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INTRODUCTION
1.1 TEMPERATURE, HEAT AND HEAT CAPACITY
CONDUCTION
CONVECTION
RADIATION
THERMAL CONTACT CONDUCTION
OVERVIEW OF THERMAL COUPLINGS
1.2 HEAT TRANSFER
1.3 PRINCIPLES OF THERMAL DEFORMATION
PROBLEM 1: FIXED-FREE BEAM
PROBLEM 2: FIXED-GUIDED-IN-Y BEAM
PROBLEM 3: FIXED-FIXED BEAM
PROBLEM 4: FIXED-GUIDED-IN-X BEAM
PROBLEM 5: FIXED-SIMPLE SUPPORTED BEAM
PROBLEM 6: SIMPLE SUPPORTED-GUIDED-IN-X BEAM
PROBLEM 7: SIMPLE SUPPORTED BEAM
1.4 THERMO-MECHANICAL BEAM EQUATIONS ("VERGEET-MIJ-NIETJES")
CHAPTER 1 - BASICS
2.4.1 BASICS
2.4.2 RADIATIVE EXCHANGE
NEAR BLACK SURFACES
TWO SURFACES FACING EACH OTHER
NUMERICAL EXAMPLE
2.4.3 GEBHART METHOD
NUMERICAL EXAMPLE
2.4.4 NET-RADIATION METHOD
2.4.5 REFERENCES
2.4 THERMAL RADIATION
CHAPTER 2 - IN DEPTH
3.1 MATERIAL SELECTION
3.2 GEOMETRY
3.3 DESIGN PRINCIPLES
3.4 PASSIVE THERMAL CONDITIONING
3.5 ACTIVE THERMAL CONDITIONING
3.6 COMPENSATION
3.7 SUMMARY
3.8 REFERENCES
CHAPTER 3 - DESIGN
4.1 IMPORTANT VARIABLES
4.2 LUMPED CAPACITANCE MODELING
4.3 ADVANCED HAND CALCULATIONS
CHAPTER 4 - MODELING
5.1 CONTACTLESS TEMPERATURE SENSORS
5.2.1 THERMOCOUPLES
5.2.2. RESISTANCE THERMOMETERS PTC
5.2.3 RESISTANCE THERMOMETERS PRT
5.2.4 PTC THERMISTOR (ALIAS POSISTOR)
5.2.5 RESISTANCE THERMOMETERS NTC
5.2.6 SEMICONDUCTOR TEMPERATURE SENSORS
5.2.7 OTHER TYPES OF CONTACT SENSORS
5.2 CONTACT SENSORS
CHAPTER 5 - MEASUREMENT
CALCULATORS
ABOUT
THERMOMECHANICS
KNOWLEDGE BASE
CERTIFICATION PROCESS
LIST OF CERTIFIED COURSES
3-DAY COURSE OPTOMECHANICAL SYSTEM DESIGN
EDUCATION
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