International Atomic Energy Agency (IAEA) – Training Material on TRIGA Research Reactors

Multi-ethnic teenagers in science class

2010 : International Atomic Energy Agency (IAEA) – Training Material on TRIGA Research Reactors

  • Training on TRIGA Research Reactors

2010 : IAEA – Fundamentals and Basic Professional Training Courses on Nuclear Safety (BPTC)

  • Basic Professional Training Course on Nuclear Safety (BPTC)
    • Chapter 1 – NUCLEAR PHYSICS AND NUCLEAR REACTOR PRINCIPLES
    • Chapter 2 – RADIATION PROTECTION
    • Chapter 3 – BASIC PRINCIPLES OF NUCLEAR SAFETY
    • Chapter 4 – DESIGN OF NUCLEAR REACTORS
    • Chapter 5 – SITING CONDITIONS
    • Chapter 6 – SAFETY CLASSIFICATION OF STRUCTURES, SYSTEMS AND COMPONENTS
    • Chapter 7 – QUALITY ASSURANCE
    • Chapter 8 – DETERMINISTIC ACCIDENT ANALYSIS
    • Chapter 9 – PROBABILISTIC SAFETY ANALYSIS
    • Chapter 10 – LIMITING CONDITIONS FOR OPERATION
    • Chapter 11 – HUMAN PERFORMANCE
    • Chapter 12 – SURVEILLANCE PROGRAMMES
    • Chapter 13 – MAINTENANCE
    • Chapter 14 – PLANT RENEWALS, MODIFICATIONS AND UPGRADES
    • Chapter 15 – OPERATIONAL SAFETY
    • Chapter 16 – IN-PLANT ACCIDENT MANAGEMENT
    • Chapter 17 – EMERGENCY PREPAREDNESS AND RESPONSE
    • Chapter 18 – REGULATORY CONTROL
    • Chapter 19 – DECOMMISSIONING
    • Chapter 20 – WASTE MANAGEMENT
    • Chapter 21 – SAFETY CULTURE
    • Chapter 22 – PUBLIC COMMUNICATION
  • Fundamentals
    • Reactor Physics
    • Fundamentals of Thermal Hydraulics, Heat Transfer
    • Basic Safety Concepts

2010 : International Atomic Energy Agency (IAEA) – International Nuclear Safety Group (INSAG)

  • INSAG-1: (revised as INSAG-7): Summary Report on the Post-accident Review Meeting on the Chernobyl Accident
  • INSAG-2: Radionuclide Source Terms from Severe Accidnts to Nuclear Power Plants with Light Water Reactors
  • INSAG-3: (revised as INSAG-12): Basic Safety Principles for Nuclear Power Plants
  • INSAG-4: Safety Culture
  • INSAG-5: The Safety of Nuclear Power
  • INSAG-6: Probabilistic Safety Assessment
  • INSAG-7: The Chernobyl Accident: Updating of INSAG-1
  • INSAG-8: A Common Basis for Judging the Safety of Nuclear Power Plants Built to Earlier Standards
  • INSAG-9: Potential Exposure in Nuclear Safety
  • INSAG-10: Defence in Depth in Nuclear Safety
  • INSAG-11: The Safe Management of Sources of Radiation: Principles and Strategies
  • INSAG-12: Basic Safety Principles for Nuclear Power Plants 75-INSAG-3 Rev.1
  • INSAG-13: Management of Operational Safety in Nuclear Power Plants
  • INSAG-14: Safe Management of the Operating Lifetimes of Nuclear Power Plants
  • INSAG-15: Key Practical Issues in Strengthening Safety Culture
  • INSAG-16: Maintaining Knowledge, Training and Infrastructure for Research and Development in Nuclear Safety
  • INSAG-17: Independence in Regulatory Decision Making
  • INSAG-18: making Change in the Nuclear Industry: The Effects on Safety
  • INSAG-19: Maintaining the Design Integrity of Nuclear Installations Throughout Their Operating Life
  • INSAG-20: Stakeholder Involvement in Nuclear Issues
  • INSAG-21: Strengthening the Global Nuclear Safety Regime
  • INSAG-22: Nuclear Safety Infrastructure for a National Nuclear Power Programme Supported by the IAEA Fundamental Safety Principles
  • INSAG-23: Improving the International System for Operating Experience Feedback

2010 : International Commission on Radiological Protection (ICRP)

  • ICRP 84 – Pregnancy and medical radiation
  • ICRP 85 – Interventional radiology
  • ICRP 86 – Accidents in radiotherapy
  • ICRP 87 – CT dose management
  • ICRP 93 – Digital radiology

MIT Mathematics

  • MIT Course 18.010 – Single Variable Calculus (Fall 2005)
  • MIT Course 18.020 – Multivariable Calculus (Fall 2007)
  • MIT Course 18.030 – Differential Equations (Spring 2006)
  • MIT Course 18.034 – Honors Differential Equations (Spring 2004)

MIT Mechanical Engineering

  • MIT Course 2.001 - Mechanics & Materials I (Fall 2006)
  • MIT Course 2.002 – Mechanics and Materials II (Spring 2004)
  • MIT Course 2.003 - Modeling Dynamics and Control I (Spring 2005)
  • MIT Course 2.120 – Introduction to Robotics (Fall 2005)

MIT Physics

  • MIT Course 8.01 – Physics I Classical Mechanics (Fall 1999)
  • MIT Course 8.02 – Physics II Electricity and Magnetism (Spring 2007)
  • MIT Course 8.03 – Physics III (Spring 2003)

Source :

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