{"axis":"file_15083577","total":146,"total_source":"catalog","limit":20,"offset":0,"items":[{"record_key":"h:01075a53f4f3259321ae394c4e35e98d","as_of":"2021-08-13","payload":{"내용":">Expression for vertical betatron frequency; expression for horizontal betatron frequency; weak focusing principle; stop bands.>Resonances in betatron oscillations; imperfection resonances; sum and difference resonances; non-linear resonances; tune diagram; working point of an accelerator; general design of a cyclic accelerator.>Phase-space ellipse; beam emittance; Liouville's theorem; emittance matching.>Matrix techniques in ion optics; \"first order transfer matrix of quadrupole lens (singlet) ; transfer matrix of a drift space; quadrupole doublet; condition for double focusing; other focusing conditions; design of quadrupole lenses.>Beam transport systems; beam transport elements; quadruple lenses; bending magnets; drift spaces; aberrations; second order transfer matrix; matching and design of beam transport systems.>Strong focusing principle; analysis of betatron frequencies using matrix technique; condition for strong focusing; lattice design.>Momentum compaction; phase (synchrotron) oscillations; frequency of synchrotron oscillations.>Physics of synchrotron radiation sources; spectrum of emitted radiation; Schwinger's expressions; brilliance of a source; critical wavelength; energy lost by an electron per revolution; total power radiated; number of photons emitted in a given bandwidth-Physics of wiggler magnets; undulators; fundamental wavelength.RF linacs: Introduction to linacs>Propagation of electromagnetic waves through matter (relevant to linacs only); reflection of waves in bounded media.>Phase velocity; group velocity; wave equation; continuity theorem; Brilliouin diagram for empty cavity, etc.;>Generation of modes in a cavity/waveguide; TEM,TE,TM modes; mode creation and identification.>Boundary conditions.>Generation of an electric field in an empty cavity; dispersion relation; frequency and mode evaluation, etc.>Generation of an electric field in the loaded cavity; damping of waves; dispersion relations; frequency evaluation; application to the different types of linacs including traveling and standing wave types.>Transit time factor and the energy gained in a linac.>Longitudinal stability; stability criteria; separatrix; synchronous oscillation with small and large amplitudes; longitudinal wave vector; time period; phase damping; acceleration through v=c traveling wave linac and damping phenomena; acceleration conditions therein, etc.>Transverse stability; stability criteria; impulse due to radial field; focal strength of a radial defocusing impulse.>Linac focusing devices; quadrupole doublet focusing ; stability criteria; phase advance and stability in linacs, etc.>General ideas of Q value; power loss; surface resistance; shunt impedance, etc.; room temperature structures; superconducting structures (SC); general advantages of SC systems over room temperature ones.High power DC and pulsed electron acceleratorsElectron emission processes; thermionic cathodes; field emission; explosive field emission.>Pulse power systems; Marx generators; Tesla transformer, transmission line spark gaps; induction linac.>Relativistic electron beam generation, propagation and applications in generation of microwaves, neutrons, ion beams and X-rays.>Beam diagnostics.>Industrial DC electron accelerators; Cockcroft-Walton; Dynamitron. Application of industrial electron accelerators; comparison with X-ray sources","분야":"Chemistry : Electronics in Chemical Instrumentation","수준":"3","과목명":"Physics: Accelerator Physics And Technology","말머리":"1","고유번호":"313","달력번호":"1","일정시작일":"2012-12-27 15:35","일정종료일":"2012-12-28 15:35","작성자회원코드":"46970"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:063cb713789ee1e35c98dae42d9f37f0","as_of":"2021-08-13","payload":{"내용":">Atomic and Molecular Structure: Brief recap of atomic physics. Energy Level structure, Rydberg levels, Autoionising levels in atoms and molecules. Nuclear effects  Hyperfine structure and isotope shifts. Labeling schemes for electronic, vibrational and rotational states. Microwave, infrared and optical spectra of molecules. Selection rules, Franck-Condon principle.>Atomic Vapour Sources, Laser Optics and Diagnostic Instruments: Hollow cathode discharges, Atomic and molecular beams. Dielectric coating, AR coating and HR coating, Filters, Polarization components, Etalons, Fiseau, Blazed gratings, Fabry-Perot Interferometer.>Properties of laser: Properties specific to lasers as compared to ordinary light source  Introduction to concepts such as Temporal and Spatial coherence, Monochromaticity, Spontaneous and Stimulated emission, Population Inversion. Line Broadening.Laser Physics (11)>Theory of Optical Resonators: Concept of resonator modes  Transverse and Longitudinal; Kirchoff diffraction treatment, Stability criterion, Gaussian beams and their propagation.>Principles of laser oscillation: Pumping mechanisms, Rate equation for three and four level laser systems, Gain coefficient and threshold population inversion; Gain clamping and Gain narrowing; Spatial and Spectral Hole burning; Mode pulling effects.>Laser as an intense source of radiation: Giant pulse lasers; Q-switching, Techniques for Q-switching, Relaxation oscillation, cavity dumping. Mode-locking-Techniques for generation of short laser pulse. Active/Passive schemes, Chirped Pulsed amplification. Ultra High Intensity lasers.>Types of Lasers: Solid State Lasers  Nd:YAG, Ti:S; Gas and metal vapour Laser, Liquid Lasers  Dye lasers. Semiconductor Lasers and Diode pumped Solid State lasers.Non-Linear Optics (6)>Basic Crystal Optics, Electro-Optic Effects; Classical theory of Nonlinear response; Wave propagation in non-linear media; General properties of polarizability tensor; Phase matching condition. Second Harmonic Generation, Coupling of three waves  Sum Frequency Generation and Difference Frequency Generation. Optical Parametric Oscillator and Amplifier. Elementary treatment of stimulated Raman Scattering. Concept of Optical bistability, Self Phase Modulation, and Optical Phase Conjugation.Laser Spectroscopy (6) >Linear Spectroscopic Techniques: Theory, Practice, Applications. Concept of linear absorption, Doppler-limited spectroscopic techniques. Laser absorption, Laser induced fluorescence, Optogalvanic, and Opto-acoustic. Applications of these techniques in basic research, in environment and in process monitoring (number density, temperature, velocity, impurities etc.).>Non-linear Spectroscopic Techniques: Theory, Practice, and Applications. Concept of non-linear absorption, saturation and Doppler-free techniques. Saturation absorption spectroscopy, Polarization spectroscopy and Two-photon spectroscopy.>Multi-photon and Multi-step Spectroscopy: Resonance Ionization Spectroscopy and Resonance Ionization Mass Spectroscopy. Concept of multiphoton processes, multiphoton cross-sections. Types of photionisations: Multi-photon, multi-step, field-ionization, autoionization. Applications in measurement of radiative and non-radiative processes in atomic and molecular systems.Laser Applications and Advanced Topics (4)>Holography and Optical Communication; Trace Analysis, Laser Isotope Separation. Laser cooling and Ion trapping.Spectroscopy with Accelerators (2)>Advantages of using Synchrotron radiation for spectroscopy, photoelectron spectroscopy. Spectroscopy with accelerated beams: Collinear fast beam spectroscopy.","분야":"Chemistry : Health Physics and Radiobiology","수준":"3","과목명":"Physics: Atomic, Molecular and Laser Physics & Non Linear Optics","말머리":"1","고유번호":"312","달력번호":"1","일정시작일":"2012-12-27 15:35","일정종료일":"2012-12-28 15:35","작성자회원코드":"39011"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:0747617b4ce6f49d740eea1008967dde","as_of":"2021-08-13","payload":{"내용":"Radioisotopes:. Production calculations and production outline of some important radionuclides such as 60Co, 32P, 33P, 90Y, 99Mo, 125I, 131I, 153Sm, 166Ho, 186Re, 188Re, 192Ir, 11C, 13N, 15O, 18F, 123I etc. Concept of radioisotope generators; growth and decay of activity in a generator. Some commonly used generators and their details; 99Mo-99mTc; 188W-188Re; 113Sn-113mIn. Szilard-Chalmers effect and their role in radioisotope productionApplications of radioisotopes in medicine : >Radiopharmaceuticals : Diagnostic and therapeutic uses of radionuclides. Concept of radiopharmaceuticals and the various modes of action of radiopharmaceutical preparations. Basis of radiopharmaceutical design and testing, quality control of radiopharmaceutical preparations. Important radiopharmaceutical preparations and preparation routes for few radiolabelled compounds such as 18F-fluoro deoxy glucose. Therapeutic sources for cancer and endovascular treatment. >In-vitro radiopharmaceuticals - Radioimmunoassay and Immunoradiometric assay - basic principles>Radiolabelling of nucleotides and their applications.Industrial application of radiation technology>Polymer modification : Radiation induced reactions in polymeric materials, cross linking, degradation, oxidation etc. Radiation stability of polymers. Radiation applications such as crosslinking of polyolefin wire and cable insulation, production of heat shrinkable films and tubes, production of crosslinked polyethylene foam, vulcanisation of elastomers.>Radiation sterilization of medical products>Radiation treatment of food : Sprout inhibition, disinfestation, delay of maturation, extension of shelf life, destruction of pathogenic micro-organism>Comparison of various radiation sources for different applications>Isotope tracer application in hydrology: Environmental isotopes and artificial radioisotopes in hydrology. Application of environmental isotopes in studying ground water salinisation, pollution, recharge, artificial radiosotopes in studying dam seepage, effluent dispersion, sediment transport etc.>Isotope tracer application in industry: Application of radioisotopes in trouble shooting and process optimisationPracticals:>Radioimmunoassay>Immunoradiometric assay>99Mo-99mTc generator: Preparation and quality control of a generator>Electron beam cross linking of polyethyleneReferences","분야":null,"수준":"3","과목명":"Chemistry : Isotope Applications","말머리":"1","고유번호":"372","달력번호":"1","일정시작일":"2012-12-27 16:16","일정종료일":"2012-12-28 16:16","작성자회원코드":"65674"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:076a28aa223f49619c3be2469f191a1b","as_of":"2021-08-13","payload":{"내용":"Introduction: Relevance of analytical chemistry in atomic energy programme including trace analysis.>Sampling: Methods of sampling and associated errors. Separation Techniques for Analysis>Solvent extraction technique: Principles and applications in analytical and industrial processes. >Ion exchange: Principles of cation and anion exchangers and their applications. >Chromatography: Gas chromatography, liquid chromatography including HPLC and ion chromatography. Principles and applications. Methods of Determination>Spectrochemical methods: Principles and applications of absorption spectrometry including UV-vis molecular absorption spectrometry, Flame and Graphite Furnace AAS, Emission spectrometry including ICPAES and DCPAES, Fluorescence spectrometry, brief discussion on sources, detectors, spectrometers, interferences, detection limits, sensitivity, line broadening etc. Hyphenated techniques like ICP-MS, GD-MS. Recent advances in single atom detection.>Mass spectrometry: Scope and applications of mass spectrometry. Thermal ionisation and spark source mass spectrometers and recent advances in mass spectrometry>Thermoanalytical methods: Principles and applications of DTA, TG, DSC, Evolved Gas Analysis etc. Use of thermoanalytical techniques in material characterisation.>Electroanalytical methods : Principles and applications of voltammetry and polarography, Sampled current, pulse polarography and anodic stripping voltammetry, Potentiometry, Bulk electrolysis at constant current or potential, Coulometry, Glass and Ion selective electrodes>Radioanalytical Techniques including principles and applications of instrumental and radiochemical neutron activation analysis, Charged particle activation analysis etc. Principle and applications of XRF.>Introduction to Surface Analytical Techniques Statistics in Analysis:>Statistical techniques of probability, theory of propagation of errors, treatment of errors, tests of significancePracticals:>Determination of trace impurities in high purity materials by AAS.>Application of Electroanalytical Methods to trace analysis >Thermogravimetric and Differential Thermal Analysis of inorganic compounds>Neutron Activation Analysis of trace constituents in a complex matrix >Analysis of an alloy sample by EDXRF>Anion analysis by ion selective electrode.>Chromatographic separation and measurement of the components in a mixture","분야":null,"수준":"3","과목명":"Chemistry : Analytical Chemistry","말머리":"1","고유번호":"380","달력번호":"1","일정시작일":"2012-12-27 16:18","일정종료일":"2012-12-28 16:18","작성자회원코드":"23253"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:079545eaf665e43dd96552c613d198c7","as_of":"2021-08-13","payload":{"내용":">Radiochemistry Laboratory: General Consideration  Differences Between A Conventional Chemical Laboratory and Radiochemical Laboratory, Classification of Laboratories, Classification of Radionuclides Based On Toxicity, Laboratory Apparatus, Remote Handling, Handling of Alpha Emitters>Analysis of Samples From Plant: Analysis Procedures For Fission Products, Activation Products and Actinides, Procedures For Gross Radioactivity Measurements In Effluents, Saline Water, Suspended and Dissolved Solids In Water, Soil and Sediment Samples, Other Aqueous and Organic Solutions>Radiochemical Analysis of Environmental Samples: Environmental Sample Matrices, Collection, Processing and Analytical Methodologies; Various Preconcentration Approaches; Radiochemical Techniques For Separation and Estimation of Natural and Man-Made Radionuclides; Uses of Tracer and Carriers In Quantitative Estimations; Estimation of Tritium In Environmental Samples; Chemical Characterization of Sea-Water, Silt, Sediment and Marine Organisms and Their Transfer Factors.>Monitoring Effluent Releases From Nuclear Facilities>Bioassay Procedures: Collection and Analysis of Urine, Stool, Etc., Estimation of Various Radionuclides of Interest>Methods of Radiochemical Analysis During Emergency Conditions: Analysis For Noble Gases  Kr, Xe, Halogens, Fission Products, Assessment of I-131, Sr-89,90, Cs-137,134, Ru-103,106, Zr-95 Etc. In Milk, Grass and Soil Samples, Rapid Analysis of Gamma Emitters By Gamma Ray Spectrometry","분야":"Medical Physics","수준":"3","과목명":"Radiation Protection and Environmental Science: Radiochemical Analysis","말머리":"1","고유번호":"268","달력번호":"1","일정시작일":"2012-12-27 15:13","일정종료일":"2012-12-28 15:13","작성자회원코드":"5572"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:08f07b4098278c811f9ade084d1f153b","as_of":"2021-08-13","payload":{"내용":">Principles of Industrial Hygiene: Definition, Metal Fume Fever, Occupational Diseases, Ramazzini, Factories Act, Atomic Energy Factory Rules (AEFR), Workman Compensation Act, Industrial Hygiene Surveillance In DAEe Units, Threshold Limit Values (TIV), Time Weighted Average Values (TWA), Short Term Exposure Limits (STEL), Individual Susceptibility>Chemical Agents: Acute Effects, Chronic Effects, Dusts, Fumes, Mists, Gases and Vapours, Collection and Measurements Using Instruments, Irritants, Asphyxiants, Anaesthetic Agents, Dermatitis, Carcinogenic Substances, Flammable Characteristics and Fires >Physical Agents and Non-Ionizing Radiations: Ultraviolet Rays, Visible Light, Infrared Rays, Microwave Radiation, Radiowaves, Lasers, Eye Damages, Precautions In Laser Laboratories, Noise, Hearing Impairment, Db Concept, Sound Level Meters, Dosimeters, Audiometry, Heat Stroke, Heat Cramps, Heat Exhaustion, Wet Bulb Globe Temperature Index (Wbgt) Precautions>Engineering Control: Substitution, Isolation, Enclosures, General Ventilation, Local Exhaust Ventilation, Rotation of Persons, Medical Control, Periodic Examinations,>Personnel Protective Equipment: Helmets, Goggles, Face Shields, Filter Lenses, Aprons, Gloves, Safety Shoes, Respirators, and Safety Belts, Ear Protectors>Principles of Industrial Safety: Statutory Regulations, Causes of Accidents, Heinrich Chain of Injury Occurrence and Sequence, Contributing Causes, Immediate Causes, Unsafe Acts and Unsafe Conditions, Cost of Accidents  Direct Cost and Indirect Cost, Accident Control Steps, Measurement of Safety Performance  Frequency Rate, Severity Rate, Injury Index, Schedule of Charges and Major Lessons Form Experience>Safety In The Use of Machines: Legal Requirements Under Factories Act, Common Causes of Machine Accidents, Prevention Methods  Machine Guards, Various Types of Guards, Advantages and Disadvantages, Various Machine Parts Which Need Guarding, Design Factors, Work Dress, Use of Personal Protective Equipment, Handling, Use and Storage of Tools, Welding and Cutting, House Keeping Shop Floor>Safety In Use of Electricity: Causes of Electrical Accidents, Physiological Effects, Safety Precautions, Grounding, Overload Protection, Means of Cutting of Supply, Fire Fighting On Electrical Equipment, Personal Protective Equipment, General Safety Precautions Under Indian Electricity Act and Indian Electricity Rules>Material Handling and Storage: Salient Features of Handling, Types of Material Handling  Manual and Mechanical, Accessories For Manual Handling, Safe Methods of Lifting and Carrying, Advantages of Mechanical Handling, Devices Such As Cranes, Hoists, Lifting Tackles, Fork Lifts, Statutory Requirements Under Factories Act and Aefr, Safe Work Practices, Salient Features of Material Storage>Chemical Safety and Specific Operations: Safety In Handling of Chemicals In Plants, Bulk Handling of Acids and Alkalies, Use of Personal Protective Equipment, Eye Wash Fountain and Emergency Showers, Handling of Spillage, Ventilation Requirements, Principles of Fire and Fire Prevention, Fire Detection and Coltrol>Working At Height, Entry and Working In Confined Space>Work Permit System>Accident Prevention Porgramme In DAE","분야":null,"수준":"3","과목명":"Industrial Hygiene and Industrial Safety","말머리":"1","고유번호":"335","달력번호":"1","일정시작일":"2012-12-27 16:08","일정종료일":"2012-12-28 16:08","작성자회원코드":"34215"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:094fb001c0332cc7be74c1fdc072434e","as_of":"2021-08-13","payload":{"내용":"Differential Equations: Simple first and second order differential equations with constant and variable coefficients; Linear differential equations: Series method of solution; Legendre, Laguerre and Hermite differential equations and their solutions; Orthogonal polynomials and Special functions>Vector Calculus: Vector differentiation and integration; Gradient, divergence and curl; Laplacian operator; Divergence theorem of Gauss and Stokes’ theorem; Curvilinear coordinates>Matrix Algebra: Classification of matrices; Elementary operations and elementary matrices; Determinant, rank and inverse of a matrix; Solution of linear equations; Eigenvalues and eigenvectors; Similarity transformation and diagonalisation of a matrix>Group Theory: Concepts of groups, sub-groups and classes; Symmetry elements and symmetry operations; Point groups; Matrix representations of groups; Reducible and irreducible representations; Character tables and their applications>Quantum Chemistry: Basics of quantum mechanics; Exact solution of Schrodinger equation: Simple harmonic oscillator, rigid rotator and hydrogen atom; Approximate methods of solution: variation method, Perturbation theory for time-independent and time-dependent systems; Many-electron systems: Hartree and Hartree-Fock theories; Chemical binding: valence bond and molecular orbital theories; Introduction to ab-initio and semiempirical molecular orbital theories.","분야":null,"수준":"3","과목명":"Chemistry : Mathematics and Quantum Chemistry","말머리":"1","고유번호":"370","달력번호":"1","일정시작일":"2012-12-27 16:16","일정종료일":"2012-12-28 16:16","작성자회원코드":"26316"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:0a30e897c8e643b961ff94a595eef7d0","as_of":"2021-08-13","payload":{"내용":"Introduction: Radiation sources, quantities and units: Natural and Induced radioactive sources, units of radioactivity, half-life and decay constant, specific activity. Definition of various dosimetric terms (exposure, absorbed/equivalent/effective dose, concept of radiation/tissue weighting factors and their importance (stress should be given to use only SI units however for continuity sake old and new units relation can be given). Exposure measurement: Free air and Air wall chambers (concept of wall thickness should be given), Exposure-dose relationship, Bragg-Gray principle. >Biological effects, Radiation Protection and Regulation: Human body: Cells, tissues and organs, structure of cell, cellular effects. Factors, which influence the damage of cell. Interaction of radiation with biological matter. Radiation effects: stochastic and deterministic. Acute and delayed effects. Importance of radiation protection programme in DAE. Types of exposure (natural, occupational, medical and public). National and International regulatory bodies, their role and responsibilities. Dose limits stipulated by these bodies. Dose limits observed in India. Radiation protection philosophy, Principles of radiation protection, concept of ALI & DAC (with suitable problems). Fundamentals of ICRP respiratory model (only basics), entry through ingestion, GI track model (only basics). Nature of duties and responsibilities of Radiation Safety Officer/Health Physicist. >Radiation protection and measurement (External and Internal): Control of external exposures (with problems in each case). Buildup concept, shielding from alpha, beta, gamma and neutron sources. Shielding from mixed sources. Routes of intake of radioactive material, radiotoxicity and classification of laboratories, design of laboratory for radioactive work, Radioactive waste classification and management. Personal monitoring, area-monitoring, air monitoring. Bioassay, whole body counting techniques. Use of personal dosimeters (TLDs, pocket dosimeters)>Radiation Protection procedures: Procedures followed in radiation work places, work permits, zoning concept, contamination control methods, and rubber areas, spill pack (contains gloves + absorbing paper), Decontamination techniques. Precautions during radioactive source storage and handling, safety during transportation. >Nuclear Accidents, Emergency Preparedness and Management: Reasons for accidents, classifications of accidents, International Nuclear Events Scale. Types of emergency, emergency preparedness.>Industrial Safety (Non radioactive): Principles of industrial safety and industrial hygiene; legislation related to health and safety and major hazard control. ","분야":"Chemistry : Molecular Structure & Spectroscopy","수준":"3","과목명":"Physics: Health Physics","말머리":"1","고유번호":"307","달력번호":"1","일정시작일":"2012-12-27 15:34","일정종료일":"2012-12-28 15:34","작성자회원코드":"23204"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:0ca8cd80d395a35cf123f1363394b3b0","as_of":"2021-08-13","payload":{"내용":"A. Physical examination of Metals and Alloys>Metallography and Image processing>X-ray and neutron diffraction>Electron metallography: Transmission Electron microscopy, Diffraction, theory of image formation, defect analysis>Special techniques: CBED, HREM etc>Scanning Electron Microscopy: Basic principle of operation, Secondary and Back Scattered imaging, TextureMicroanalysis>Energy dispersive and wave length dispersive spectroscopy: Quantitative analysis and ZAF correction, Thin foil Analysis (Cliff Lorimer)>Electron probe microanalysis: Auger electron and X-ray photoelectron spectroscopyPhysical properties>Direct pole figure and inverse pole figure, ODF, OIMThermal>DSC and DTA/TGA>Dillatometry>Thermal conductivityElectrical>Two probe and four probe measurement technique for Resistivity measurementB- Non Destructive Testing and failure analysis>Surface examination techniques: Liquid penetrant, magnetic particle and eddy current test>Volumetric Examination Technique: Radiography and Ultrasonic tests>Advanced NDT techniques: Acoustic Emission, Thermography and HolographyC. Assessment of Flaw significance based on fracture mechanics, critical flaw size and>Concept of Leak-Before-Break, Methodology of failure analysis, Modes of failure and electron fractography","분야":null,"수준":"3","과목명":"Material Characterization","말머리":"1","고유번호":"333","달력번호":"1","일정시작일":"2012-12-27 16:08","일정종료일":"2012-12-28 16:08","작성자회원코드":"18778"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:12e8bb7761dac4e32ce606f17c582285","as_of":"2021-08-13","payload":{"내용":"Introduction to Plasma, the fourth state of matter, collective behaviour, charge neutrality, space and time scales. Concept of plasma temperature, Debye length, plasma frequency, plasma parameters+O247 and criteria for plasma state. Shielding, sheath and dielectric properties, plasma in nature and laboratory: thermal, non-thermal and photo plasmas, non-neutral plasmas. (4)>Basic processes in plasmas, Collisions in plasmas, significance of small angle scatterings, ionisation, recombination, concepts of diffusion, mobility, ambipolar diffusion. Thermal ionisation and the Saha equation, LTE and equilibrium models, (5)>Plasma Theory: Concepts of elementary kinetic theory of plasmas, fluid theory of plasmas - single & multi fluid approximations, plasma variables, conservation equation, generalized Ohm’s law. MHD equations. MHD Stability, Waves and instabilities in plasma media, Damping and non-linear processes (8)>Plasma production and diagnostics: Various plasma production techniques, Electrical breakdown in gases using dc, rf, microwave and high frequency fields, Glow and arc discharge. Langmuir probes, magnetic probes, spectroscopic diagnostics, active and passive techniques, interferometric techniques in plasma diagnostics(6)High temperature plasma applications - controlled thermonuclear fusion, Introduction to thermonuclear fusion, fusion reactions, cross-sections, radiative processes in plasmas, energy loss, Lawson criterion, break even and ignition, magnetic and inertial confinement scheme and devices, emission of X rays and neutrons, fusion plasma diagnostics (6)>Low temperature plasma applications: plasma processing of materials, Physics of high and low pressure plasma sources and applications to materials processing, brief review of plasma etching, PECVD, display, radiation sources, plasma source ion implantation, plasma cutting, melting, spraying and waste processing and applications to nuclear, space and semiconductor industries. (6) ","분야":"Chemistry : Reactor Chemistry","수준":"3","과목명":"Physics: Physics & Technology Of Plasmas","말머리":"1","고유번호":"303","달력번호":"1","일정시작일":"2012-12-27 15:27","일정종료일":"2012-12-28 15:27","작성자회원코드":"23006"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:164bff3262e56202ba190bd6b379c470","as_of":"2021-08-13","payload":{"내용":"Radiation Protection: Radiation quantities and units, Basis for radiation protection standards, System of radiological protection, ICRP 60 dose recommendations>Radiation Dosimetry: Basic concepts, definitions and various areas of dosimetry, Ionisation methods of radiation dosimetry, Dosimetry of internally deposited radionuclides, Personnel dosimetry devices.>Operational Monitoring and Safety aspects of facility design.: Radiation Shielding, General principles and techniques of monitoring air and area contamination, Asessment and control of radiation hazards in nuclear fuel cycle facilities with special reference to metallurgical, radiochemical and radioisotope facilities and fuel reprocessing plants, Safety aspects of facility design and operation, Radiation survey instruments for gamma and neutron radiations >Criticality safety: Criticality control parameters, Transport of radioactive materials.>Radioactive waste management >Radiation Emergency Preparedness >Environmental Aspects of Nuclear Fuel Cycle operations>Industrial Hygiene and Safety in nuclear fuel cycleRadiobiology>Basic radiobiology: Interaction of ionizing radiation with living cells. Ionizing radiations, excitation and ionization process, basic structure and components of cell, chemical and biological consequences of radiation action, radicals and reactions in cell killing. Direct and indirect effect and relevant biological damage. >Molecular and cellular and cellular effects of radiation : Radiation action and organizational level in cell, damage to DNA; single and double structural breaks in units membrane dose and survival curve, cellular radioactivity, radiobiological effectiveness and linear energy transfer Dzz dose, dose rate effect, dose fractionation. Mitotic delay, chromosome aberration and mutations by radiatPracticals:>Measurement of Radioactivity of Plutonium in air>Measurement of Radioactivity of Iodine in air>Radiobiological studies on cells in cultureion action on cells.>Modification of biological effects of radiation : Oxygen effect, OER, Chemical radiosensitizers, Chemical radioprotectors, Mechanisms of action and importance in nuclear research program. >Radiobiology and radiotherapy: Radiation and cancer, cell cycle and radiosensitivity, rationale of using radiation for tumor cell kill, problems and new directions of research. ","분야":null,"수준":"3","과목명":"Chemistry : Health Physics and Radiobiology","말머리":"1","고유번호":"374","달력번호":"1","일정시작일":"2012-12-27 16:17","일정종료일":"2012-12-28 16:17","작성자회원코드":"76048"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:1700d8d6f250de832a37a630e93f18c3","as_of":"2021-08-13","payload":{"내용":"Physical bases of nuclear reactor. Dynamics of nuclear reactor. Change of isotopic components in nuclear fuel. Temperature effect. Control sys-tem of nuclear reactor. Nuclear power plan and its components. Types of nuclear power reactors. Nuclear power and environmental problems","분야":"Introduction to Nuclear Reactor & NPP","수준":"1","과목명":"Introduction to Nuclear Reactor & NPP","말머리":"4","고유번호":"166","달력번호":"1","일정시작일":"2012-12-27 12:03","일정종료일":"2012-12-28 12:03","작성자회원코드":"64189"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:1ba40200e3bdf9d11af8a0fc3d0a3db1","as_of":"2021-08-13","payload":{"내용":">Classification of Radiation Effects>Somatic, Genetic, Deterministic, Stochastic, Late and Early Effects>Deterministic Effects: Acute Radiation Injury-Radiation Sickness (Prodromal Syndrome), Haematopoetic Syndrome, Blood Picture Changes, Gastrointestinal Syndrome, Cns Syndrome, Interaction of Different Systems In The Indication of Lethality, Ld50 (60), Prenatal (Inutero) Radiation Effects, Damage To Individual Organs-Bone Marrow, Skin, Reproductive System, Eye Lens, Lung, Kidney and The Endocrine System, Manifestation of Late Damage-Fibrosis, Functional Impairment, Medical Management of Radiation Injury Following External and Internal Radiation Exposures>Stochastic Effects of Radiation: Mechanism of Induction of Radiation Carcinogenesis-Somatic Mutation Theory, Viral Theory and Oncogene Hypothesis, Carcinogenesis-Latent Period, Organ Sensitivity, Dependence On Sex, Age, Genetic Predisposition, Dose and Dose Rate Effect (Ddref)>Low Dose Epidemiology: High Background Radiation Areas, Occupationally Exposed High Dose Epidemiology - A-Bomb Survivor Follow-Up By Rerf.>Human Data On Radiation Exposure and Its Use In Setting Up Radiation Protection Standards, Risk Factors, Unscear and Icrp Documents, Cancer Risk Evaluation>Radiobiological Basis of Radiation Protection","분야":"Material Science in Nuclear Engineering","수준":"3","과목명":"Radiation Protection and Environmental Science: Radiation Biophysics","말머리":"1","고유번호":"271","달력번호":"1","일정시작일":"2012-12-27 15:14","일정종료일":"2012-12-28 15:14","작성자회원코드":"70308"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:1c67443b67b5f74ffa5b6691c79c04b3","as_of":"2021-08-13","payload":{"내용":"Introduction to Radiation Biology: Radiation and Life, Concept of Radiation Dose, Stepwise Development of Radiation injury, Targets of Radiation Damage, Stochastic and Deterministic Effects of Radiation. Concept of RBE and LET. Dose-Effect Relationships. (3)>Free Radical Biology: Radiation induced Generation of Free Radicals, ROS and RNS, Other Methods of Generating ROS. Detection of Free Radicals, ESR, Pulse Radiolysis, Biological Effects of Free Radicals, Biological Defense Against Free Radicals. (3)>Cellular Radiobiology: Acute Radiation Syndromes  Bone Marrow Syndrome, Gastrointestinal Syndrome and CNS Syndrome. Sub-Lethal and Potentially Lethal Damage and Recovery Physical, Chemical and Biological Factors Modifying Radiation Damage. Low Dose Radiation Effects, Concept of Hormesis. (3)>Radiation induced Signal Transduction and Cell Death: Cytoprotective and Cytotoxic Pathways Activated By Radiation, Cross Communication. Activation of Radiation Damage Sensors and Alarm Signals. Mechanisms of Radiation induced Apoptosis. Bystander Effects. (2)>DNA Damage and Repair: DNA Lesions induced By Ionizing Radiation and UV. Estimation of Single and Double Strand Breaks. Repair Pathways. DNA Repair Deficiency Syndromes. (3) >Radio Sensitization and Radioprotection: Basic Concepts, 02 Effect, Chemical Radiosensitizers and Radioprotectants. Their Applications in Radiotherapy of Cancer. Hyperthermia and Modification of Radiation injury. (3)>Radiotherapy of Cancer: Properties of Tumor Cells Relevant to Radiotherapy, End Points for in Vitro and in Vivo Cell Survival. >Dose Fractionation, Biologically Effective Dose for Teletherapy and Brachytherapy, MFD and CHART. Radiosensitivity of Tumor Cells. (3)>Radiation induced Carcinogenesis: Models of Radiation induced Carcinogenesis. Epidemiological Aspects of Radiation induced Cancer. Risk Assessment. (2)>Genetic Effects of Radiation: Dose Response Relationship, Biological Dosimetry, Parameters for Biological Dosimetry-Using Genetic/Cytogenetic End-Points: Chromosomal Aberrations, CBMN, PCC, GPA, FISH. Concept of Genetic Risk and Its Assessment. Studies on Genetic Effects in Radiation Exposed Human Population and Impact of New Methods in Human Molecular Genetics. (5)>Radiation and Immune System: Radiation Effects on Immune System. Radiosensitivities of Different Cell Populations. Cytokines and Radiation injury. Low Dose Radiation Effects in Immune System and Their Mechanisms. Radioadaptation. (3) References","분야":null,"수준":"3","과목명":"Biosciences : Radiation Biology","말머리":"1","고유번호":"384","달력번호":"1","일정시작일":"2012-12-27 16:19","일정종료일":"2012-12-28 16:19","작성자회원코드":"68609"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:1d8ef4438d64dea945bdc08314f2a763","as_of":"2021-08-13","payload":{"내용":"configuration, nature of bonding, type of disorder and dimensionality (nanostructured materials).>Free electron theory, MB and FD statistics, electrons in periodic potential,>Bloch’s theorem, Basics of electron band structure, density of states and Fermi surface.>Crystal structure and symmetry, Bravais lattice, Reciprocal lattice, Bragg’s Law,>Diffraction methods --- X-rays, Electron and Neutron scattering.>Electronic processes in solids, Bonds and Bands in semiconductors, ANB8-N compounds, basics of intrinsic and extrinsic semiconductors (donor and acceptor levels, carrier generation and recombination, mobility, drift and diffusion, etc.)>Hall effect, physics of p-n junction, semiconductor heterostructures and Superlattices.>Material characterization techniques --- XRD, RBS, SEM, TEM, EDAX, XPS, IR and Raman Spectroscopy.>Microstructure-property relationship, thermodynamics and phase diagram (binary) of materials, mechanical properties and measurement techniques, strength and ductility, creep, fatigue and wear testing>Dielectric, optical, magnetic and superconducting materials and properties>Dielectrics, piezoelectrics, ferroelectrics>Optical and Non-linear optical materials, laser materials, fiber optics>Ferromagnetic, Antiferromagnetic, Ferrimagnetic materials>Type-I and Type-II Superconductors, Josephson junctions, SQUIDS>Nano-technology, MEMS and nano-phase materials, sensor technology and applications.>Nuclear Materials and processing>Reactor core materials, Zircalloys, Zr-Nb alloys --- fabrication, properties and applications in reactors>Nuclear fuels: Metallic, ceramic (Oxides, MOX and Carbide fuels) --- fabrication, properties and applications.>Chemistry of fuel materials: Production of Uranium, Plutonium and Thorium.>Heavy water: Production process, purification, properties and applications.","분야":null,"수준":"3","과목명":"Material Science in Nuclear Engineering","말머리":"1","고유번호":"332","달력번호":"1","일정시작일":"2012-12-27 16:08","일정종료일":"2012-12-28 16:08","작성자회원코드":"66309"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:23af5df08a21766261b32180e1aed9b9","as_of":"2021-08-13","payload":{"내용":">Each Trainee Scientific Officer (TSO) of Engg disciplines is assigned a project within a Division of a DAE Unit located in Mimbai (BARC, HWB and NPCIL). Project starts on part time basis (twice a week after lunch) from second week of March and on full time basis from mid May up to third week of July.","분야":"Engineering Maths-I","수준":"3","과목명":"Project Work","말머리":"1","고유번호":"284","달력번호":"1","일정시작일":"2012-12-27 15:18","일정종료일":"2012-12-28 15:18","작성자회원코드":"69713"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:249bc441d6eed72ae900a3ca7eb29c98","as_of":"2021-08-13","payload":{"내용":"Interaction of electromagnetic radiation with matter - Einstein coefficients and Einstein relation. Stimulated absorption and optical gain. Creation of population inversion. Laser rate equations for three and four level laser systems. (3 lectures).>Optical resonator, Transverse and longitudinal modes, Active and passive, resonators, Stability of laser resonators, Mode selection techniques. Properties of laser beam. (2 lectures).>Basic principle and energy level diagrams of a few important laser. Systems: Nd:YAG, Ti:Sapphire, He-Ne, CO2, N2, Cu-vapour, excimer, dye and diode lasers. (2 lectures). >Techniques of generation of short and high energy laser pulses -'Q'-switching and mode locking. Picosecond and femtosecond 1asers. Amplification of short lasers pulses. Measurement of Short pulses. Generation of new frequencies. (3 lectures). ","분야":null,"수준":"3","과목명":"Chemistry : Introduction to Laser","말머리":"1","고유번호":"373","달력번호":"1","일정시작일":"2012-12-27 16:16","일정종료일":"2012-12-28 16:16","작성자회원코드":"42799"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:2562caece02bf7d975eb29857034a475","as_of":"2021-08-13","payload":{"내용":">Radiation Quantities and Units: Radiometry  Energy, Flux, Fluence, Radiance>Interaction Coefficients: Cross-Section, Attenuation Coefficient, Transfer Coefficient, Absorption, Stopping Power, Linear Energy Transfer (Let) >Dosimetry: Energy Imparted To The Medium, Lineal Energy, Specific Energy, Absorbed Dose, Kerma, Exposure, Equivalent Dose, Effective Dose, Free Air Chamber, Energy Absorption In Air Per Unit Exposure, Secondary Charged Particle Equilibrium, Energy and Photon Fluence Per Unit Exposure, Bragg-Grey Principle, Relation Between Exposure and Dose, Buildup Factors, Calculation of Dose From Radiation Sources>Measurement of Absorbed Dose: Ionization Chambers, Electrets, Film Badge, Radiophotoluminiscence, Thermoluminiscence, Chemical and Optical Absorption In Plastics, Solid State Nuclear Track Detectors (Ssntd)>Internal Dosimetry: Modes of Intake  Inhalation, Ingestion, Absorption Through Skin Or Wound, Reference Man, Metabolic Behaviour, Uptake In Blood and Transport To Various Organs, Retention and Elimination, Biological Half Life, Effective Half Life, Ali, Dac, Committed Dose Equivalent and Its Calculation Per Unit Intake By Icrp Models, Lung Model, Gi Tract Model, Metabolic Models, Examples For Some Important Radionuclides, Dosimetry of Bone","분야":"Engineering Physics","수준":"3","과목명":"Radiation Protection and Environmental Science: Dosimetry and Dose Calculations","말머리":"1","고유번호":"280","달력번호":"1","일정시작일":"2012-12-27 15:17","일정종료일":"2012-12-28 15:17","작성자회원코드":"8237"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:258419acaeac972e44a493e2902d511c","as_of":"2021-08-13","payload":{"내용":"Thermo-chemical characterisation of fuel materials : metals and alloys, oxides, carbides and nitrides of uranium, plutonium and thorium. >Solution chemistry of actinides: electronic Choice of reactor components : Properties of important cladding materials, moderators, coolants, control rod materials, reflectors, Classification of reactors based on various components.>General features of nuclear reactors: fuel burn up, efficiency of reactor. Conversion & breeding ratio, doubling time, specific power, inventory of fuel, Thermal design of fuel element: linear heat rating, surface and volume heat flux, power density.>structure and oxidation states, ionic species in solution, complexing behaviour, redox reactions. >Processing of fuel materials : Separation and purification of uranium, thorium and zirconium from their ores, Enrichment of uranium systematics and processes, the gaseous diffusion method, isotopic separation work and costs, other separation process.>Conversion processes : Uranium dioxide Mixed uranium- plutonium oxide, thorium oxide, carbides of uranium, plutonium, thorium, Nitrides of uranium, plutonium and thorium, Metals and alloys.>Fuel fabrication: Conventional powder pellet route, sol-gel process for particulate fuel, pyro+O286electrochemical process for vipac fuel, >Quality control: physical quality control: dimension, density, microstructural characteristics, Chemical quality control: elemental analysis-bulk & trace.>Irradiation behaviour : effect of steep temperature gradient-oxygen redistribution, carbon transport, actinide redistribution, effect of burnup-change of O/M, C/M & N/M, swelling of fuel, fuel clad mechanical and chemical interaction, behaviour of a defective fuel rod.>Chemistry of liquid sodium: Fuel-coolant interaction, clad-coolant interaction.>Post irradiation examination : Evaluation of the performance of the fuel- mechanical and chemical integrity, axial and radial conc. profile of selected fission products in a fuel pin. Burnup measurements predictive methods and chemical methods.>PUREX process chemistry: Historical background, head end processes, general aspects of separation by solvent extraction, flowsheet description, co-decontamination and partitioning cycles, uranium purification, plutonium purification and reconversion chemistry, criticality considerations, solvent cleanup and recycle, analytical procedures.>THOREX process chemistry: Flowsheet description, salient features of process steps, importance of 232U, comparison of Purex and Thorex processes.>Thrust areas of R&D in reprocessing: Improvements in decontamination factors and recoveries, new extractants, reprocessing of high-burnup fuel and plutonium recycle, non-aqueous processes based on pyrochemical and electrochemical methods. >Nuclear wastes: Types, sources and characteristics, basic principles of management including treatment, conditioning and disposal.>Low and intermediate level wastes: Treatment of low level wastes by chemical treatment, ion exchange and membrane based methods, immobilization of intermediate level wastes in cement and polymers, new methods based on specific sorbents, zeolites and functional polymers, disposal in near surface repositories, formulation of admixtures as backfill materials in repositories.>High level wastes : Immobilization in vitreous matrices, vitrification techniques, immobilization in ceramic matrices, characterization of waste forms, disposal in deep geological repositories. >Thrust areas of R&D in waste management: Partitioning and transmutation concepts, new extractants for partitioning of minor actinides, treatment of spent ion exchange resins by chemical and photochemical oxidation, treatment of spent solvent by alkaline hydrolysis.","분야":null,"수준":"3","과목명":"Chemistry : Chemistry in Nuclear Fuel Cycle","말머리":"1","고유번호":"377","달력번호":"1","일정시작일":"2012-12-27 16:17","일정종료일":"2012-12-28 16:17","작성자회원코드":"20640"},"last_seen":"2026-09-09 05:43:16.803241+09"},{"record_key":"h:2a6b33d64c0473965d1f338f8a52f090","as_of":"2021-08-13","payload":{"내용":">8085 Microprocessor>Operational Amplifier>R-C, C-R Filter Circuits>Logic Circuits, Flip-Flops, Counters","분야":null,"수준":"3","과목명":"Electronics","말머리":"1","고유번호":"348","달력번호":"1","일정시작일":"2012-12-27 16:11","일정종료일":"2012-12-28 16:11","작성자회원코드":"47443"},"last_seen":"2026-09-09 05:43:16.803241+09"}]}