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- Stainless Note
- Standard Notation
- State Change
- Static Strength
- Statically Determinate
- Statics
- Statics Units
- Statics Worked Examples
- Ste.W
- Steady Flow Energy Equation
- Steady Flow Energy Equation for Heat Exchangers
- Steam
- Steam Definitions
- Steam Plant
- Steam Tables
- Steam Turbine Energy Transfer Worked Example
- Steps to Finding the Forces in a Simple Frame Analytically
- Steps to Finding the Forces in a Simple Frame Graphically
- Steps to Solving Problems
- Steps to Solving Problems (Interactive)
- Stoichiometric Ratio
- Stored Charge
- Strain
- Strength Categories
- Stress
- Stress & Strain Cheat Sheet
- Stress and Strain
- Stress and Strain Introduction
- Stress in a Parallel Compound Bar due to Axial Load Worked Example
- Stress in a Parallel Compound Bar due to Thermal Expansion Worked Example
- Stress in a Parallel Compound Bar Question
- Stress in a Parallel Compound Bar Question 1
- Stress in a Parallel Compound Bar Question Example 1 Solution (Part 1)
- Stress in a Parallel Compound Bar Question Example 1 Solution (Part 2)
- Stress in a Parallel Compound Bar Question Example 1 Solution (Part 2) Maths Help
- Stress in a Parallel Compound Bar Solution (Part 1)
- Stress in a Parallel Compound Bar Solution (Part 2)
- Stress Strain Graph
- Stretcher
- Strong Magnetic Field
- Strut
- Sulphur
- Superheated Steam
- Support Reactions
- SUVAT
- SUVAT Equations
- SUVAT Questions
- Table 1.1 Fundamental characteristics of some current barrow designs
- Table of Calorific Values
- Table of Contents
- Table of Effects for Polytropic Index
- Tabs in tiddler
- Tag Cloud
- Task list
- Tau
- Technology Push
- Temperature
- Temperature Change
- Temperature Scales
- Templates
- Tensile Force
- The CE Mark
- The Engineers Characteristic Gas Law
- The Evolution of the Guitar
- The four steps for the Stoichiometric Ratio of Combustion
- The Low Voltage Directive (LVD)
- The Noise at Work Regulations 2005
- The Principles and Processes of Value Management
- The Quadratic Formula
- The Secret of Perpetual Motion
- Thermal Conductivity
- Thermal Energy Through Compound Wall
- Thermal Resistance
- Thermal Resistance Through a Pipe
- Thermo Definitions
- Thermodynamic Resources
- Thermodynamics
- Thermodynamics Worked Examples
- Theta
- Third Angular 'SUVAT' Equation
- Third Law of Thermodynamics
- Third SUVAT Equation
- This is a Test
- Tidgraph Maps
- Tie
- Time
- Time Constant
- Time Period
- Time Since Voltage Removed
- Timothy Taylor
- Titanium Note
- To Find the Secret of Free Energy
- Tolerences for Holes and Fits
- Tones Tags
- Torque
- Torque, Rotaional Energy and Power Worked Example
- Total
- Total Energy
- Total Impedance of an Capacitor in Series with a Resistance
- Total Impedance of an Inductor in Series with a Resistance
- Toxic Material
- TQM
- Trans Cap Parallel
- Trans Cap Series
- Trans Coulomb's Constant
- Trans Coulomb's Law
- Trans Current Eq
- Trans Electrical Power
- Trans Electrical Power 1
- Trans Electrical Power 2
- Trans Kirchhoff's Current Law
- Trans Kirchhoff's Voltage Law
- Trans Ohm's Law
- Trans Res Parallel
- Trans Res Series
- Trans Resistance
- Trans Voltage Decay on Capacitor
- Transformer Equation
- Transposition of Formula
- Tribology
- Trig Cheat Sheet
- Trig Maths help and Practice
- Trigonometry
- Tripple Point of Water
- Tripple Point of Water (Pressure)
- Tripple Point of Water (Temperature)
- Turning Circular Knob
- Twisting Lid
- Two Lifting Machine Worked Examples
- Typical Values of Specific Heat Capacity
- U14P4 Stoichiometric Ratio
- Ultimate Tensile Strength
- Uniaxial
- Uniform Acceleration
- Uniformaly Distributed Load Dia
- Uniformaly Distributed Load Formulas
- Uniformly Distributed Load
- Unit 1 A1
- Unit 1 A2
- Unit 1 B1
- Unit 1 B2
- Unit 1 C1
- Unit 1 D1
- Unit 1 E1
- Unit 1 E2
- Unit 1 E3
- Unit 1 Engineering Principles
- Unit 1 Learning Outcomes
- Unit 1 Section A
- Unit 1 Section B
- Unit 1 Section C
- Unit 1 Section D
- Unit 10 A
- Unit 10 A (All)
- Unit 10 A Distinction
- Unit 10 A Merit
- Unit 10 A Pass
- Unit 10 A1: 3D Parametric Modelling
- Unit 10 A2: Develop 3D Components
- Unit 10 A3: Develop a 3D Model
- Unit 10 A4: Output of Drawings from a Model
- Unit 10 B
- Unit 10 B (All)
- Unit 10 B Distinction
- Unit 10 B Merit
- Unit 10 B Pass
- Unit 10 C
- Unit 10 C (All)
- Unit 10 C Distinction
- Unit 10 C Merit
- Unit 10 C Pass
- Unit 10 EIAD
- Unit 10: B1 2D Drawing Commands
- Unit 10: B2 Development of 2D Engineering Drawings
- Unit 10: B3 Output of 2D Drawings
- Unit 10: C1 3D Modelling Commands
- Unit 10: C2 Develop 3D Components
- Unit 10: C3 Development of a 3D Model
- Unit 10: C4 Output of Product Drawings
- Unit 11 M1 Example Question
- Unit 11 M1 Solution
- Unit 11 M1 Solution:Joint 1
- Unit 11 M1 Solution:Joint 2
- Unit 11 M1 Solution:Joint 3
- Unit 11 M1 Solution:Reaction Forces
- Unit 11 M1 Solution:The Details
- Unit 11 M3 Example Question
- Unit 11 M3 Solution (1)
- Unit 11 M3 Solution (1) Step 1
- Unit 11 M3 Solution (1) Step 1 Part 1
- Unit 11 M3 Solution (1) Step 1 Part 2
- Unit 11 M3 Solution (1) Step 2
- Unit 11 M3 Solution (1) Step 3
- Unit 11 M3 Solution (2)
- Unit 11 M3 Solution (3)
- Unit 11 M4 Example Question
- Unit 11 M4 Solution
- Unit 11 P1 Definitions
- Unit 11 P1 Example Question
- Unit 11 P3 Example Question
- Unit 11 P3 Solution (a)
- Unit 11 P3 Solution (b)
- Unit 11 P3 Solution (b): Area and Diameter
- Unit 11 P3 Solution (b): Area from Stress
- Unit 11 P3 Solution (b): Working Stress
- Unit 11 P5 Example Question
- Unit 11 P5 Solution Part 1
- Unit 11 P5 Solution Part 1 Step 1
- Unit 11 P5 Solution Part 1 Step 2
- Unit 11 P5 Solution Part 1 Step 3
- Unit 11 P5 Solution Part 2
- Unit 11 P5 Solution Part 3
- Unit 11 P6 Example Question
- Unit 11 P6 Solution a
- Unit 11 P6 Solution b
- Unit 11 P7 Example Question
- Unit 11 P7 Example Solution Part 1
- Unit 11 P7 Example Solution Part 2
- Unit 14 D1 Example Question
- Unit 14 D1 Steps
- Unit 14 M1 Example Question
- Unit 14 M1 Solution
- Unit 14 M1 Solution: Characteristic Gas Law
- Unit 14 M1 Solution: Polytropic Equation
- Unit 14 M2 Example Question
- Unit 14 M2 Solution: Step 1
- Unit 14 M2 Solution: Step 2
- Unit 14 M2 Solution: Step 3
- Unit 14 M2 Solution: Step 4
- Unit 14 M2 Steps
- Unit 14 M3 Worked Example
- Unit 14 M4 Example Question and Solution
- Unit 14 P1 Example Question
- Unit 14 P1 Solution Q1
- Unit 14 P1 Solution Q2
- Unit 14 P1 Solution Q3
- Unit 14 P2 Example Question
- Unit 14 P2 Solution Part 1
- Unit 14 P2 Solution Part 1: Step 1
- Unit 14 P2 Solution Part 1: Step 2
- Unit 14 P2 Solution Part 2
- Unit 14 P2 Solution Part 2: Step 1
- Unit 14 P2 Solution Part 2: Step 2
- Unit 14 P3 Example Question
- Unit 14 P3 Solution
- Unit 14 P3 Solution Working Out
- Unit 14 P5 Worked Example
- Unit 14 P6 Example Question
- Unit 14 P6 Solution Part 1
- Unit 14 P6 Solution Part 2
- Unit 14 P7 Example Question
- Unit 14 P7 Solution
- Unit 14 P8 Example Question
- Unit 14 P8 Solution
- Unit 27 A
- Unit 27 A (All)
- Unit 27 A Distinction
- Unit 27 A Merit
- Unit 27 A Pass
- Unit 27 A1: Static Parameters
- Unit 27 A2: Analysis of Statically Determinate Framed Structures
- Unit 27 B
- Unit 27 B (All)
- Unit 27 B Distinction
- Unit 27 B Merit
- Unit 27 B Pass
- Unit 27 B1: Beam Parameters
- Unit 27 B2: Theoretical Beam Analysis
- Unit 27 B3: Experimental Beam Analysis
- Unit 27 C
- Unit 27 C (All)
- Unit 27 C Distinction
- Unit 27 C Merit
- Unit 27 C Pass
- Unit 27 C1: Axial Loading
- Unit 27 C2: Bending Loading
- Unit 27 C3: Shear Loading
- Unit 27 C4: Design Considerations
- Unit 27 Worked Examples Assignment 1
- Unit 27 Worked Examples Assignment 2
- Unit 27 Worked Examples Assignment 3
- Unit 27:Static Mechanical Principles in Practice
- Unit 31: Thermodynamics Principles and Practice
- Unit 4 A
- Unit 4 A (All)
- Unit 4 A Distinction
- Unit 4 A Merit
- Unit 4 A Pass
- Unit 4 A1: Business Functions and Key Activities
- Unit 4 A2: Trade Considerations
- Unit 4 A3: Competitive Advantage
- Unit 4 Applied Commercial and Quality Principles in Engineering
- Unit 4 Assessment 2 Lesson 2
- Unit 4 B
- Unit 4 B (All)
- Unit 4 B Distinction
- Unit 4 B Merit
- Unit 4 B Pass
- Unit 4 B1: Reasons for Cost Control and Types of Costs
- Unit 4 B2: Activity-Based Costing Method
- Unit 4 C
- Unit 4 C (All)
- Unit 4 C Distinction
- Unit 4 C Merit
- Unit 4 C Pass
- Unit 4 C1: Quality Systems
- Unit 4 C2: The Principles and Processes of Value Management
- Unit 5 D1 Step 1
- Unit 5 D1 Step 2
- Unit 5 D1 Step 3
- Unit 5 M1 Example Question
- Unit 5 M1 Solution
- Unit 5 M1 Solution: Direct Stress
- Unit 5 M1 Solution: Direct Stress FOS
- Unit 5 M1 Solution: Shear Stress
- Unit 5 M1 Solution: Shear Stress FOS
- Unit 5 M2 Step 1
- Unit 5 M2 Step 2
- Unit 5 M2 Step 3
- Unit 5 P1 Example Question
- Unit 5 P1 Worked Example
- Unit 5 P3 (a) Solution
- Unit 5 P3 (a) Solution:Extension
- Unit 5 P3 (a) Solution:Strain
- Unit 5 P3 (a) Solution:Stress
- Unit 5 P3 (b) Solution
- Unit 5 P3 (b) Solution: Deflection
- Unit 5 P3 (b) Solution: Shear Strain
- Unit 5 P3 (b) Solution: Shear Stress
- Unit 5 P3 Example Question
- Unit 5 P4 Example Question
- Unit 5 P4 Solution Q1
- Unit 5 P4 Solution Q2
- Unit 5 P4 Solution Q3
- Unit 5 P5 Example Question
- Unit 5 P5 Solution
- Unit 5 P5 Solution Step 1
- Unit 5 P5 Solution Step 2
- Unit 5 P5 Solution Step 3
- Unit 5 P5 Solution Step 4
- Unit 5 P6 Solution
- Unit 5 P7 Example Question
- Unit 5 P7 Solution
- Universal Gas Constant
- Universal Gas Law
- Up Thrust
- Upsilon
- Upthrust on an Immersed Body Worked Example
- Use of Stoichiometric Ratio Worked Example
- Using FOS Example Question 1
- Using FOS Example Question 1 Solution
- Using FOS to Drive Design Decision to Determine Number or Rivets Needed Worked Example
- Using Shear Stress Example Question 1
- Using Shear Stress Example Question 1 Solution
- Using Shear Stress to Determine Force Needed for a Hole Punch Worked Example
- Using Tags Two
- Vacuum Permittivity
- Value Added
- Value at Start
- Value at Time 't'
- Values of Coefficient of Linear Expansion
- Values of the Polytropic Index
- Variable
- Variables
- Vectors
- Vectors Full
- Vectors Introduction
- Velocity
- Vertical Component
- Voltage
- Voltage Arcoss Capacitor
- Voltage Decay on Capacitor
- Volume
- Volume of Dry Steam
- Volume of Partially Dry Steam
- Water Vapour
- Waveform Average Value
- Weight
- WELCOME
- Welcome
- Wet Steam
- What is Quality?
- Where do the Equations for the Internal Stress in a Parallel Compound Bar Come From?
- Where does Bernoulli's Equation Come From?
- Where does Compound Axial Stress Formula Come From?
- Where does F.E. equation come from?
- Where does the H.E. equation come from?
- Where does the K.E.equation come from?
- Where Does the Linear Compound Bar Equation Come From?
- Where does the Non-Flow Work Equation Come From?
- Where does the P.E. equation come from?
- Where the 'I' Equation Comes From
- Winding Drum/ Rotational Machine Worked Example
- Work
- Work and P-V Graphs
- Work Done by Change in Gas Volume Worked Example
- Work for Isothermal Compression
- Work for Polytropic Change
- Work in a Non-Flow System
- Work Under a Simple P-V Graph
- Work you bastard
- Worked Examples
- Worked Examples For Unit 1 Section B
- Worked Examples For Unit 1 Section C
- Worked Examples For Unit 1 Section D
- Xi
- Young's Modulus
- Young's Modulus Data
- Zeta