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Using a transfer function to control the colours
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Related lectures (34)
Understanding Microcontrollers: Electricity Basics
Introduces electricity basics, electronic components, and microcontroller simulation.
Analog Structures: Summary of Operational Amplifiers
MOOC: Electronics II
Covers the summary of operational amplifiers, transconductance amplifiers, and analog structure models.
Electricity Basics: Microcontrollers Understanding
Covers electricity basics, focusing on voltage, current, power, and electronic components, essential for microcontrollers understanding.
AC Circuits: Complex Representation
Covers the complex representation of AC circuits and the concept of phase difference.
Electronics: Transistors
Explores the basics of transistors, resistors, and their applications in microcontrollers.
Introduction to Electronics
MOOC: Electronics I
Delves into the practical applications of electronics in modern technology.
Asynchronous Motor Demonstration
MOOC: Electromechanical conversion II
Demonstrates an asynchronous motor performance analysis using an oscilloscope.
Neural Electrodes: Stimulation and Safety
Explores neural stimulation with electrodes, discussing current flow effects, charge injection challenges, and electrode material properties.
Homogeneous ODEs: Examples and Physics Applications
Covers solutions to homogeneous ODEs, physics applications, and function analysis.
Resistance in Conductors
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Explains the concept of resistance in conductors and its relationship with current and voltage.
Basic Concepts: Electric Circuits
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Introduces the fundamental concepts of electric circuits, including basic elements and Kirchhoff's laws.
Complex Calculations in Electricity
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Covers complex calculations in electricity, focusing on the relationship between voltage and current in circuits.
Apparent and True Power: Transformer
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Explains apparent and true power in circuits, power factor, transformers without load resistors, and transformers with load resistors.
Electric Power and Circuits
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Covers electric power calculations, resistors in series and parallel, Kirchhoff's rules, and circuits with resistors and capacitors.
Analog Electronics: Resistors & Fundamental Laws
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Covers the basics of analog circuits, including resistors and fundamental laws like Ohm's law and Kirchhoff's laws.
Kirchhoff's Laws and DC Circuits
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Explores Kirchhoff's laws in DC circuits, resistor analysis, and capacitor behavior.
Electric Circuits: DC Circuits
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Introduces electric circuits, generators, and motors, emphasizing key concepts in DC circuits.
Untitled
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Experimental Results Presentation: Tabor Experiment Analysis
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Covers the analysis of experimental results from the Tabor experiment, focusing on voltage measurements and circuit design.
Motor Characteristics
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Discusses motor characteristics such as torque, speed, current, and thermal resistances, and their impact on performance.
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