution
  2. AIDS Awareness
  3. Music

 Book - 2
Supplementary Reader:
R.L. Stevenson's novel The Treasure Island, abridged by the Editorial Board of B.I.E. is prescribed as Supplementary Reader.

Book - 3
Comprehension, Composition and Communication Skills:

  1. Reading comprehension
  2. Reading advertisements
  3. Interpreting non-verbal items
  4. Letter writing
  5. Describing – process
  6. Report writing
  7. Filling – in forms
  8. Preparing curriculum vitae
  9. Note making
  10. Role – play
  11. One word substitutes
  12. Syllable division and stress marking

Sanskrit
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Sanskrit
(Under Part Ii)
A) Syllabus : (Classical-Second Language)
Paper - Ii Year
1. First Book
'Surabharathi Sushama"
Poetry : (5 Lessons)


Epic Litt : Vyasa Bharatham Santhiparva - Apaddharma Parva

Chapter 143-146

23 Verses

Descriptive Poetry : Kalidasa - Raghuvamsa

1. Canto

25 Verses

Subhashitas : Various Poets from Various books
(for Translations & Recitation)

18 Verses

Modern Poetry 'Sri Bhashyam' - Vijayasardhi    
Modern Poetry' Jatavallabhula Purushottham'

(ChitraSathakam)

10 Verses

Prose  
Ancient Sanskrit Literature - Narayana Pandita

3 Stories

7 Pages

Environmental Protection - Gullapalli - Srirama Krishna Murthy  

6 Pages

Lesson on Aids - Editorial Board  

5 Pages

Drama (Ancient Drama) - Bhasa  

16 Pages

Prose Translation Exercies - Editorial Board

8 Lessons

5 pages


Grammer

Sabdas 18
Compounds 4
Combinations 9

Second Book (Non-Detailed Text Book) 'Swamy Vivekanandaha'
Dr. Dorbala Prabhakara Sarma
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