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Free Online Courses from the Graham Van Brunt
Graham Van Brunt
Electrical engineering specialist
45,694
Learners
14
Courses
171
Benefited
Engineering & Construction
Teaching & Academics
Teaching on Alison since Jun, 2021
Graham Van Brunt (B.Sc; P.Eng.) has made a career in the power sector of engineering. He graduated from Queen's University (coupled with subsequent studies with Wilfrid Laurier University - both in Canada) to travel the globe, apply his skills and garner his protection and control experience internationally. His passion for staying in touch with his profession and his passion for mentoring has kept him in front of an audience of learners.

Graham Van Brunt is the founder and lead instructor of PSPT (Power Systems Protection Training). He is a success-oriented manager with extensive experience in electrical utility power operations and engineering, as well as business development in nuclear power generation, maintenance and construction projects.

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🏆 Top Course by this Course Creator
AC Circuit Analysis: The Fundamentals
2,550Learners already enrolled
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Free Online Courses by Graham Van Brunt
AC Circuit Analysis: The Fundamentals
1.5-3 hrs 2,550 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Distinguish between AC and DC circuits
  • Explain why AC currents are used in the transmission of electricity over long distances
  • Compute the RMS value of the voltage and current of an alternating voltage supply
  • Recall how to change the polar notation of a phasor to its rectangular notation
  • Recall how to change the rectangular notation of a phasor to its polar notation
  • Identify the application of basic arithmetic operation of phasors in AC circuits
  • Solve for the reactance and impedance of an AC circuit
  • Analyze an RLC circuit
  • Discuss the power flow in AC circuits
  • Evaluate the resonant frequency of a capacitor-inductor circuit
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CERTIFICATE
Beginner Level
Engineering
AC Circuit Analysis: The Fundamentals
1.5-3 hrs
2550 enrolled
Electric Power Metering - Single and 3-Phase Systems
3-4 hrs 3,961 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Define power and energy
  • Summarize how to calculate power consumed by an AC circuit
  • Describe phasors and their polar and rectangular forms
  • Analyze the impact of inductive and capacitive loads on AC circuits
  • Explain the working principles and uses of different energy meters
  • Outline the idea of demand metering
  • Differentiate between real power, apparent power and reactive power in electrical systems
  • Explain single-phase and three-phase power metering
  • Compare the two types of instrument transformers and their applications
  • State Blondel's theorem
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CERTIFICATE
Intermediate Level
Engineering
Electric Power Metering - Single and 3-Phase Systems
3-4 hrs
3961 enrolled
Trigonometry in Electrical Engineering
5-6 hrs 4,417 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Define trigonometry
  • Identify the various types of triangles
  • State the triangle proportionality theorem and basic proportionality theorem
  • Summarize the unit circle
  • Recall how to prove the sum and difference formula
  • Solve trigonometric problems using the sum and difference formulas
  • Explain negative angle identities using the concept of the unit circle
  • Recall the Pythagorean theorem
  • Describe how to prove the law of sines and cosines
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CERTIFICATE
Beginner Level
Engineering
Trigonometry in Electrical Engineering
5-6 hrs
4417 enrolled
Intelligence Electrical Devices and Digital Electrical Circuits
1.5-3 hrs 3,571 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Distinguish a binary number system from the decimal number system
  • Solve the addition, subtraction and multiplication of two binary numbers
  • Categorize the different logic gates into basic, universal and special
  • Describe both positive and negative AND and OR logic gates
  • Identify NAND and NOR gates and also the exclusive XNOR and XOR gates in a circuit diagram
  • Recognize the use of 'flip-flops', 'counters' and 'shift registers' in a digital circuit
  • List the different adders, half or full-adders found in computers and processors used in the arithmetic logic units
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CERTIFICATE
Beginner Level
Engineering
Intelligence Electrical Devices and Digital Electrical Circuits
1.5-3 hrs
3571 enrolled
Engineering Calculus Simplified (Derivatives)
3-4 hrs 2,035 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Define functions and limits
  • Compare graphically the sin function with its derivative
  • Explain the Cartesian coordinates system
  • Analyze algebraic and trigonometric functions with the help of the Cartesian coordinate system
  • Describe the continuity of a function in calculus
  • Explain the concept of derivatives and their purpose
  • Compute the values of some algebraic functions
  • State the squeeze theorem
  • List and analyze various exponential and logarithmic functions and their derivatives
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CERTIFICATE
Beginner Level
Science
Engineering Calculus Simplified (Derivatives)
3-4 hrs
2035 enrolled
Fundamentals of Electrical Three-Phase Power Transformers
4-5 hrs 3,747 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Explain the working principle of a power transformer
  • Distinguish between ideal and real transformers
  • Explain how the losses in a real transformer can be reduced
  • Recall how transformers are constructed
  • Discuss the three-phase power transformers
  • Recall the vector nomenclature of transformer clock systems
  • Summarize the transformer voltage classification and cooling systems
  • Discuss how transformers can be protected from damage
  • Describe how the Buchholz relay protects a transformer
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CERTIFICATE
Intermediate Level
Engineering
Fundamentals of Electrical Three-Phase Power Transformers
4-5 hrs
3747 enrolled
Protection and Control: High-Voltage Power Circuits
5-6 hrs 10,958 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Outline the elements of a substation
  • Explain high-voltage switch configuration and elements of system protection and control
  • Describe protection relay schemes, the failure of protective schemes and types of electrical faults
  • Analyse electrical devices and basic electrical system structure
  • Discuss different types of transformers and how they are configured, connected and cooled
  • Analyse the functions of surge protective equipment
  • Discuss the operation of different types of fuses
  • Describe the operation of different types of circuit breakers, breaker control and auto reclosing
  • Discuss instantaneous overcurrent protection and timed overcurrent protection
  • Explain differential protection and impedance relaying
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CERTIFICATE
Intermediate Level
Engineering
Protection and Control: High-Voltage Power Circuits
5-6 hrs
10958 enrolled
Symmetrical Components in Three-Phase Systems
1.5-3 hrs 1,024 learners
By Graham Van Brunt
You Will Learn How To

By the end of this course, you will be able to:

  • Explain Fortescue's theory of symmetrical components
  • Distinguish the notation used to represent the phases and sequence components
  • Identify an unbalanced and a balanced three-phase power system
  • Recall the properties of the positive, negative and zero sequence components
  • Describe the properties of the ‘a’ operator and transform the b and c phases sequences into the 'a' phase sequence
  • Assess an asymmetrical system by turning the unbalanced phases into the sum of balanced phases or symmetrical components
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CERTIFICATE
Beginner Level
Electrical Engineering
Symmetrical Components in Three-Phase Systems
1.5-3 hrs
1024 enrolled
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Learner Reviews & Feedback For
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Miss All Lewisham S.
This is a very interested course which taught I about analyze algebraic and trigonometric functions with the help of the Cartesian coordinate system.
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CHRISTIAN QUEJANO D.
I find this course so useful specifically for proper protection and control of the power voltage circuits.
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