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22 Integration by partial fraction
LA VERNE RAMIR D CERTEZA
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125 видео с канала:
LA VERNE RAMIR D CERTEZA
22 Integration by partial fraction
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21 Integration by parts
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20 Improper Integral
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19 Trigonometric Groups Part 2
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18 Trigonometric Groups (Part 1)
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17 Secondary Formulas
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16 Integrals Resulting to Inverse Trigonometric functions
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15 U-technique (Trigonometric Functions)
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14 U-technique (Exponential and Logarithmic Functions)
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13 U-technique (Algebraic Functions)
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12 Area Bounded by a Curve - Example 2
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11 Area Bounded by a Curve - Example 1
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10 Intro to Finding the Area Under a Curve
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9 Motion Analysis - Example 2
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8 Motion Analysis - Example 1
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7 Finding the Equation of a Curve - Example 2
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6 Finding the Equation of a Curve - Example 1
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5 Intro to Finding the Equation of a Curve
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4 Solving a Definite Integral - Example
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3 Intro to Definite Integrals
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2 Transforming the integrand
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1 Anti-Differentiation
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9.4 Effectiveness-NTU Method
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9.3 Log Mean Temperature Difference Method
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9.2 Introduction to Heat Exchanger Analysis
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9.1 Types of Heat Exchangers
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8.6 Mixed Convection
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8.5 Nusselt Number Correlations - Free Convection Within Enclosures
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8.4 Nusselt Number Correlations - Free Convection Within Parallel Plate Channels
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8.3 Nusselt Number Correlations - Free Convection Over Surfaces
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8.2 Grashof Number and Rayleigh Number
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8.1 Mechanism of Free Convection
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7.5 Internal Forced Convection Correlations
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7.4 Thermal Analysis of Internal Flows - Constant Surface Temperature
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7.3 Thermal Analysis of Internal Flows - Constant Surface Heat Flux
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7.2 Entrance Region
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7.1 Average Velocity and Temperature
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6.3 Flow over Cylinders and Spheres
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6.2 Flow over Flat Plates
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6.1 Heat Transfer in External Flows
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Baby Reign Penales - Hydrocephalus Patient
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Unit 2.4 Higher Order Derivatives
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Unit 2.3.4 Rules of Differentiation - Derivatives of Inverse Trigonometric Functions
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Unit 2.3.3 Rules of Differentiation - Derivatives of Exponential and Logarithmic Functions
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Unit 2.3.2 Rules of Differentiation - Derivative of Trigonometric Functions
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Unit 2.3.1 Rules of Differentiation - Derivatives of Algebraic Functions
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4.2 Biot Number
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1.9 Net Radiation Heat Transfer
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5.7 Reynolds Number
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5.6 Prandtl Number
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5.5 Thermal Boundary Layer
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5.3 Classification of Fluid Flows
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5.4 Velocity Boundary Layer
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5.2 Nusselt Number
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5.1 Review on the Mechanisms of Heat Convection
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4.4 Analytical Solutions for One-Dimensional Transient Heat Conduction
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4.3 Fourier Number
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4.1 Lumped System Analysis
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3.14 Proper Fin Length
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3.13 Fin Effectiveness
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3.12 Fin Efficiency
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3.11 Heat Transfer from Finned Surfaces (Fin Tip Conditions)
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3.10 Heat Transfer from Finned Surfaces (Energy Balance on a Fin)
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3.9 Critical Radius of Insulation
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3.8 Total Thermal Resistance of Composite Materials
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3.7 Total Thermal Resistance and Overall Heat Transfer Coefficient
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3.6 Convection and Radiation Thermal Resistance
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3.5 Conduction Thermal Resistance
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3.4 Introduction to Thermal Resistance
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3.3 One-Dimensional Steady State Heat Conduction in Spheres
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2.6 Heat Conduction Equation for Cylinders and Spheres
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3.2 One-Dimensional Steady State Heat Conduction in Cylinders
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3.1 One-Dimensional Steady State Heat Conduction in Plane Walls
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2.7 Initial and Boundary Conditions
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2.3 Multidimensional Heat Transfer
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2.5 Heat Conduction Equation for Plane Walls
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2.4 Thermal Energy Generation
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2.2 Time Dependence of Temperature
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2.1 Conventions in Expressing Temperature and Heat Part 2
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2.1 Conventions in Expressing Temperature and Heat Part 1
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1.9 Simultaneous Heat Transfer
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1.8 Irradiation and Absorptivity
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1.7 Stefan Boltzmann Law
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1.6 Introduction to Convection
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1.5 Specific Heat and Thermal Diffusivity
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1.4 Thermal Conductivity
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1.3 Fourier's Law of Heat Conduction
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1.2 What is Heat?
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1.1 Applications of Heat Transfer
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19 Exact Solutions on Special Polytropic Processes of Ideal Gases
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18 Approximate Solutions on Special Polytropic Processes of Ideal Gases
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17 Introduction to Special Polytropic Processes of Ideal Gases
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16 Exact Solutions on Isentropic Processes of Ideal Gases
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15 Approximate Solutions on Isentropic Processes of Ideal Gases
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14 Introduction to Isentropic Processes of Ideal Gases
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13 Exact Solutions on Isothermal Processes of Ideal Gases
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12 Approximate Solutions on Isothermal Processes of Ideal Gases
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11 Introduction to Isothermal Processes of Ideal Gases
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10 Exact Solutions on Isometric Processes of Ideal Gases
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9 Approximate Solutions on Isometric Processes
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8 Introduction to Isometric Process of Ideal Gases
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7 Exact Solutions on Isobaric Processes of Ideal Gases
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6 Approximate Solutions on Isobaric Processes of Ideal Gases
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5 Introduction to Isobaric Process of Ideal Gases
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4 Polytropic Processes of Ideal Gases
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3 Second-Law Efficiency
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2 Irreversible Processes
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1 Types of Thermodynamic Processes
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17 Sample Problem on Solving for the Change in Specific Enthalpy
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16 Sample Problem on the Specific Heat Ratio of an Ideal Gas Mixture
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15 Sample Problem on the Specific Heat of a Mixture of Ideal Gases
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14 Sample Problem on the Change in Internal Energy and Change in Enthalpy
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13 Sample Problem on Specific Heats
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12 Entropy, Heat, and the Areas in the P-V Diagram
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11 Change in specific internal energy and change in specific enthalpy
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10 Introduction to Specific Heats
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9 Applications of the Ideal Gas Equation of State
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8 Applications of the Ideal Gas Equation of State
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7 Applications of the Ideal Gas Equation of State
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6 Applications of the Ideal Gas Equation of State
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5 Applications of the Ideal Gas Equation of State
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4 Applications of the Ideal Gas Equation of State
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3 Applications of the Ideal Gas Equation of State
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2 Applications of the Ideal Gas Equation of State
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1 Applications of Ideal Gas Equation of State
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Канал: LA VERNE RAMIR D CERTEZA
22 Integration by partial fraction
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21 Integration by parts
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20 Improper Integral
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19 Trigonometric Groups Part 2
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18 Trigonometric Groups (Part 1)
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17 Secondary Formulas
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16 Integrals Resulting to Inverse Trigonometric functions
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15 U-technique (Trigonometric Functions)
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14 U-technique (Exponential and Logarithmic Functions)
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13 U-technique (Algebraic Functions)
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12 Area Bounded by a Curve - Example 2
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11 Area Bounded by a Curve - Example 1
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10 Intro to Finding the Area Under a Curve
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9 Motion Analysis - Example 2
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8 Motion Analysis - Example 1
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7 Finding the Equation of a Curve - Example 2
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6 Finding the Equation of a Curve - Example 1
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5 Intro to Finding the Equation of a Curve
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4 Solving a Definite Integral - Example
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3 Intro to Definite Integrals
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2 Transforming the integrand
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1 Anti-Differentiation
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9.4 Effectiveness-NTU Method
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9.3 Log Mean Temperature Difference Method
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9.2 Introduction to Heat Exchanger Analysis
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9.1 Types of Heat Exchangers
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8.6 Mixed Convection
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8.5 Nusselt Number Correlations - Free Convection Within Enclosures
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8.4 Nusselt Number Correlations - Free Convection Within Parallel Plate Channels
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8.3 Nusselt Number Correlations - Free Convection Over Surfaces
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8.2 Grashof Number and Rayleigh Number
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8.1 Mechanism of Free Convection
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7.5 Internal Forced Convection Correlations
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7.4 Thermal Analysis of Internal Flows - Constant Surface Temperature
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7.3 Thermal Analysis of Internal Flows - Constant Surface Heat Flux
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7.2 Entrance Region
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7.1 Average Velocity and Temperature
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6.3 Flow over Cylinders and Spheres
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6.2 Flow over Flat Plates
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6.1 Heat Transfer in External Flows
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Baby Reign Penales - Hydrocephalus Patient
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Unit 2.4 Higher Order Derivatives
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Unit 2.3.4 Rules of Differentiation - Derivatives of Inverse Trigonometric Functions
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Unit 2.3.3 Rules of Differentiation - Derivatives of Exponential and Logarithmic Functions
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Unit 2.3.2 Rules of Differentiation - Derivative of Trigonometric Functions
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Unit 2.3.1 Rules of Differentiation - Derivatives of Algebraic Functions
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4.2 Biot Number
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1.9 Net Radiation Heat Transfer
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5.7 Reynolds Number
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5.6 Prandtl Number
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5.5 Thermal Boundary Layer
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5.3 Classification of Fluid Flows
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5.4 Velocity Boundary Layer
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5.2 Nusselt Number
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5.1 Review on the Mechanisms of Heat Convection
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4.4 Analytical Solutions for One-Dimensional Transient Heat Conduction
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4.3 Fourier Number
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4.1 Lumped System Analysis
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3.14 Proper Fin Length
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3.13 Fin Effectiveness
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3.12 Fin Efficiency
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3.11 Heat Transfer from Finned Surfaces (Fin Tip Conditions)
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3.10 Heat Transfer from Finned Surfaces (Energy Balance on a Fin)
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3.9 Critical Radius of Insulation
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3.8 Total Thermal Resistance of Composite Materials
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3.7 Total Thermal Resistance and Overall Heat Transfer Coefficient
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3.6 Convection and Radiation Thermal Resistance
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3.5 Conduction Thermal Resistance
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3.4 Introduction to Thermal Resistance
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3.3 One-Dimensional Steady State Heat Conduction in Spheres
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2.6 Heat Conduction Equation for Cylinders and Spheres
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3.2 One-Dimensional Steady State Heat Conduction in Cylinders
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3.1 One-Dimensional Steady State Heat Conduction in Plane Walls
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2.7 Initial and Boundary Conditions
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2.3 Multidimensional Heat Transfer
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2.5 Heat Conduction Equation for Plane Walls
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2.4 Thermal Energy Generation
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2.2 Time Dependence of Temperature
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2.1 Conventions in Expressing Temperature and Heat Part 2
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2.1 Conventions in Expressing Temperature and Heat Part 1
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1.9 Simultaneous Heat Transfer
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1.8 Irradiation and Absorptivity
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1.7 Stefan Boltzmann Law
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1.6 Introduction to Convection
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1.5 Specific Heat and Thermal Diffusivity
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1.4 Thermal Conductivity
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1.3 Fourier's Law of Heat Conduction
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1.2 What is Heat?
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1.1 Applications of Heat Transfer
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19 Exact Solutions on Special Polytropic Processes of Ideal Gases
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18 Approximate Solutions on Special Polytropic Processes of Ideal Gases
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17 Introduction to Special Polytropic Processes of Ideal Gases
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16 Exact Solutions on Isentropic Processes of Ideal Gases
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15 Approximate Solutions on Isentropic Processes of Ideal Gases
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14 Introduction to Isentropic Processes of Ideal Gases
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13 Exact Solutions on Isothermal Processes of Ideal Gases
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12 Approximate Solutions on Isothermal Processes of Ideal Gases
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11 Introduction to Isothermal Processes of Ideal Gases
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10 Exact Solutions on Isometric Processes of Ideal Gases
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9 Approximate Solutions on Isometric Processes
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8 Introduction to Isometric Process of Ideal Gases
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7 Exact Solutions on Isobaric Processes of Ideal Gases
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6 Approximate Solutions on Isobaric Processes of Ideal Gases
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5 Introduction to Isobaric Process of Ideal Gases
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4 Polytropic Processes of Ideal Gases
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3 Second-Law Efficiency
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2 Irreversible Processes
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1 Types of Thermodynamic Processes
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17 Sample Problem on Solving for the Change in Specific Enthalpy
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16 Sample Problem on the Specific Heat Ratio of an Ideal Gas Mixture
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15 Sample Problem on the Specific Heat of a Mixture of Ideal Gases
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14 Sample Problem on the Change in Internal Energy and Change in Enthalpy
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13 Sample Problem on Specific Heats
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12 Entropy, Heat, and the Areas in the P-V Diagram
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11 Change in specific internal energy and change in specific enthalpy
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10 Introduction to Specific Heats
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9 Applications of the Ideal Gas Equation of State
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8 Applications of the Ideal Gas Equation of State
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7 Applications of the Ideal Gas Equation of State
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6 Applications of the Ideal Gas Equation of State
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5 Applications of the Ideal Gas Equation of State
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4 Applications of the Ideal Gas Equation of State
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3 Applications of the Ideal Gas Equation of State
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2 Applications of the Ideal Gas Equation of State
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1 Applications of Ideal Gas Equation of State
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