Heat Transfer (15): Introduction to radiation heat transfer, blackbodies, blackbody examples
0:00:19 - Correction of previous lecture’s example problem 0:01:10 - Radiation heat transfer 0:04:20 - What is a blackbody? 0:05:20 - Emissive power 0:13:12 - Stefan-Boltzmann Law 0:14:17 - Integration over part of emissive power curve 0:18:10 - Band emission 0:23:10 - Example: Solar spectrum fractions with blackbody Note: This Heat Transfer lecture series (recorded in Spring 2020) will eventually replace the earlier Heat Transfer series (recorded in Fall 2015) in a couple years. The old lecture series had some errors and was lower quality. Want to see more mechanical engineering instructional videos? Visit the Cal Poly Pomona Mechanical Engineering Department's video library, ME Online: https://www.cpp.edu/meonline/ This lecture series was recorded live at Cal Poly Pomona during Spring 2020. The textbook is "Introduction to Heat Transfer" by Bergman et al.

Heat Transfer (16): Radiation heat transfer surface properties (reflectivity, transmissivity, etc.)

Heat Transfer (01): Introduction to heat transfer, conduction, convection, and radiation

Heat Transfer (18): View factors, simple view factor examples

Lecture 8: Rethinking Light

Heat Transfer (23): Convection heat transfer over external surfaces, flat plate analysis

Understanding Thermal Radiation

Lecture 37 (2013). Examples of effectiveness-NTU method. Heat exchangers

Heat Transfer (17): Radiation heat transfer surface properties examples

Thermal Conductivity, Stefan Boltzmann Law, Heat Transfer, Conduction, Convecton, Radiation, Physics

Heat Transfer (13): Transient heat conduction, lumped heat capacity model and examples

Heat Transfer (20): Surface and space resistances, radiation network models and examples

Heat Transfer L33 p1 - Effectiveness-NTU Method

Quantization of Energy Part 1: Blackbody Radiation and the Ultraviolet Catastrophe

Something is jamming GPS over Europe. Here's what we found

Lesson 6 - Heat Transfer by Radiation

40Hz Binaural Gamma Waves - Ultra Deep Concentration

Heat Transfer (09): Finned surfaces, fin examples

Reinventing Entropy | Compression is Intelligence Part 1

