Scientifically Simple

Scientifically Simple

by Scientifically Simple
Thermodynamic Applications in Chemistry – Steam Methane Reforming
Topics covered: 1st Laws of Thermodynamics - Recap Brief Matrix Algebra Determination of independent processes Equilibrium for Steam Methane Reforming - Results Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon: https://bit.ly/4aGVlez Mo: https://bit.ly/49OMPcf
Thermodynamic Applications in Chemistry – Industrial Steam Boilers
Topics covered: Laws of Thermodynamics - Recap Thermodynamics of Industrial Boilers Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon: https://bit.ly/4aGVlez Mo: https://bit.ly/49OMPcf
Evolution of Chemistry & Thermodynamics - Part #2
Topics covered: Historical Overview - Thermodynamics & Chemistry Calorimetry & Chemical Reactions Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon: https://bit.ly/4aGVlez Mo: https://bit.ly/49OMPcf
Evolution of Chemistry & Thermodynamics - Part #1
Topics covered: Historical Overview - Thermodynamics & Chemistry Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon: https://bit.ly/4aGVlez Mo: https://bit.ly/49OMPcf
Second Law of Thermodynamics - You Can't Break Even
Topics covered: 1st Law of Thermodynamics & EOS - Quick Recap Second Law of Thermodynamics Industrial Revolution and the Need for Innovation Road to Chemical Equilibrium Industrial Example - Air Compression Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon: https://bit.ly/4aGVlez Mo: https://bit.ly/49OMPcf
Pressure, Temperature, & Volume Interdependence - One Less Variable to Worry About
Topics covered: 1st Law of Thermodynamics - Quick Recap Equations of State - A Historical Perspective Back to the 1st Law Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon - https://bit.ly/4aGVlez Mo - https://bit.ly/49OMPcf
First Law of Thermodynamics - You Can't Win
Topics covered: 1st Law of Thermodynamics - A Historical Perspective 1st Law - Enthalpy vs Internal Energy Back to Calculus - State vs Path Functions Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon - https://bit.ly/4aGVlez Mo - https://bit.ly/49OMPcf
Hydrogen Synthesis (Steam Methane Reforming - SMR)
Topics covered: Steam Methane Reforming (SMR) Plant Design Process Overview Thermodynamics High Temperature Shift versus Low Temperature Shift Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon - https://bit.ly/4aGVlez Mo - https://bit.ly/49OMPcf
Hydrogen Synthesis (An Introduction)
Topics covered: Electrolysis Technology Photonic Technology Biological Technology Carbon Reforming Technology Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon - https://bit.ly/4aGVlez Mo - https://bit.ly/49OMPcf
Engineering Fundamentals - Valves (Relief)
Topics covered: Valve Classifications Safety Valve Codes & Standards Relief Device Sizing Procedure Critical vs Subcritical Flow Criteria Real Example (Propane Tank / Fire Case) Any comments or questions? Send an email to: ScienceMadeSimple@Outlook.com Find us on YouTube: @ScientificallySimple | https://bit.ly/3WsCuzv Find us on Linkedin: Brandon - https://bit.ly/4aGVlez Mo - https://bit.ly/49OMPcf
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