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MATLAB Foundations through Electrical Engineering

Learn MATLAB through directed voltage and current, component records, waveform vectors, multichannel matrices, monitoring logic, calibration, uncertainty-aware comparison, and a complete virtual-bench evidence dossier.

Name What the Bench Measures

  1. Keep the component identity attached
  2. Give voltage a direction
  3. Turn voltage into current without losing polarity
  4. Use the passive sign convention
  5. Mini-project: bind value, unit, and tolerance

Turn Samples into Traces

  1. Build the requested sample grid
  2. Generate a sinusoid with declared phase
  3. Retain where the peak occurred
  4. Mark every threshold event
  5. Mini-project: publish an auditable waveform

Read a Multichannel Capture

  1. Separate samples from channels
  2. Extract one channel without reordering samples
  3. Measure every channel on the correct axis
  4. Combine aligned voltage and current channels
  5. Mini-project: admit a coherent bench capture

Make Monitoring Decisions

  1. Classify a reading without hiding its value
  2. Count events rather than samples
  3. Find the first crossing after arming
  4. Apply a declared calibration function
  5. Mini-project: prioritize a bounded channel status

Publish the Bench Evidence

  1. Separate DC level from effective magnitude
  2. Retain both extrema behind peak-to-peak
  3. Integrate signed power over real time
  4. Compare model and measurement on an uncertainty scale
  5. Mini-project: publish what the bench can support

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