OTTO CYCLE & Internal Combustion Engines in 10 Minutes!

Gasoline Engine Internal Combustion Engine Four Stroke Engine Air Fuel Mixture Otto Cycle Exhaust Valve Intake Valve Spark Plug Links Mentioned During the Lecture: Brayton Cycle:    • Ideal BRAYTON CYCLE Explained in 11 Minutes!   Flow Work and Energy Conservation in Open Systems:    • FLOW WORK & Energy Conservation in Open Sy...   Reference Entropy and Specific Heats:    • REFERENCE ENTROPY and Specific Heats in 12...   0:00 Background 0:24 Internal Combustion Engine Stages 2:15 The Ideal Otto Cycle 2:48 Assumptions for Ideality 3:37 Pv-Diagram for Otto Cycles 3:52 Ts-Diagram for Otto Cycles 4:22 TDC and BDC 4:45 Compression Ratio 4:55 Energy Conservation 6:59 Isentropic Relationships 7:37 Otto Cycle Example 8:15 Solution Example 1:    • Helium OTTO CYCLE Pressure and Temperature...   Example 2:    • Otto Cycle THERMAL EFFICIENCY Example in 3...   Example 3:    • Otto Cycle MEAN EFFECTIVE PRESSURE in 3 Mi...   Previous Lecture: 27. Intercooling, Reheating, and Regenerators:    • Regeneration, Intercooling, and Reheating ...   Next Lecture: 29. Standard Diesel Cycle    • Thermodynamics DIESEL CYCLE in 10 Minutes!   _______________________________________ Other Thermodynamics Lectures: 1. Thermodynamics Intro and Units Review:    • THERMODYNAMICS Basic Units and Pressure Co...   2. Zeroth Law of Thermodynamics:    • ZEROTH LAW of Thermodynamics & Temperature...   3. Closed vs. Open Systems & Intensive vs. Extensive Properties:    • CONTROL VOLUMES - Closed vs. Open - Extens...   4. First Law and Energy Types:    • Energy Conservation Equation & FIRST LAW o...   5. Efficiency in Thermodynamic Systems:    • EFFICIENCY of Thermodynamic Systems in 10 ...   6. Five Regions of T-v Diagrams:    • T-v Diagrams and PROPERTY TABLES for Therm...   7. Interpolating and Quality Derivation:    • INTERPOLATION for Thermodynamics and Mixtu...   8. Enthalpy and Internal Energy:    • ENTHALPY and INTERNAL ENERGY in 12 Minutes!   9. Compressed Liquid Properties:    • Thermodynamics COMPRESSED Liquid Propertie...   10. Ideal Gas and Compressibility Factor:    • Ideal Gas Equation and COMPRESSIBILITY Fac...   11. Specific Heats:    • Thermodynamics SPECIFIC HEATS - cv & cp - ...   12. Specific Heat Relationships of Ideal Gases and Incompressible Substances:    • Specific Heat and Energy Changes for INCOM...   13. Polytropic Process Work:    • Work Expressions for POLYTROPIC Processes ...   14. Mass and Volumetric Flow Rate:    • Volumetric and MASS FLOW RATES for Thermod...   15. Flow Work and Energy Conservation in Open Systems:    • FLOW WORK & Energy Conservation in Open Sy...   16. Pipe Flow, Nozzles, Diffusers, and Throttling Devices:    • Pipe Flow, Nozzles, Diffusers, and Throttl...   17. Turbines, Compressors, and Pumps:    • Thermodynamics - Turbines, Compressors, an...   18. Mixing Chambers and Heat Exchangers:    • Heat Exchangers and Mixing Chambers - THER...   19. Transient Systems: 20. Second Law Intro and Power Cycles:    • 2nd Law Intro and POWER CYCLES in 10 Minutes!   21. Refrigerators and Heat Pumps:    • REFRIGERATION and Heat Pump Cycles in 10 M...   22. Carnot Cycles and Reversible Processes:    • Reversible Processes and CARNOT CYCLE in 1...   23. Entropy as a Thermodynamic Property:    • Thermodynamics - ENTROPY as a Property in ...   24. Reference Entropy and Specific Heats:    • REFERENCE ENTROPY and Specific Heats in 12...   25. Isentropic Efficiency:    • Turbines, Compressors, and Pumps - ISENTRO...   26. Brayton Cycle:    • Ideal BRAYTON CYCLE Explained in 11 Minutes!   27. Intercooling, Reheating, and Regenerators:    • Regeneration, Intercooling, and Reheating ...   28. Otto Cycle:    • OTTO CYCLE & Internal Combustion Engines i...   29. Standard Diesel Cycle:    • Thermodynamics DIESEL CYCLE in 10 Minutes!   30. Rankine Cycle: . . . . ________________________________________ Other Engineering Courses (Playlists):    / lessboringlectures   Statics:    • Statics: Engineering Mechanics   Mechanics of Materials:    • Mechanics of Materials   Machine Design:    • Mechanical Engineering Design I   SolidWorks (CAD):    • SolidWorks (CAD)   Fluid Mechanics:    • Fluid Mechanics  

Helium OTTO CYCLE Pressure and Temperature Example in 3 Minutes!
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Helium OTTO CYCLE Pressure and Temperature Example in 3 Minutes!

You'll understand everything about Atkinson, Miller and Otto cycle engines after watching this video
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You'll understand everything about Atkinson, Miller and Otto cycle engines after watching this video

Otto Cycle Best Explanation Ever
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Otto Cycle Best Explanation Ever

Ideal BRAYTON CYCLE Explained in 11 Minutes!
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Ideal BRAYTON CYCLE Explained in 11 Minutes!

Thermodynamics DIESEL CYCLE in 10 Minutes!
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Thermodynamics DIESEL CYCLE in 10 Minutes!

The Ridiculous Engineering Of Jet Engines
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The Ridiculous Engineering Of Jet Engines

Nobody Explained Maxwell's Equations Like THIS!
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Nobody Explained Maxwell's Equations Like THIS!

Otto & Diesel Practice Problems
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Otto & Diesel Practice Problems

Once You Understand it, You Will Think Everything Else is Silly - Toyota E-CVT
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Once You Understand it, You Will Think Everything Else is Silly - Toyota E-CVT

TypeScript in Express – TypeScript Tutorial
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TypeScript in Express – TypeScript Tutorial

Jon Stewart on Trump's "Meritocracy" & Desi Lydic on MAGA Moving Iran Goalposts | The Daily Show
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Jon Stewart on Trump's "Meritocracy" & Desi Lydic on MAGA Moving Iran Goalposts | The Daily Show

How Does A Carburetor Work? | Transparent Carburetor at 28,546 fps Slow Mo - Smarter Every Day 259
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How Does A Carburetor Work? | Transparent Carburetor at 28,546 fps Slow Mo - Smarter Every Day 259

How a Car Engine Works
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How a Car Engine Works

The Scariest Chart in Electrical Engineering
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The Scariest Chart in Electrical Engineering

The Insane Genius of a Formula 1 Gearbox
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The Insane Genius of a Formula 1 Gearbox

mechanical light bulb from 1675
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mechanical light bulb from 1675

Why does every mammal get 1 billion heartbeats in their life?
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Why does every mammal get 1 billion heartbeats in their life?

Thermodynamics RANKINE CYCLE in 10 Minutes!
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Thermodynamics RANKINE CYCLE in 10 Minutes!

Liquid Piston Rotary Engine - Yet Another Engine That Changes Everything?
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Liquid Piston Rotary Engine - Yet Another Engine That Changes Everything?

Rocket engine cycles: How do you power a rocket engine?
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Rocket engine cycles: How do you power a rocket engine?

I BOUGHT A BROKEN GT3RS THAT PORSCHE REFUSED TO FIX
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I BOUGHT A BROKEN GT3RS THAT PORSCHE REFUSED TO FIX

Building a DIY 1kW Generator - 52V! Homemade Power & How It Works
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Building a DIY 1kW Generator - 52V! Homemade Power & How It Works

2nd Law Intro and POWER CYCLES in 10 Minutes!
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2nd Law Intro and POWER CYCLES in 10 Minutes!

Otto Cycle of Internal Combustion Engines, Gamma vs Compression Ratio, Adiabatic Processes - Physics
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Otto Cycle of Internal Combustion Engines, Gamma vs Compression Ratio, Adiabatic Processes - Physics

The Carnot Cycle Animated | Thermodynamics | (Solved Examples)
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The Carnot Cycle Animated | Thermodynamics | (Solved Examples)

Quantum Mechanics Explained FROM SCRATCH
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Quantum Mechanics Explained FROM SCRATCH

MET 320 Ideal Jet Propulsion Cycle
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MET 320 Ideal Jet Propulsion Cycle

Understanding Thermodynamic Cycle of Gas Turbine Engine | Brayton Cycle | T-S and P-V Diagrams
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Understanding Thermodynamic Cycle of Gas Turbine Engine | Brayton Cycle | T-S and P-V Diagrams

Mechanical Engineering Thermodynamics - Lec 16, pt 5 of 6: Stirling Cycle Introduction
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Mechanical Engineering Thermodynamics - Lec 16, pt 5 of 6: Stirling Cycle Introduction

Heat Engines - 2nd Law of Thermodynamics | Thermodynamics | (Solved examples)
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Heat Engines - 2nd Law of Thermodynamics | Thermodynamics | (Solved examples)