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Top 100 Important Solid State Physics IIT JAM Questions for Preparation - L 4
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IIT JAM Physics Syllabus: A Complete Overview
The IIT JAM Physics syllabus is designed to test the basic knowledge of candidates aspiring for postgraduate programs in IITs and IISc. This exam checks theoretical knowledge and application skills in physics, thereby giving a complete assessment of the aspirants. Here's a detailed look at the syllabus and its components.
Core Topics in the Syllabus
1. Mathematical Methods
This section includes vectors, matrices, calculus, and differential equations. Fourier series, Laplace transforms, and complex analysis are also covered in this section, forming the basis for problem-solving.
2. Mechanics and General Properties of Matter
This section covers classical mechanics, including laws of motion, work-energy theorem, rigid body dynamics, and properties of matter such as elasticity and fluid mechanics.
3. Oscillations, Waves, and Optics
The main elements are simple harmonic motion, wave equations, and optical phenomena such as interference, diffraction, and polarization.
4. Electricity and Magnetism
Electrostatics, Gauss's law, magnetic effects of currents, electromagnetic waves, and circuits are covered.
5. Thermodynamics and Statistical Physics
Basic concepts of the thermodynamic laws, Carnot engines, entropy, and statistical distributions Maxwell-Boltzmann, Bose-Einstein are taught.
6. Modern Physics
This forms the nucleus of atomic structure, quantum mechanics, nuclear physics, and semiconductor physics.
7. Solid State Physics, Devices, and Electronics
The section deals with the concepts in crystal structure, semiconductors, diodes, transistors, and operational amplifiers.
8. Experimental Physics
In this section, evaluation is based on laboratory technique aptitude like error analysis, measuring instruments, and data interpretation.
Test Pattern
The IIT JAM Physics paper has three sections.
Section A : 30 MCQs
Section B : 10 MSQs
Section C : 20 NAT questions
The total paper carries 100 marks, with equal weightage to conceptual and application-based problems. Negative marking is there for Section A but not for Sections B and C.
Preparatory Strategy
Candidates should have a proper study plan to excel. Topics with weightage and difficulty level should be prioritized, and mock tests and previous year question papers should be practiced. Conceptual clarity and time management are the keys to success.
Conclusion
The IIT JAM Physics syllabus is designed to test the depth of knowledge and problem-solving skills in a student. It is therefore very important that a student should have an understanding of the syllabus along with proper strategic preparation. Institutes like IFAS offer great online coaching that gives students structured guidance, mock tests, and expert support for helping the aspirants in this highly competitive exam.
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Want to get IIT JAM Physics Solved Paper for JNU MSC Physics Entrance
Get Authentic Solved papers for competitive exams from Physicsbyfiziks.
Physics by fiziks provides the best IIT jam physics coaching in Delhi.
A lot of institutions and coaching classes and online websites are available that will provide you with IIT jam physics solved paper. But the authentic and updated solved papers are not always offered by all. To prepare for important examinations like jnu MSc physics entrance or Gate examinations, you will need to be guided by industry and academic experts.
Physicsbyfiziks is one such institution and website that will provide you with not only IIT jam physics solved paper but also solved papers of other competitive examinations. Get in touch with their professors to get insights into the examination process and the syllabus that you will need to prepare.
Which are the best books for IIT jam physics?
The following are some of the primary best book for iit jam physics:
1. Mechanics by H.C. Verma
2. Electrodynamics by Griffth
3. Quantum Mechanics by Beiser
4. Wave oscillations by N.K. Bajaj
5. Optics by Ajoy Ghatak
6. The Solid states by M.A. Wahab
7. Thermodynamics by Garg Bansal and Ghosh
8. The Mathematical physics by Riley
What do we discuss in our classroom program?
In class, we mainly target to complete all of the msc physics syllabus in the first semester. So that we can take class tests so that our students can move one step forward. During our classroom program, we also provide them with IIT jam physics books. These books help them build more concepts about those subjects, and they will also help you in your first semester.
MSC physics Syllabus that we teach our students in physicsbyfiziks?
Though we know that two subjects are there in the first semester, we focused on completing Mathematical Physics - 1 first. We mainly set a routine and time to complete each chapter. So that students can get time for themselves to do revisions.
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Is the concept of physics important for the IIT JAM?
Hello,
IIT JAM is national level exam conducted by the IITs and IIT faculty set the papers of the exam, so they are more focus on the conceptual knowledge sometimes the question is directly asked through the concept.
Even there are some questions in the exam which is directly asked with the different similar options only to check the student’s concept for the particular topics.
There are some important topics for the IIT JAM physics weightage wise.
Electricity & Magnetism - 20%
Thermodynamics - 14%
Mathematical Methods - 14%
Mechanics - 14%
Modern Physics - 13%
Solid State Physics, Devices and Electronics - 13%
Waves & Optics - 12%
Download IIT JAM physics previous year question papers for better preparation.
check IIT JAM physics syllabus here: IIT JAM syllabus for physics
for the IIT JAM physics reference books check below: -
IIT JAM Books For Physics Recommended By Toppers - Swarnim Shirke, AIR 1 IIT JAM Physics
Introduction to Mathematical Methods in Physics – Mary L. Boas
Concepts of Physics by H.C. Verma
Introduction to Electrodynamics by David J. Griffiths
Other reference books
Op-Amps and Linear Integrated Circuits by Ramakant A. Gayakwad
Digital Fundamentals by Flyod
Thermodynamics by Garg, Bansal and Ghosh
Introduction to Mathematical Methods in Physics – Mary L. Boas
Mechanics by D.S. Mathur
Optics by Ajoy Ghatak
Introduction to Electrodynamics by David J. Griffiths
Thermodynamics by Garg, Bansal and Ghosh
Thank You!!
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IIT JAM 2020 Chemistry (CY) Syllabus | IIT JAM 2020 Chemistry (CY) Exam Pattern
IIT JAM 2020 Chemistry (CY) Syllabus | IIT JAM 2020 Chemistry (CY) Exam Pattern Chemistry (CY): The syllabus is a very important aspect while preparing for the examination. Therefore it is advised to all the appearing candidates that they should go through the Chemistry (CY) syllabus properly before preparing for the examination. PHYSICAL CHEMISTRY Basic Mathematical Concepts: Functions; maxima and minima; integrals; ordinary differential equations; vectors and matrices; determinants; elementary statistics and probability theory. Atomic and Molecular Structure: Fundamental particles; Bohr's theory of hydrogen-like atom; wave-particle duality; uncertainty principle; Schrodinger's wave equation; quantum numbers; shapes of orbitals; Hund's rule and Pauli's exclusion principle; electronic configuration of simple homonuclear diatomic molecules. Theory of Gases: Equation of state for ideal and non-ideal (van der Waals) gases; Kinetic theory of gases; Maxwell-Boltzmann distribution law; equipartition of energy. Solid State: Crystals and crystal systems; X-rays; NaCl and KCl structures; close packing; atomic and ionic radii; radius ratio rules; lattice energy; Born-Haber cycle; isomorphism; heat capacity of solids. Chemical Thermodynamics: Reversible and irreversible processes; first law and its application to ideal and nonideal gases; thermochemistry; second law; entropy and free energy; criteria for spontaneity. Chemical and Phase Equilibria: Law of mass action; Kp, Kc, Kx and Kn; effect of temperature on K; ionic equilibria in solutions; pH and buffer solutions; hydrolysis; solubility product; phase equilibria-phase rule and its application to one-component and two-component systems; colligative properties. Electrochemistry: Conductance and its applications; transport number; galvanic cells; EMF and free energy; concentration cells with and without transport; polarography; concentration cells with and without transport; Debey-Huckel-Onsagar theory of strong electrolytes. Chemical Kinetics: Reactions of various order; Arrhenius equation; collision theory; transition state theory; chain reactions - normal and branched; enzyme kinetics; photochemical processes; catalysis. Adsorption: Gibbs adsorption equation; adsorption isotherm; types of adsorption; surface area of adsorbents; surface films on liquids. Spectroscopy: Beer-Lambert law; fundamental concepts of rotational, vibrational, electronic and magnetic resonance spectroscopy. ORGANIC CHEMISTRY Basic Concepts in Organic Chemistry and Stereochemistry: Electronic effects (resonance, inductive, hyperconjugation) and steric effects and its applications (acid/base property); optical isomerism in compounds with and without any stereocenters (allenes, biphenyls); conformation of acyclic systems (substituted ethane/n-propane/n-butane) and cyclic systems (mono- and di-substituted cyclohexanes). Organic Reaction Mechanism and Synthetic Applications: Chemistry of reactive intermediates (carbocations, carbanions, free radicals, carbenes, nitrenes, benzynes etc ...); Hofmann-Curtius-Lossen rearrangement, Wolff rearrangement, Simmons-Smith reaction, Reimer-Tiemann reaction, Michael reaction, Darzens reaction, Wittig reaction and McMurry reaction; Pinacol-pinacolone, Favorskii, benzilic acid rearrangement, dienone-phenol rearrangement, Baeyer-Villeger reaction; oxidation and reduction reactions in organic chemistry; organometallic reagents in organic synthesis (Grignard, organolithium and organocopper); Diels-Alder, electrocyclic and sigmatropic reactions; functional group inter-conversions and structural problems using chemical reactions. Qualitative Organic Analysis: Identification of functional groups by chemical tests; elementary UV, IR and 1H NMR spectroscopic techniques as tools for structural elucidation. Natural Products Chemistry: Chemistry of alkaloids, steroids, terpenes, carbohydrates, amino acids, peptides and nucleic acids. Aromatic and Heterocyclic Chemistry: Monocyclic, bicyclic and tricyclic aromatic hydrocarbons, and monocyclic compounds with one hetero atom: synthesis, reactivity and properties. INORGANIC CHEMISTRY Periodic Table: Periodic classification of elements and periodicity in properties; general methods of isolation and purification of elements. Chemical Bonding and Shapes of Compounds: Types of bonding; VSEPR theory and shapes of molecules; hybridization; dipole moment; ionic solids; structure of NaCl, CsCl, diamond and graphite; lattice energy. Main Group Elements (s and p blocks): General concepts on group relationships and gradation in properties; structure of electron deficient compounds involving main group elements. Transition Metals (d block): Characteristics of 3d elements; oxide, hydroxide and salts of first row metals; coordination complexes: structure, isomerism, reaction mechanism and electronic spectra; VB, MO and Crystal Field theoretical approaches for structure, color and magnetic properties of metal complexes; organometallic compounds having ligands with back bonding capabilities such as metal carbonyls, carbenes, nitrosyls and metallocenes; homogenous catalysis. Bioinorganic Chemistry: Essentials and trace elements of life; basic reactions in the biological systems and the role of metal ions, especially Fe2+, Fe3+, Cu2+ and Zn2+; structure and function of hemoglobin and myoglobin and carbonic anhydrase. Instrumental Methods of Analysis: Basic principles; instrumentations and simple applications of conductometry, potentiometry and UV-vis spectrophotometry; analysis of water, air and soil samples. Analytical Chemistry: Principles of qualitative and quantitative analysis; acid-base, oxidation-reduction and complexometric titrations using EDTA; precipitation reactions; use of indicators; use of organic reagents in inorganic analysis; radioactivity; nuclear reactions; applications of isotopes. Related Articles: IIT JAM 2020 Syllabus Biotechnology (BT) Syllabus Biological Sciences (BL) Syllabus Chemistry (CY) Syllabus Geology (GG) Syllabus Mathematics (MA) Syllabus Mathematical Statistics (MS) Syllabus Physics (PH) Syllabus Read the full article
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Know Iit Jam Physics Syllabus And Start the Preparation
IIT JAM exam is conducted every year by the Indian Institutes of Technology to shortlist candidates for admission in MSc and integrated PhD programs offered at colleges that accept IIT JAM scores for admission. Now, coming to IIT JAM preparation, Physics is one of the most sought after course of choice in the IIT JAM exam. Every year, around 10,000 to 15,000 students appear for the Physics paper in IIT JAM.
Thus, it is important for candidates to have a strategy in place to crack the IIT JAM Physics exam. The very first strategy to crack the exam is to know the Iit Jam Physics Syllabus. Yes, without knowing the syllabus, you cannot prepare for the exam. The syllabus will let you know what are all the topics that need to be covered to crack the exam.
Here is the Iit Jam Physics Syllabus:
· Mathematical Methods
· Solid State Physics, Devices and Electronics
· Mechanics and General Properties of Matter
· Oscillations, Waves and Optics
· Modern Physics
· Electricity and Magnetism
· Kinetic theory, Thermodynamics
These are the main sections of the IIT Jam physics syllabus. You need to analyze the sub topics of these portions and study accordingly. You should make sure to cover all these portions so that you can crack the exam. The reason is that the questions may be asked from any portion or topic, so you need to be prepared. You should prepare a timetable to complete and revise the syllabus for physics paper in IIT JAM exam. Also, while preparing the time table, you need to include enough time to solve practice and sample papers and revise important topics.
Just studying won’t help. You need to revise the portions that you have completed on the day. This will help you understand how good you can recall and remember the portions. Practicing the sample papers will help to improve your answering speed and skills. While studying the topics, you should ensure that you keep jotting down the important formulae for each topic. This will be extremely helpful at the time of revision, as you would have a consolidated list of all the important formulae. You go through this list of formulas even before start of the examination.
To crack the IIT JAM physics paper, practice is key. Therefore, you need to solve as many sample papers and take mock tests, as this will help you get hand on while preparing for the IIT JAM exam. Also, you can determine how well you have prepared for the exam and whether you need to focus on something else. Along with this, you can also increase your speed of attempting questions in the exam and formulate a time management strategy to get through the exam.
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Do we need coaching for IIT JAM Chemistry?
No, it’s not necessary. It doesn’t matter that you can prepare from coaching or yourself. The thing which matter is your passion and dedication towards your studies.
As we all know that to crack the JAM exam is a tough task. You can clear the exam by learning well with a proper planning and dedication.
Here are some preparation tips to prepare for JAM Exam.
First of all, analyze the complete syllabus of JAM Chemistry so you don’t miss any topic to prepare. And also analyze the exam pattern of the exam to get aware with the pattern of questions.
Prefer best reference books of Chemistry to prepare well for exam. Here are some good books of Chemistry which help you in IIT JAM Exam preparation.
Physical Chemistry
Atomic and Molecular Structure: Physical Chemistry–Peter W. Atkins
Theory of Gases: Physical Chemistry–Peter W. Atkins
Chemical Thermodynamics: Physical Chemistry–Thomas Engel & Phillip Reid
Chemical and Phase Equilibria: Principals of Chemical Equilibrium & Phase Rule –K.G. Denbigh
Electrochemistry: An Introduction to Electrochemistry–Samuel Glasstone
Chemical Kinetics: Chemical Kinetics – Keith J. Laidler
Solid State: Solid State–Peter W. Atkins
Adsorption: Introduction to Surface Chemistry & Catalysis – Gabor A. Somorjai
Basic Mathematical Concept: Differential Equation & Matrices–Shanti Narayan
Inorganic Chemistry
Periodic Table: Concise Inorganic Chemistry – J. D. Lee
Chemical Bonding and Shapes of compounds: Inorganic Chemistry – Meissler & Tarr
Main Group Elements (s and p blocks): Concise Inorganic Chemistry – J. D. Lee
Transition Metal (d block): Concise Inorganic Chemistry – James E. Huheey
Analytical Chemistry: Quantitative Inorganic Analysis – A. I. Vogel
Bioinorganic Chemistry: Inorganic Chemistry – James E. Huheey
Instrumental Method of Analysis: Instrumental method – Skoog, Holler & Crouch
Organic Chemistry
Basic Concepts in Organic Chemistry and Stereochemistry: Stereochemistry Conformation and Mechanism-P.S. Kalsi
Organic reaction Mechanism and synthetic applications
Organic Chemistry-Clayden, Greeves, Warner and Wothers
Organic Chemistry- Carey & Sundberg
Natural Products Chemistry: Organic Chemistry (Vol-II) – I. L. Finar
Heterocyclic Chemistry: Organic Chemistry (Vol-I) – I. L. Finar
Qualitative organic Analysis: Introduction to Spectroscopy – Pavia, Lampman, Kriz, Vyvyan
Solve previous years IIT JAM Question Papers, through this you will found your weak points and also get an idea about question types which will be asked in the exam.
Practice online mock test papers to make perfect your weak areas.
Revision is must. Revise whatever you studied and devote more time to revise important topics. Here are some important topics according to their weightage in last years question papers.
Physical Chemistry
Mole Concept:
Atomic Structure
Organic Chemistry
General Organic Chemistry
Named Reactions
Organic Synthesis
Inorganic Chemistry
Don’t be stressed, keep calm and prepare well.
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IIT JAM Chemistry 2025: Syllabus Highlights and How to Ace Each Section
Preparing for the IIT JAM Chemistry exam is a crucial step for aspiring candidates aiming to pursue a master’s program in chemistry at prestigious institutions like IITs and IISc. A thorough understanding of the IIT JAM Chemistry syllabus is essential to crack the exam. This blog will provide a detailed overview of the IIT JAM Chemistry syllabus 2025, offering insights into the important topics, sections, and study strategies.
Overview of IIT JAM Chemistry
The IIT JAM Chemistry (Joint Admission Test for M.Sc.) is a national-level examination conducted annually. It evaluates candidates' knowledge across fundamental chemistry concepts. The exam focuses on three main areas:
Physical Chemistry
Organic Chemistry
Inorganic Chemistry
The IIT JAM Chemistry syllabus 2025 is designed to ensure a balanced evaluation of theoretical knowledge and its practical application.
Detailed IIT JAM Chemistry Syllabus
Here is a breakdown of the topics included in the IIT JAM Chemistry syllabus 2025:
1. Physical Chemistry
This section deals with the principles and laws governing the physical behavior of chemical systems. Key topics include:
Basic Mathematical Concepts: Logarithms, permutations, combinations, differential calculus, integral calculus, vectors, determinants, and matrices.
Atomic and Molecular Structure: Quantum theory, atomic models, electronic configuration, molecular orbital theory, and chemical bonding.
Thermodynamics: Laws of thermodynamics, thermochemistry, chemical and phase equilibria.
Chemical Kinetics: Rate laws, reaction mechanisms, and theories of reaction rates.
Electrochemistry: Conductance, electrochemical cells, Nernst equation, and corrosion.
Surface Chemistry: Adsorption, catalysis, colloids, and macromolecules.
2. Organic Chemistry
Organic chemistry focuses on the structure, properties, and reactions of organic compounds. Topics include:
Basic Concepts: Hybridization, resonance, and aromaticity.
Reaction Mechanisms: Substitution, elimination, and addition reactions.
Stereochemistry: Chirality, optical activity, and conformational analysis.
Functional Groups: Alcohols, aldehydes, ketones, carboxylic acids, and derivatives.
Biomolecules: Carbohydrates, amino acids, peptides, proteins, and nucleic acids.
Pericyclic Reactions: Cycloaddition, sigmatropic rearrangement, and electrocyclic reactions.
3. Inorganic Chemistry
This section covers the chemistry of elements and their compounds. Key topics include:
Periodic Table Trends: Atomic and ionic radii, ionization energy, electron affinity, and electronegativity.
Chemical Bonding: VSEPR theory, hybridization, and molecular orbital theory.
Coordination Chemistry: Ligands, crystal field theory, and isomerism.
Main Group Elements: Chemistry of group elements like nitrogen, oxygen, and halogens.
Transition Metals: Properties, oxidation states, and bioinorganic chemistry.
Analytical Chemistry: Qualitative and quantitative analysis methods.
Importance of the IIT JAM Chemistry Syllabus
The JAM 2025 Chemistry syllabus ensures that students are well-prepared for advanced studies in chemistry. By focusing on fundamental principles, it builds a solid foundation for research and professional growth in the chemical sciences.
Exam Pattern for IIT JAM Chemistry
Understanding the syllabus is only the first step. You must also familiarize yourself with the exam pattern to maximize your performance.
Total Questions: 60
Question Types:
Multiple Choice Questions (MCQs)
Multiple Select Questions (MSQs)
Numerical Answer Type (NAT)
Total Marks: 100
Duration: 3 hours
Each section of the syllabus is represented in the exam, so a balanced preparation strategy is vital.
Tips to Master the IIT JAM Chemistry Syllabus
1. Plan Your Study Schedule
Divide your time among physical, organic, and inorganic chemistry based on your strengths and weaknesses.
2. Refer to Standard Textbooks
Some recommended books include:
Physical Chemistry by P.W. Atkins
Organic Chemistry by Morrison and Boyd
Concise Inorganic Chemistry by J.D. Lee
3. Practice Regularly
Solve previous years’ question papers to understand the type of questions asked.
Attempt mock tests to enhance time management and accuracy.
4. Focus on Concepts
Understanding concepts is more important than rote learning. Use visual aids like diagrams and flowcharts for better retention.
5. Revise Thoroughly
Regular revision is crucial to retain what you have studied. Create concise notes for quick revision.
Why Choose IIT JAM Chemistry?
Prestigious Opportunities: Admission to top institutions like IITs, IISc, and NITs.
Career Prospects: Opens doors to research, academia, and industries like pharmaceuticals and materials science.
Strong Foundation: Comprehensive syllabus helps develop a deep understanding of chemistry.
Final Thoughts
The IIT JAM Chemistry syllabus 2025 is your roadmap to success. With a strategic approach, dedication, and consistent effort, cracking the IIT JAM Chemistry exam becomes achievable. Focus on building a strong foundation in the core topics, practice extensively, and stay motivated throughout your preparation journey.
Success in IIT JAM Chemistry is not just about hard work but also about smart work. Master the syllabus, and you are one step closer to achieving your dream of studying at an IIT or IISc!
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Join Classroom Coaching in Jaipur
The spacial theory of relativity proposed by Einstein in 1905 called for a review of all concepts of classical physics and primarily the concepts of time and space. Therefore, this theory, in accordance with its basic contents, can be referred to as a physical study of time and space. the study is called physical because the properties of space and time are analyzed in this theory in close in close connection with the laws governing physical phenomena. the term “special” implies that this theory considers phenomena only in inertial reference frames. IIT JAM Physics We shall begin this section with a brief review of pre-relativistic physics, dwelling in particular on the problems that led to the appearance of the theory of relatively.
Basic notions of per relativistic physics: First,we shall recall those notions of space and time that are associated with Newton’s laws i.e. that underlie classical mechanics. (a) Space, which has three dimensions, obeys Euclidean geometry. iit jam physics Classroom (b) Together with three-dimensional space and independent of it, there exists time. Time is independent in the same sense that the three dime sions are independent of each other. But for all that, time relates to space through the laws of motion. Specifically, time is measured by a clock, which is basically an instrument utilizing one or another periodic process providing a time scale. Therefore, it is impossible to determine time irrespective of some periodic process, i.e. irrespective of motion. iit jam physics coaching in india (c) Dimension of solid bodies (scales) and time intervals between given events are identical in different reference frames. This corresponds to the Newtonian concept of absolute space and time, according to which their properties are assumed to be independent of the reference frame, that is, space and time are the same for all reference frames. (d) The Galieo-Newton law of inertia is assumed to be valid, according to which a body experiencing no influence from other bodies moves rectilinear and uniformly. This law maintains the existence of inertial reference frames in which Newton’s laws hold true (as well as the Galilean principle of relativity). Iit jam Physics classes
(e) From the above notions the Galilean transformation follows, expression the space-time relation of the event in different inertial reference frames. If the reference frame ‘S’ moves relative to the S frame with the velocity V and the zero time reading corresponds to the moment when the origins O and O’ of the two frames coincide, then From this it follows that the coordinates of any event are relative, i.e. have different values in different reference frames; the moment of time at which an event occurs is however the same in different frames. This testifies to the fact that time flows identically in different reference frames. That seemed to be so obvious that it was not even stated as a special postulate. From equation (1) the classical law of velocity transformation (composition) follows immediately. Where v’ and v are the velocities of a point (particle) in the S’ and S frames respectively. Hereafter, we shall limit ourselves to only two spatial coordinates x and y. The z coordinate behaves as y in all respects. (f) The Galilean principle of relatively holds; all inertial reference frames are equivalent in terms mechanics, all laws of mechanics are identical in these reference frames, or, in other words, are invariant relative to the Galilean transformations. (g) The principle of long-range action is valid: interactions between bodies propagate instantaneously, i.e. with an infinitely high velocity.
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SOLID STATE MCQ |Chemistry Class12 Chapter1|CBSE NEET JEE|12th Chemistry Previous Year Question| L-3 Solid State Part 1 || Chemistry Class 12 Chapter 1 || SOLID STATE MCQ || SOLID STATE CHEMISTRY || Complete NCERT with Previous Year Questions Solved || Solid State Class 12 Chemistry ||
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IIT JAM 2020 Physics (PH) Syllabus | IIT JAM 2020 Physics (PH) Exam Pattern
IIT JAM 2020 Physics (PH) Syllabus | IIT JAM 2020 Physics (PH) Exam Pattern Physics (PH): The syllabus is a very important aspect while preparing for the examination. Therefore it is advised to all the appearing candidates that they should go through the Physics (PH) syllabus properly before preparing for the examination. Mathematical Methods: Calculus of single and multiple variables, partial derivatives, Jacobian, imperfect and perfect differentials, Taylor expansion, Fourier series. Vector algebra, Vector Calculus, Multiple integrals, Divergence theorem, Green's theorem, Stokes' theorem. First order equations and linear second order differential equations with constant coefficients. Matrices and determinants, Algebra of complex numbers. Mechanics and General Properties of Matter: Newton's laws of motion and applications, Velocity and acceleration in Cartesian, polar and cylindrical coordinate systems, uniformly rotating frame, centrifugal and Coriolis forces, Motion under a central force, Kepler's laws, Gravitational Law and field, Conservative and non-conservative forces. System of particles, Center of mass, equation of motion of the CM, conservation of linear and angular momentum, conservation of energy, variable mass systems. Elastic and inelastic collisions. Rigid body motion, fixed axis rotations, rotation and translation, moments of Inertia and products of Inertia, parallel and perpendicular axes theorem. Principal moments and axes. Kinematics of moving fluids, equation of continuity, Euler's equation, Bernoulli's theorem. Oscillations, Waves and Optics: Differential equation for simple harmonic oscillator and its general solution. Superposition of two or more simple harmonic oscillators. Lissajous figures. Damped and forced oscillators, resonance. Wave equation, traveling and standing waves in one-dimension. Energy density and energy transmission in waves. Group velocity and phase velocity. Sound waves in media. Doppler Effect. Fermat's Principle. General theory of image formation. Thick lens, thin lens and lens combinations. Interference of light, optical path retardation. Fraunhofer diffraction. Rayleigh criterion and resolving power. Diffraction gratings. Polarization: linear, circular and elliptic polarization. Double refraction and optical rotation. Electricity and Magnetism: Coulomb's law, Gauss's law. Electric field and potential. Electrostatic boundary conditions, Solution of Laplace's equation for simple cases. Conductors, capacitors, dielectrics, dielectric polarization, volume and surface charges, electrostatic energy. Biot-Savart law, Ampere's law, Faraday's law of electromagnetic induction, Self and mutual inductance. Alternating currents. Simple DC and AC circuits with R, L and C components. Displacement current, Maxwelll's equations and plane electromagnetic waves, Poynting's theorem, reflection and refraction at a dielectric interface, transmission and reflection coefficients (normal incidence only). Lorentz Force and motion of charged particles in electric and magnetic fields. Kinetic theory, Thermodynamics: Elements of Kinetic theory of gases. Velocity distribution and Equipartition of energy. Specific heat of Mono-, di- and tri-atomic gases. Ideal gas, van-der-Waals gas and equation of state. Mean free path. Laws of thermodynamics. Zeroth law and concept of thermal equilibrium. First law and its consequences. Isothermal and adiabatic processes. Reversible, irreversible and quasi-static processes. Second law and entropy. Carnot cycle. Maxwell's thermodynamic relations and simple applications. Thermodynamic potentials and their applications. Phase transitions and Clausius-Clapeyron equation. Ideas of ensembles, Maxwell-Boltzmann, Fermi-Dirac and Bose-Einstein distributions. Modern Physics: Inertial frames and Galilean invariance. Postulates of special relativity. Lorentz transformations. Length contraction, time dilation. Relativistic velocity addition theorem, mass energy equivalence. Blackbody radiation, photoelectric effect, Compton effect, Bohr's atomic model, X-rays. Wave-particle duality, Uncertainty principle, the superposition principle, calculation of expectation values, Schrodinger equation and its solution for one, two and three dimensional boxes. Solution of Schrodinger equation for the one dimensional harmonic oscillator. Reflection and transmission at a step potential, Pauli exclusion principle. Structure of atomic nucleus, mass and binding energy. Radioactivity and its applications. Laws of radioactive decay. Solid State Physics, Devices and Electronics: Crystal structure, Bravais lattices and basis. Miller indices. X-ray diffraction and Bragg's law; Intrinsic and extrinsic semiconductors, variation of resistivity with temperature. Fermi level. p-n junction diode, I-V characteristics, Zener diode and its applications, BJT: characteristics in CB, CE, CC modes. Single stage amplifier, two stage R-C coupled amplifiers. Simple Oscillators: Barkhausen condition, sinusoidal oscillators. OPAMP and applications: Inverting and non-inverting amplifier. Boolean algebra: Binary number systems; conversion from one system to another system; binary addition and subtraction. Logic Gates AND, OR, NOT, NAND, NOR exclusive OR; Truth tables; combination of gates; de Morgan's theorem. Related Articles: IIT JAM 2020 Syllabus Biotechnology (BT) Syllabus Biological Sciences (BL) Syllabus Chemistry (CY) Syllabus Geology (GG) Syllabus Mathematics (MA) Syllabus Mathematical Statistics (MS) Syllabus Physics (PH) Syllabus Read the full article
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IIT JAM physics Best Books
A book is a medium for recording information in the form of writing and images, typically composed of pages that are bound together and protected by a cover.
Books always play a big role in exam preparation. It’s always better to prefer best reference books to prepare for any exam. Here are some reference books which are good for IIT JAM Physics preparation. Along with these you must solve previous years IIT JAM 2017 Question Papers to prepare well.
Mathematical Methods
Advanced Engineering Mathematics by Erwin Kreyszig
Mathematical Physics by H.K. Das
Mechanics & General Properties of Matter
Introduction to Mechanics by Kleppner and Kolenkow
Mechanics by D.S. Mathur
Concepts of Physics by H.C. Verma
Oscillations, Wave and Optics
Physics of Waves and Oscillations by N.K. Bajaj
Optics by Ajoy Ghatak
Electricity and Magnetism
Introduction to Electrodynamics by David J. Griffiths
Kinetic Theory, Thermodynamics
Thermodynamics by Garg, Bansal and Ghosh
Fundamentals of Statistical Mechanics and Thermal Physics by F. Reif.
Solid State Physics, Devices and Electronics
Solid State Physics by Puri Babbar
Semiconductor Physics by Streetman
Electronic devices and circuit theory by Boylestad and Nashelsky
Op-Amps and Linear Integrated Circuits by Ramakant A. Gayakwad
Digital Fundamentals by Flyod
Hope this will be helpful..!!
All the best..!!
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Which is the best book for IIT JAM chemistry?
Hello
Best books for IIT JAM Chemistry -
Physical Chemistry
Atomic and Molecular Structure: Physical Chemistry–Peter W. Atkins
Theory of Gases: Physical Chemistry–Peter W. Atkins
Chemical Thermodynamics: Physical Chemistry–Thomas Engel & Phillip Reid
Chemical and Phase Equilibria: Principals of Chemical Equilibrium & Phase Rule –K.G. Denbigh
Electrochemistry: An Introduction to Electrochemistry–Samuel Glasstone
Chemical Kinetics: Chemical Kinetics – Keith J. Laidler
Solid State: Solid State–Peter W. Atkins
Adsorption: Introduction to Surface Chemistry & Catalysis – Gabor A. Somorjai
Basic Mathematical Concept: Differential Equation & Matrices–Shanti Narayan
Inorganic Chemistry
Periodic Table: Concise Inorganic Chemistry – J. D. Lee
Chemical Bonding and Shapes of compounds: Inorganic Chemistry – Meissler & Tarr
Main Group Elements (s and p blocks): Concise Inorganic Chemistry – J. D. Lee
Transition Metal (d block): Concise Inorganic Chemistry – James E. Huheey
Analytical Chemistry: Quantitative Inorganic Analysis – A. I. Vogel
Bioinorganic Chemistry: Inorganic Chemistry – James E. Huheey
Instrumental Method of Analysis: Instrumental method – Skoog, Holler & Crouch
Organic Chemistry
Basic Concepts in Organic Chemistry and Stereochemistry: Stereochemistry Conformation and Mechanism-P.S. Kalsi
Organic Chemistry: Clayden, Greeves, Warner and Wothers
Organic Chemistry: Carey & Sundberg
Natural Products Chemistry: Organic Chemistry (Vol-II) – I. L. Finar
Heterocyclic Chemistry: Organic Chemistry (Vol-I) – I. L. Finar
Qualitative organic Analysis: Introduction to Spectroscopy – Pavia, Lampman, Kriz, Vyvyan
Know more about IIT JAM Chemistry here.
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