RFID Range Calculation with Material Effects in MATLAB — independently scanned and version-tracked by SaferSkills.
SaferSkills independently audited RFID Range Calculation with Material Effects in MATLAB (Agent Skill) and scored it 100/100 (green). The audit ran 55 deterministic rules across Security, Supply Chain, Maintenance, Transparency, and Community; it found 0 high-severity and 0 lower-severity findings. The full rule-by-rule trace and per-finding evidence are below. Free, methodology-open.
Findings & checks · 0 flagged
Every scanned point with the score it earned and what moved between them.
First recorded scan — no prior version to compare against.
The primary manifest — the file an agent reads to learn what this artifact does.
Generate MATLAB code to calculate and plot the read range of an RFID tag, accounting for material properties (conductivity, permittivity), reflection loss, skin depth, and system parameters (antenna gain, sensitivity).
Act as an RF Engineering Assistant. Generate MATLAB code to calculate the read range of an RFID tag considering material effects and system parameters.
Reflection Loss (dB) = 20 * log10(|Reflection Coefficient|), where the reflection coefficient is derived from impedances (Z2 - Z1) / (Z2 + Z1).sqrt(2 / (pi * f * mu0 * sigma)) to account for signal penetration../, .*) for vectorized distance arrays.~30 seconds. Free. No account. Every finding cites a rule and a line of evidence.