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Ace NEET-UG with our guided mentored learning program

Step 1: Understand the Exam Pattern and Syllabus:

- Familiarize yourself with the NEET UG exam pattern, including the number of questions, marking scheme, and duration of the exam.

 

- Study the detailed syllabus covering Physics, Chemistry, and Biology (Botany and Zoology) prescribed by the National Testing Agency (NTA).

  Step 3: Gather Study Materials:

   - Acquire high-quality study materials such as textbooks, reference books, and online resources specifically designed for NEET UG preparation.

   - Utilize previous years' question papers and mock tests to practice solving questions within the stipulated time frame and simulate exam conditions.

Step 5: Practice Regularly:

  - Dedicate ample time to regular practice sessions to reinforce your learning and improve problem-solving skills.

   - Solve a variety of questions covering different difficulty levels to enhance your proficiency in each subject.

Step 2: Create a Study Plan:

- Develop a structured study plan that allocates sufficient time for each subject based on your strengths and weaknesses.

   - Divide your study sessions into smaller, manageable tasks and set realistic goals to track your progress effectively.

Step 4: Focus on Conceptual Understanding:

  - Emphasize understanding the underlying concepts rather than rote memorization.

   - Clarify doubts and seek guidance from teachers, mentors, or online forums whenever necessary to strengthen your conceptual clarity.

Step 6: Revision and Review:

 - Allocate time for regular revision of previously covered topics to ensure retention and reinforce learning.

   - Review your performance in practice tests and identify areas of improvement to focus your efforts effectivel

Step 7: Stay Updated and Remain Consistent:

   - Stay updated with any changes or updates in the NEET UG exam pattern, syllabus, or important announcements released by the NTA.

   - Maintain consistency in your study routine, avoiding procrastination, and ensuring regularity in your preparation efforts.

Step 9: Analyze and Learn from Mistakes:

 - Analyze your performance in practice tests and identify common mistakes or areas requiring improvement.

   - Learn from your mistakes, adapt your study strategies accordingly, and implement corrective measures to avoid repeating them in the future.

Step 8: Take Care of Your Health and Well-being:

   - Prioritize your physical and mental well-being by maintaining a balanced diet, getting adequate sleep, and engaging in stress-relieving activities such as exercise or meditation.

   - Strike a balance between study and leisure time to prevent burnout and maintain focus and productivity.

Step 10: Stay Confident and Positive:

 - Maintain a positive attitude and believe in your abilities to succeed in the NEET UG exam.

   - Stay confident, stay focused, and approach the exam with a calm and composed mindset on the day of the examination.

THINK NEET UG THINK The Guidance Academy!

At Guidance Academy, we strive to provide comprehensive information and exceptional content to assist you on your journey towards the National Eligibility cum Entrance Test for Undergraduates (NEET-UG). We aim to equip you with the necessary resources and support to excel in this competitive examination.

About NEET UG

NEET UG is the gateway for aspiring medical and dental students to secure admission into prestigious medical colleges across India. It is conducted annually by the National Testing Agency (NTA) for admission to MBBS, BDS, and other undergraduate medical courses in approved/recognized medical/dental colleges in India.

Our Services:

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Detailed Exam Information:

Explore comprehensive details about NEET UG, including exam pattern, syllabus, eligibility criteria, important dates, and examination centers.

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Expert Guidance:

Benefit from guidance and mentorship provided by experienced educators and subject matter experts to enhance your preparation strategy and performance.

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Success Stories

Gain inspiration from success stories of past candidates who have excelled in NEET UG, providing insights and motivation for your own journey.

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Preparation Resources

Access a wide array of study materials, including practice questions, mock tests, and expert-curated study plans tailored to meet your individual needs.

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Latest Updates

Stay informed about the latest announcements, news, and updates regarding NEET UG, ensuring you are well-prepared and up-to-date with any changes.

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Interactive Learning

Interactive Learning:** Engage in interactive sessions, webinars, and workshops conducted by industry professionals to strengthen your understanding and resolve any queries you may have

Why Choose THE Guidance Academy For NEET-UG preparation?

Comprehensive Support

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We offer comprehensive support throughout your NEET UG preparation journey, from initial planning to exam day.

Quality Content

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Our content is meticulously curated by experts to ensure relevance, accuracy, and effectiveness in aiding your preparation efforts.

Personalized Approach

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We understand that each student is unique, and thus, we provide personalized guidance and resources tailored to your strengths, weaknesses, and learning preferences.

Proven Track Record

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Benefit from our track record of success, with many of our students securing top ranks and admissions into premier medical colleges across India.

Community Engagement

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Join a vibrant community of aspirants, mentors, and educators, fostering collaboration, support, and camaraderie throughout your preparation journey.

Join us at The Guidance Academy and embark on your path to success in the NEET UG examination. Let us guide you towards a bright and fulfilling future in the field of medicine and healthcare.

FOR CLASS XII STUDENTS OR XII PASSING STUDENTS

NEET ONE YEAR PROGRAM

  • 900 HOURS CLASSROOM COACHING DURATION.

  • OFFLINE LIVE CLASSROOM COACHING.

  • Online Sessions are also available.

  • COMPREHENSIVE STUDY MATERIAL PCB

  • FUNDAMENTALS+ADVANCED CONCEPTS

  • CURATED ASSIGNMENTS

  • FREQUENT DOUBT CLEARANCE

  • WEEKLY TEST SESSIONS.

  • FREQUENT QUESTION SESSIONS

  • PYQ'S DISSCUSSIONS

  • CBSE CLASS XI + CLASS XII TOPICS

  • NEET FULL SYLLABUS 11TH + 12TH

  • MIND MAPS

  • DPP'S INCLUDED

  • EFFECTIVE NOTE MAKING TECHNIQUES

  • PERIODIC MOTIVATIONAL LECTURES

  • CBSE TEST SERIES INCLUDED

  • NEET TEST SERIES INCLUDED

  • LIBRARY FACILITY

  • AC CLASSROOMS

FOR CLASS XI STD. STUDENTS

  • 1800 HOURS CLASSROOM COACHING DURATION.

  • OFFLINE LIVE CLASSROOM COACHING.

  • ONLINE SESSIONS ALSO AVAILABLE.

  • COMPREHENSIVE STUDY MATERIAL PCB

  • FUNDAMENTALS+ADVANCED CONCEPTS

  • FREQUENT DOUBT CLEARANCE

  • WEEKLY TEST SESSIONS.

  • FREQUENT QUESTION SESSIONS

  • PYQ'S DISSCUSSIONS

  • CBSE CLASS XI + CLASS XII TOPICS

  • NEET FULL SYLLABUS 11TH + 12TH

  • MIND MAPS

  • DPP'S INCLUDED

  • EFFECTIVE NOTE MAKING TECHNIQUES

  • PERIODIC MOTIVATIONAL LECTURES

  • CBSE TEST SERIES INCLUDED

  • NEET TEST SERIES INCLUDED

  • LIBRARY FACILITY

  • AC CLASSROOMS

HOW TO CRACK NEET -UG

STEP 1
CONCEPT LEARNING
NUMERICAL APPLICATION
STEP 2
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ADVANCED CONCEPT LEARNING
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CURATED ASSIGNMENTS
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STEP 3
DOUBT SESSIONS
PERIODIC TEST
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STEP 4
PYQ'S DISCUSSION
DPP'S
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STEP 5
SKILL DEVELOPMENT
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TEST SERIES
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Salary after NEET UG

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The salary of a medical professional after completing NEET UG can vary depending on various factors such as specialization, experience, location, type of employment, and the reputation of the institution or organization. Here's a general overview of the salary range for different medical professions:

 
1.MBBS Doctors:

After completing MBBS through NEET UG, doctors can expect an initial salary ranging from ₹40,000 to ₹70,000 per month in government hospitals or clinics. In private hospitals, the salary may vary widely based on factors such as experience and the reputation of the hospital, with senior doctors earning significantly higher salaries.

2. Specialists (MD/MS):

Doctors who pursue specialization after MBBS, such as MD (Doctor of Medicine) or MS (Master of Surgery), can command higher salaries. The salary for specialists can range from ₹1 lakh to ₹2 lakhs per month, depending on their area of specialization, experience, and the institution they work for.

3. Dentists:

Dentists who qualify through NEET UG can expect a starting salary of around ₹30,000 to ₹50,000 per month in government hospitals or private dental clinics. With experience and expertise, dentists can earn higher salaries, especially in private practice or specialized dental clinics.

4. Medical Consultants:

Experienced doctors who establish their own private practice or work as medical consultants can earn significantly higher salaries. The earnings of medical consultants can vary greatly depending on factors such as patient volume, reputation, and specialization, with top consultants earning several lakhs per month.

5. Research and Academia:

Medical professionals who pursue careers in research or academia after NEET UG may initially earn lower salaries compared to clinical practitioners. However, with advanced degrees, publications, and research grants, they can secure lucrative positions in research institutions, universities, or pharmaceutical companies, with salaries ranging from ₹50,000 to ₹1 lakh per month or more.

6. Government Positions:

 Doctors who choose to work in government institutions, such as medical colleges, public hospitals, or health departments, enjoy the benefits of job security, pension schemes, and additional allowances. Salaries for government doctors can range from ₹60,000 to ₹1.5 lakhs per month, depending on their rank, experience, and location.Overall, the salary prospects for medical professionals after NEET UG are promising, with ample opportunities for career growth, specialization, and earning potential in both public and private sectors.

FAQ FOR NEET-UG EXAM

1. Q: What is NEET-UG?

A: NEET-UG is the National Eligibility cum Entrance Test for Undergraduate medical and dental programs in India.2.

2Q: Who conducts the NEET-UG exam?

A: The National Testing Agency (NTA) conducts the NEET-UG exam.

3. Q: What is the eligibility criteria for appearing in NEET-UG?

 A: Candidates must have passed or be appearing in their 10+2 examination with Physics, Chemistry, Biology/Biotechnology, and English as compulsory subjects to be eligible for NEET-UG.

4. Q: How many attempts are allowed for NEET-UG?

A: Candidates can attempt NEET-UG a maximum of three times until the age of 25 years (for General category).

5. Q: What is the syllabus for NEET-UG?

A: The syllabus for NEET-UG includes topics from Physics, Chemistry, and Biology based on the 10+2 curriculum.

6. Q: How should I prepare for NEET-UG?

A: Preparation for NEET-UG requires thorough understanding of concepts, regular practice, solving previous years' question papers, and taking mock tests.

7. Q: What are the application dates for NEET-UG?

 A: The application dates for NEET-UG are usually announced by the National Testing Agency (NTA) and may vary each year.

8. Q: What is the exam pattern for NEET-UG?

A: NEET-UG exam pattern includes multiple-choice questions (MCQs) from Physics, Chemistry, and Biology/Biotechnology.

9. Q: How are the ranks calculated in NEET-UG?

 A: The ranks in NEET-UG are calculated based on the marks obtained by candidates in the exam.

10.Q: What are the counseling procedures after qualifying NEET-UG?

A: After qualifying NEET-UG, candidates can participate in centralized counseling conducted by MCC (Medical Counseling Committee) for admission to MBBS, BDS, and other medical/dental courses in various colleges across India.

11. Q: Can I get admission to foreign universities through NEET scores?

A: Some foreign universities accept NEET scores for admission to undergraduate medical and dental programs. However, specific requirements vary for each university.

12. Q: Are there any scholarships available for NEET-UG qualified candidates?

A: Yes, various scholarships are available for NEET-UG qualified candidates, including those offered by government organizations, private institutions, and individual colleges

13. Q: How can I stay updated with NEET-UG-related information and announcements?

A: Candidates can stay updated with NEET-UG-related information by regularly checking the official websites of NTA, MCC, and other relevant authorities, as well as by subscribing to official notifications and newsletters.

National Medical Commission
(Undergraduate Medical Education Board)

PHYSICS

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UNIT I: PHYSICS AND MEASUREMENT

Units of measurements. System of Units, , S I Units, fundamental and derived units, least count.significant figures, Errors in measurements , Dimensions of Physics quantities. dimensionalanalysis, and its applications

UNIT 2: KINEMATICS

The frame of reference, is motion in a straight line. Position- time graph. speed and velocity: Uniform and non-uniform motion. average speed and instantaneous velocity. unilbrmlvaccelerated motion. velocity-time, position-time graph, relations lor uniformly acceleratedmotioir- Scalars and Vectors. Vector. Addition and subtraction, , scalar and vector products. UnitVector. Resolution of a Vector. Relative Velocity. Motion in a plane, Projectile Motion. UnifbrmCircular Motion.

UNIT3: LAWS OF MOTION

Force and inertia, Newton's First law of motion: Momentum, Newton,s Second Law of motion,Impulses: Newton's Third Lar,v of motion. Law of conservation of linear momentum and itsapplications. Equilibrium of concurrent forces.Static and Kinetic flriction, larvs of friction. rolling friction.Dynamics of uniform circular motion: centripetal force and its applications: vehicle on a levelcircular road. vehicle on a banked road.

UNIT 4: WORK, BNERGY, AND POWER

Work done by a constant force and a variable force; kinetic and potential energies. work-energytheorem, power.The potential energy of spring conservation of mechanical energy. conservative and nonconservative forces; motion in a vertical circle: Elastic and inelastic collisions in one and trvodimensions.

UNIT 5 : ROTATIONAL MOTION

Centue of the mass of a two-particle system, Centre of the mass of a rigid body: Basic conceptsof rotational motion; moment of a force; torque, angular momentum, conservation of angularmomentum and its applications;The moment of inertia, the radius of gyration, values of moments of inertia forsimple geometricalobjects, parallel and perpendicular axes theorems. and their applications. Equitibrium of rigidbodies. rigid body rotation and equations ofrotational motion , comparison oflinear and rotationalmotions.

UNIT 6: GRAVITATION

The universal law of gravitation. Acceleration due to gravity and its variation with altitude anddepth. Kepler's law oi planetary motion. Gravitational potential energy; gravitational potential.Escape velocity, Motion ofa satellite, orbital velocity, time period and energy ofsatellite.

UNIT 7: PROPERTIES OF SOLIDS AND LIQUIDS

Elastic behaviour, Stress-strain relationship, Hooke's Law. Young's modulus, bulk modulus,modulus of rigidity. Pressure due to a tluid column; Pascal's law and its applications. Effect ofgravity on fluid pressure.Viscosity. Stokes' law. terminal velocity, streamline, and turbulent flow.critical velocityBemoulli's principle and its applications.Surface energy and surface tension, angle of contact, excess of pressure across a curved surface,application of surface tension - drops, bubbles, and capillary rise. Heat, temperature, thermalexpansion; specific heat capacity, calorimetry; change of state, latent heat. Heat tansferconduction, convection, and radiation.

UNIT 8: THERMODYNAMICS

Thermal equilibrium, zeroth law of thermodynamics, the concept of temperature. Heat, work, andintemal energy. The first law of thermodynamics, isothermal and adiabatic processes.The second law of thermodynamics: reversible and irreversible processes.

UNIT 9: KIIIETIC THEORY OF GASES

Equation of state of a perfect gas, rvork done on compressing a gas, Kinetic theory of gases -assumptions, the concept of pressure. Kinetic interpretation of temperature: RMS speed of gasmolecules: Degrees of freedom. Law of equipartition ofenergy and applications to specific heatcapacities ofgases; Mean free path. Avogadro's number.

UNIT 10: OSCILLATIONS AND WAVES

Oscillations and periodic motion - time period, frequency, displacement as a function of time.Periodic functions. Simple harmonic motion (S.H.M.) and its equation; phase: oscillations of aspring -restoring force and force constant: energy in S.H.M. - Kinetic and potential energies;Simple pendulum - derivation of expression for its time period:Wave motion. Longitudinal and transverse waves, speed of travelling wave. Displacementrelation for a progressive wave. Principle ofsuperposition ofwaves, reflection ofwaves. Standingwaves in strings and organ pipes, fundamental mode and harmonics- Beats

UNIT 11: ELECTROSTATICS

Electric charges: Conservation ofcharge. Coulomb's law forces between two point charges, forcesbetween multiple charges: superposition principle and continuous charge distribution.Electric field: Electric field due to a point charge, Electric field lines. Electric dipole, Electric fielddue to a dipole. Torque on a dipole in a uniform electric field' Electric flux' Gauss's law and its applications to find field due to infnitely long uniformly charged straight wire, uniformly charged infinite plane sheet, and uniformly charged thin spherical shell. Electric potential and its calculation for a point charge, electric dipole and system of chargesl potential diference, Equipotential surfaces, Electrical potential eneigy ofa system of two poinl charges and of electric dipole in an electrostatic field. conductors and insulators. Dielectrics and electric polarization, capacitors and capacitances,, the combination ofcapacitors in series and parallel, capacitance ofa parallel plate capacitor with and without dielectric medium bet*'een the plates. Energy stored in a capacitor.

UNIT 12: CURRENT ELECTRICITY

Electric current. Drift velocity, mobility and their relation *ith electric current.. Ohm,s law.Electrical resistance.. v-l characteristics of ohmic and non-ohmic conductors. Electrical energyand power' Electrical resistiviry and conductivity. Series and parallel combinations of resistors; Temp€rature dependence of resistance.Internal resistance, potential difference and emf of a cell, a combination of cells in series and parallel. Kirchhoffs raws and their applications. wheatstone bridge. Metre Bridge.

UNIT 13: MAGNETIC ETFECTS oF CURRENT AND MAGNETISM

Biot - Savart law and its application to current carrying circular loop. Ampere,s larv and its applications to infinitely long current carrying straight wire and solenoid. Fo."e on a movingcharge in uniform magnetic and electric fields.Force on a current-carrying conductor in a uniform magnetic field. The force between two parallel currents carrying conductors-definition of ampere. Torque experienced by a current loop in auniform magnetic field: Moving coil galvanometer, its sensitivity, and conversion to ammeter and voltmeter.Current loop as a magnetic dipole and its magnetic dipole moment. Bar magnet as an equivalent solenoid. magnetic field lines; Magnetic fierd due to a magneric dipole (bar magnet) arong its axis and perpendicular to its axis. Torque on a magnetic dipole in a unifor- .ugn.,i" field. para-' dia- and ferromagnetic substances with examples, effect of temperu,*. on.Jgn.,ic properties.

UNIT I4: ELECTROMAGNETIC INDUCTI,N AND ALTERNATING .URRENTS

Electromagnetic induction: Faraday's law. Induced emf and cunent: Lenz,s Law, Eddy currents. Self and mutuar inductance. Artemating cunents, peak and RMS varue of altemating current/ voltage: reactance and impedance: LCR series ci.cuit, ,esonance: power in AC circuits, wattless current. AC generator and transformer.

UNIT 15: ELECTROMAGNETIC WAVES

Displacement current. Electromagnetic waves and their characteristics, Transverse nature of electromagnetic waves, Electromagnetic spectrum (radio waves, microwaves, infrared, visibre, ultraviolet. X-rays. Gamma rays), Applications of e.m. waves.

UNIT l6: OPTICS

Reflection of light, spherical minors, morror formura. Refraction of right at prane and sphericar surfaces, thin lens formula and lens maker formura. Totar intemal reflection and its applications. . Magnification. Power of a Lens. Combination of thin lenses in contact. Refraction of light tkough a prism. Microscope and Astronomical Telescope (reflecting and refracting ) and their magnifying powers. Wave optics: wavefront and Huygens' principle. Laws ofreflection and refraction using Huygens principle. Interference, Young's double-slit experiment and expression for fringe width, coherent sources, and sustained interFerence of light. Diffraction due to a single slit, width of central maximum.. Polarization, plane-polarized light: Brewster's law, uses of plane-polarized light and Polaroid.

UNIT I7: DUAL NATURE OF MATTER AND RADIATION

Dual nature of radiation. Photoelectric effect. Hertz and Lenard's observations; Einstein'sphotoelectric equation: particle nature oflight. Matter wbves-wave nature of particle, de Broglierelation..

UNIT 18: ATOMS AND NUCLEI

Alpha-particle scattering experiment; Rutherford's model of atom; Bohr model, energy levels'hydrogen spectrum. Composition and size of nucleus, atomic masses, Mass-energy relation, massdefect; binding energy per nucleon and its variation with mass number, nuclear fission, and fusion.

UNIT 19: ELECTRONIC DEVICES

Semiconductors; semiconductor diode: I-V characteristics in forward and reverse bias; diode as arectifier; I-V characteristics ofLED. the photodiode, solar cell, and Zener diode; Zener diode asa voltage regulator.. Logic gates (OR. AND. NOT. NAND and NOR).

UNIT 20: EXPERIMENTAL SKILLS

Familiarity with the basic approach and observations of the experiments and activities:

1. Vemier calipers-its used to measure the internal and external diameter and depth of a vessel.

2. Screw gauge-its use to determine thickness diameter of thin sheet/wire'

3. Simple pendulum-dissipation of energy by plotting a graph between the square of amplitude and time

4. Metre Scale - the mass of a given object by the principle of moments'

5. Young's modulus of elasticity of the material of a metallic wire'

6. Surface tension of water by capillary rise and effect of detergents,

7. Co-efficient of Viscosity of a given viscous liquid by measuring terminal velocity of a given spherical body'

8. Speed of sound in air at room temperature using a resonance tube

9. Specific heat capacity of a given (i) solid and (ii) liquid by method of mixtures.

10. The resistivity of the material of a given wire using a metre bridge'

11. The resistance of a given wire using Ohm's law'

12. Resistance and figure of merit of a galvanometer by half deflection method.

13. The focal length of;

(I)   Convex mirror

(ii)  Concave mirror, and

(iii) Convex lens, using the parallax method.

14. The plot ofthe angle deviation vs angle of incidence for a triangular prism'

15. Refractive index of a glass slab using a travelling microscope.

16. characteristic cues of a p-junction diode in forward and reverse bias

17. characteristic cues of Zener diode and finding reverse breakdown voltage.

18. Identification of Di.de. LED,. Resistor. A capacitor from a mixed collection of such items

CHEMISTRY

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PHYSICAL CHEMISTRY

UNIT 1: SOME BASIC CONCEPTS IN CHEMISTRY

Matter and its nature, Dalton's atomic theory: Concept of atom, molecule, element. andcompound:: Laws of chemical combination; Atomic and moleculat masses, mole concept, molarmass, percentage composition, empirical and molecular formulae: Chemical equations andstoichiometry

UNIT 2: ATOMIC STRUCTURE

Nature of electromagnetic radiation, photoelectric effect; Spectrum of the hydrogen atom. Bohrmodel ofa hydrogen atom - its postulates, derivation ofthe relations for the energy ofthe electronand radii of the different orbits, limitations of Bohr's model; Dual nature of r,latter, de Broglie'srelationship. Heisenberg uncertainty principle. Elementary ideas ofquantum mechanics, quantummechanics, the quantum mechanical model of the atom, its important features. Concept of atomicorbitals as one-electron wave functions: Variation ofY and Y2 with r for ls and 2s orbitals:variousquantum numbers (principal, angular momentum, arrd magnetic quantum numbers) and theirslgnificance; shapes of s, p, and d - orbitals, electron spin and spin quantum number: Rules forfilling electrons in orbitis - Aufbau principle. Pauli's exclusion principle and Hund's rule,electronic configuration of elements, extra stability of half-filled and completely filled orbitals'

UNIT 3: CHEMICAL BONDINC AND MOLECULAR STRUCTURE

Kossel - Lewis approach to chemical bond formation, the concept of ionic and covalent bonds'Ionic Bonding: Formation of ionic bonds, factors affecting the formation of ionic bonds;calculation of lattice enthalPY.covalent Bonding: concept of electronegativity. Fajan's rule, dipole moment: valence ShellElectronPairRepulsion(VSEPR)theoryandshapesofsimplemolecules.Quantum mechanical approach to covalent bonding: Valence bond theory - its important f'eatures.the concept of hybridization involving s, p, and d orbitals; Resonance'Molecular orbital Theory - Its important features. LCAOs, 'types of molecular orbitals(bonding, antibonding), sigma and pi-bonds, molecular orbital electronic configuralions ofhomonuclear diatomic molecules, the concept ofbond order, bond length, and bond energy'Elementaryideaofmetallicbonding.Hydrogenbondingandisapplications.

UNIT 4: CHEMICAL THERMODYNAMICS

Fundamentals of thermodynamics: system and surroundings, extensive and intensive properties'state functions, types of processes'

​

The first lew of thermodynamics - concept of work, heat intemal energy and enthalpy, heat capacity , molar heat capacity Hess,s law of constant heat summation ;Enthalpies of bond

dissociation, combustion' formation, atomization. sublimation. phase transition, hydration. ionization. and solution.

The second raw of thermodynamics - Spontaneity of processes: AS ofthe universe and AC of the system as criteria for spontaneity. AG" (Standard'Gibbs energy change) and equiribrium constant.

UNIT 5: SOLUTIONS

Different methods for expressing the concentration of sorution - morarity, molarity, more fraction. percentage (by volume and mass both), the vapour pressure ofsolutions and Raoult,s law - Ideal and.non-ideal solutions, vapour pressure - composition, plots for ideal and non-ideal solutions: colligative properties of dirute sorutions - a rerative lowering of vapour pressure, depression ormassfreezing point' the elevation of.boiring point anJ o.,,o,i|'p."rrr..; Determination of morecurarsignificance.using colligative properties; Abnormal uutr" or .it* mass, van,t Hoff factor and its

UNIT 6: EQUILIBRIUM

Meaning of equilibrium, the concept of dynamic equilibrium

Equilibria involving physical processes: SolidJiquid, Henry,s liquid - gas and sorid_gas equilibria, law. General characteristics of equilibria

Equilibrium constants (K, involving chemical processes: Law of chemical equilibrium, equilibrium and K") and their significance, the significance of aG -j equilibrium, oc" in chemical factors affecting requiring--rum .or."n, ration, pressure, temperature, catalyst; Le Chatelier,s the effect of principle.

Ionic equilibrium: weak. and strong electrolytes, acids and bases in-action of erectroryes, various concepts of equilibria (including 1461"nius. Brons-ted - Lorvry ira twis; and their ionization, acid-base multistage ionization) 

UNIT 7 REDOX REACTIONS And ELECTROCHEMISTRY

Electronic concepts of oxidation .xassigning oxidation reactions, oxidation number, rules for number, balancing of redo Electrolytic and metallic conduction, conductance and their in electrolytic solutions, molar conductivities variation with concentration: Kohlrausch,  and its applications. Electrochemical cells - Electrolytic and Galvanic cells, different potentials including types of electrodes, electrode standard- electrode potential;ari- cell and its measurement: cell and colour reactions, emf of a Garvanic Nemst"q, action il potential and Gibbs' energy ... change: Jaccumurator; Fuel cars.

UNIT 8: CHEMICAL KINETICS

Rate of chemical reaction, factors affecting the rate of reactions: concentration, pressure and temperature. catalyst: elementary and complex rate law, and molecularity of reactions. rate constant and its units, are  forms of zero and first-order reactions. their characteristics and half-lives, and the effect of temperature on the rate oi reactions. Arrhenius theory. activation energy and its calculation, collision theory of bimolecular gaseous reactions (no derivation)

UNIT 9: CLASSITICATION OF ELEMENTS AND PERIODICITY IN PROPERTIES

Modem periodic law and present form ofthe periodic table. s, p. d and fblock elements- periodictrends in properties of elements atomic and ionic radii. ionization enthalpy, electron gainenthalp)'. valence. oxidation states. and chemical reactivity'

UNIT I0: P- BLOCK ELEMENTS

Group -13 to GrouP 18 ElementsGeneral Introduction: Electronic configuration and general trends in physical and chemicalproperties of elements across the periods and down the groups; unique behaviour of the firstelement in each grouP.

UNIT ll: d - and f- BLOCK ELEMENTS

Transition Elements General introduction, electronic configuration, occulrence and characteristics, general trends in properties ofthe first.row transition elements - physical properties, ionization enthalpy, oxidation states. atomic radii. colour. catalytic behaviour. magnetic properties, complex formation. interstitial compounds. alloy formation: Preparation, properties,andusesofKzCrzol.and KMnOr. inner Transition Elements Lanthanoids-Electronic Configuration, oxidation states, and lanthanoid contraction. Actinoids - Electronic configuration and oxidation states

UNIT l2: CO-ORDINATION COMPOUNDS

Introductiontocoordinationcompounds.Wemer, theory; ligands, coordination number. denticity. chelation; IUPAC nomenclature of mononuclear coordination compounds' isomerism: Bonding.ValencebondapproachandbasicideasofCrystaltieldtheory,colourandmagneticproperties; lmportance of oico-ordination compounds (in qualitative analysis. extraction of metalsand in biological sYstems)'

UNIT 13: PURIFICATION AND CHARACTERISATION OF ORGANIC COMPOIJNDS

Purification - Crystallization. sublimarion'chromatography - principles and their applications'distillation, differential extraction, and qualitative analysis - Detection of nitrogen, sulphur' phosphorus' and halogens 

Quantitative analysis (basic principles only) - Estimation of carbon. hydrogen. nitrogen. halogens. sulphur. phosphorus. calculations of empirical formulae and molecular formulae: Numerical oroblems in organic quantitative analysis,sis.

UNIT I4:SOME BASIC PRINCIPLES OF oRGANIC CHEMISTRY

Tetra\ralency of carbon: Shapes of simple morecules - hybridization (s and p): crassification of organic compounds based on f,nctional groups: and those containing haloge( o*yg"n. nit.og"n. and sulphur; Homorogous series: Isomerism - structural and stereoisomers. 

Nomenclature (Trivial and IUpAC) Col'aient bond fission - Homolytic and heterolytic: free radicals. carbocations. and carbanions: stability ofcarbocations and free radicals. electiophires. una nr.t.opiir... "- " *. Electronic displacement in a covalent bond - Inductive efl'ect, electromeric efl.ect. resonance. and hyperconjugation. Common types of organic reactions- Substitution. addition. eliminatioir, and rearranqement.

UNITS 15: HYDROCARBONS

Classification isomerism. IUPAC nomenclature, general methods of preparation, properties, and reactions.Alkanes - Conformations: Sawhorse and Newmanhalogenation of alkanes.projections (of ethane): Mechanism oiAlkenes - Geometrical isomerism: Mechanism of electrophilic addition: addition of hydrogen. halogens, water. hydrogen halides (Markownikoffs and peroxideOronofysisand poll merization.Polymerization.Alkynes - Acidic character: Addition of hydrogen. halogens. water. and hydrogen halides:electrophilicAromatic hydrocarbons - Nomenclature. benzene - structure and aromaticity, Mechanism of substitution: halogenation, nitration.Friedelcraft's alkylation and acylation, directive influence of the functional group in mono-substituted benzene.

UNIT l6: ORGANIC COMPOUNDS CONTAINING HALOGENS

General methods of preparation, properties, and reactions; Nature of C_X bond: Mechanisms of reactions.Uses; Environmental effects of chloroform, iodoform lions, and DDT

UNIT 17: ORGANIC COMPOUNDS CONTAINING OXYGEN

General methods of preparation, properties, reactions, and uses.

ALCOHOLS, PIIENOLS, and Ethers 

Alcohols: Identification of primary, secondary, and tertiary alcohols: mechanism of dehydration. Phenols: Acidic nature, electrophilic substitution reactions: halogenation. nitration and sulphonation. Reimer - Tiemann reaction. Ethers: Structure. Aldehyde and Ketones: Nature of carbonyl group; Nucleophilic addition to >c:o group' relative reactivities of aldehydes and ketones; Important reactions such as - Nucleophilic addition reactions (addition of HCN. NH. and its derivatives), Grignard reagent; oxidation: reduction (wolf Kishner and Clemmensen); the acidity of cr.-hydrogen. aldol condensatiorl canniz.zero reaction. Haloform reaction, Chemical tests to distinguish between aldehydes and Ketones' CarboxYlic Acids' Acidic strength and factors affecting it

UNIT I8: ORGANIC COMPOUNDS CONTAINING NITROGEN

General methods ofpreparation. Properties, reactions, and uses'Amines: Nomenclature, classification structure, basic character, and identification ofprimary, secondary, and tertiary amines and their basic character'Diazonium Salts: Importance in synthetic organic chemistry'

UNIT 19: BIOMOLECULES

General introduction and importance olbiomolecules'CARBOHYDRATES - classitication; aldoses and ketoses: monosaccharides (glucose andfructose) and constituent monosaccharides of oligosaccharides (sucrose, lactose, and maltose)'PRoTEINS.ElementaryIdeaofo.anrinoacids,peptidebond,polypeptides.Proteins:primary.secondary, tertiary, and quatemary structure (qualitative i<Iea only), denaturation of proteins'enzymes.VITAMINS - Classillcation and functions'NUCLEIC ACIDS - Chemical constitution of DNA and RNA'Biological functions of nucleic acids'Hormones (General introduction)

UNIT 20: PRINCIPLES RELATED TO PRACTICAI, CHEMISTRY

Detectionofextraelements(Nilrogen,sulphur,halogens)inorganiccompounds;Detectionofthe following functional g.oup., hydro*yi ialcoholic and phenolic), carbonyl (aldehyde andketones) carboxyl, and amino groups in organic cotnpounds'o The chemistry involved in the preparation ofthe following:Inoiganic compounds: Mohr's salt. potash alum'Organic compounds: Acetanilide. p-r'itro acetanilide' aniline yellor'r" iodoform' ' The chemistry involved in the titrimetric exercises - Acids. bases and the use of indicators. oxalicacid vs KMnO+. Mohr's salt vs KMnO.r r Chemical principles involved in the qualitative salt analysis: cations - pb2+. cu2+. Alr*, Fe3*. zn2r, Ni2*, c02*, Ba2*, Mg2-. NHi Anions- COj-, SL.SO|-. \o3'. No2-, CI-, Br-. I-( Insoluble salts excluded). Chemical principles involved in the follorving experiments: l. Enthalpy of solution of CuSO,r 2. Enthalpy of neutralization ofsrrong acid and strong base. 3. Preparation oflyophilic and lyophobic sols. 4. Kineric study of the reaction oriodide ions with hydrogen peroxide at room temDerature.

MATHEMATICS

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UNIT 1: SETS, RELATIONS, AND FUNCTIONS:

Sets and their representation: Union, intersection, and complement of sets and their algebraic properties; Power set; Relation, Type of relations, equivalence relations, functions; one-one,into and onto functions, the composition of functions.

UNIT 2: COMPLEX NUMBERS AND QUADRATIC EQUATIONS:

Complex numbers as ordered pairs of reals, Representation of complex numbers in the form a+ ib and their representation in a plane, Argand diagram, algebra of complex number, modulus, and argument (or amplitude) of a complex number, Quadratic equations in real and complex number system and their solutions Relations between roots and co-efficient, nature of roots,the formation of quadratic equations with given roots.

UNIT3: MATRICES AND DETERMINANTS:

Matrices, algebra of matrices, type of matrices, determinants, and matrices of order two andthree, evaluation of determinants, area of triangles using determinants, Adjoint, and evaluationof inverse of a square matrix using determinants and, Test of consistency and solution ofsimultaneous linear equations in two or three variables using matrices

UNIT 4: PERMUTATIONS AND COMBINATIONS:

The fundamental principle of counting, permutation as an arrangement and combination assection, Meaning of P (n,r) and C (n,r), simple applications.

UNIT 5: BINOMIAL THEOREM AND ITS SIMPLE APPLICATIONS:

Binomial theorem for a positive integral index, general term and middle term, and simpleapplications

UNIT 6: SEQUENCE AND SERIES:

Arithmetic and Geometric progressions, insertion of arithmetic, geometric means between twogiven numbers, Relation between A.M and G.M.

UNIT 7: LIMIT, CONTINUITY, AND DIFFERENTIABILITY:

Real–valued functions, algebra of functions, polynomials, rational, trigonometric, logarithmic,and exponential functions, inverse function. Graphs of simple functions. Limits, continuity,and differentiability. Differentiation of the sum, difference, product, and quotient of twofunctions. Differentiation of trigonometric, inverse trigonometric, logarithmic, exponential,composite, and implicit functions; derivatives of order up to two, Applications of derivatives:Rate of change of quantities, monotonic-Increasing and decreasing functions, Maxima andminima of functions of one variable,

UNIT 8: INTEGRAL CALCULAS:

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UNIT 9: DIFFRENTIAL EQUATIONS

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UNIT 10: CO-ORDINATE GEOMETRY

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UNIT 11: THREE DIMENSIONAL GEOMETRY

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UNIT 12: VECTOR ALGEBRA

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UNIT 13: STATISTICS AND PROBABILITY

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UNIT 14: TRIGONOMETRY

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