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Gold coin guide

Gold Maple Leaf 1 oz — ping test & specs

The Gold Maple Leaf is the Royal Canadian Mint's 1 oz .9999 gold bullion coin, one of the purest gold coins minted. Its dense, pure-gold body gives a distinctive high-frequency ring.

Opens the free tester with this coin preselected — audio never leaves your device.

Official specifications

Weight31.103 g
Diameter30 mm
Thickness2.87 mm
Composition.9999 fine gold

Source: Royal Canadian Mint. Coin Pinger checks measured weight and diameter against these values.

Expected resonance range

Provisional confidence*
ModeExpected ringRecommended variance
c0d24.62–5.55 kHz±9.1%
c0d310.66–12.64 kHz±8.5%

A genuine Gold Maple Leaf 1 oz rings within these ranges at its c0d2/c0d3 vibration modes, fixed by its size and metal. The recommended variance is how far a genuine specimen's ring can sit from each center — built up in quadrature from real manufacturing tolerance and temperature (under 1%), phone-mic capture reproducibility (≈4%), an extra allowance on the fundamental for minting-asymmetry splitting, and a per-metal model-uncertainty term (largest for .9999 gold, whose modulus is least certain). The higher modes also carry a small thick-plate centre correction, since a real coin is not infinitely thin. The provisional-confidence tag reflects how well-established this metal's constants are: Computed from .9999 gold's annealed modulus — the least-certain material input, so the band is widened and this reference is best confirmed by calibrating a coin you know is genuine. These are guidance bands, not exact values — see the methodology for the exact formula, or calibrate your own coin in the app for a specimen-exact reference and tighten each peak per coin.

* These are computed guidance ranges. Certain your Gold Maple Leaf 1 oz is genuine but it won't match? Send us its ring — we'll dig in and improve the reference.

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How to ping test a Gold Maple Leaf 1 oz

  1. Hold — grip the coin by its center (a nodal point) in a coin ping-test holder so the rim rings freely; a fingertip at the center is a last resort.
  2. Tap — strike the edge with a striker near the microphone.
  3. Read the verdict — MATCH or NO MATCH against the peaks above, plus weight and size checks.

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The physics of the Gold Maple Leaf 1 oz ping

Those 2 peaks aren't random. When you strike the coin it flexes as a free disc in fixed patterns called vibration modes — 0 nodal circles with 2 and 3 nodal diameters, written c0d2 / c0d3. Each pattern rings at one frequency.

Where those frequencies land is set by the coin's geometry and metal. For a thin disc, frequency ∝ (thickness ÷ diameter²) × √(stiffness ÷ density). This Gold Maple Leaf 1 oz is 30 mm across and about 2.87 mm thick in .9999 fine gold, which puts its fundamental (c0d2) near 5085 Hz.

A perfect disc's modes sit near 1 : 2.3; this coin measures 1 : 2.29. That fixed spacing is the fingerprint of a genuine struck disc — Coin Pinger rejects taps that don't fit it (keys, glass, a coin lying on a hard surface).

And it's why a fake can't hide: change the metal and √(E/ρ) changes, so every mode moves. Struck in tungsten (which weighs almost exactly right) instead, the ring would land far higher and brighter — its c0d2 would land near ≈11600 Hz instead of 5085 Hz. Density can fool a scale; the ring can't be faked without the right metal.

We publish this as a Provisional confidence reference. Computed from .9999 gold's annealed modulus — the least-certain material input, so the band is widened and this reference is best confirmed by calibrating a coin you know is genuine.

Free-plate modes per A. W. Leissa, Vibration of Plates, NASA SP-160 (1969, public domain). See how we measure them →