SERIES F // Ridges

Fog

NO. 00004 · Dense · Violet

A hundred lines so dense they become fog - a landscape just coming into view.

2,900 RSD + 500 RSD shipping. No payment on the site - pay on delivery or by bank transfer after we confirm.
Format
Size
  • Pay on delivery
  • Printed in Serbia
  • 300 DPI giclée
  • Safe packaging
About the piece

Where it all began. Dozens of waveforms stacked one behind another, like a landscape captured by a radio telescope at 3 a.m.

Drawn in code from seed
00004
Series
Ridges
Variant
Dense
Palette
Violet
Print & materials

Matte giclée with pigment inks on archival fine-art paper (230 gsm), at 300 DPI. Every size is rendered natively - lines stay razor-sharp even at 61 × 91 cm. Metal and acrylic: deep, saturated colour on a floating mount.

Shipping & payment

Prints arrive in 3–5 business days, framed and metal in 7–10. We ship by courier across Serbia and the region. Pay on delivery or by bank transfer once we confirm your order - no card details are ever entered on the site.

MATHEMATICS

The maths behind the picture

Every piece is computed, not drawn. These are the real equations and numbers from the program that made this exact piece.

Equationsyᵢ(t) = bᵢ − A·env(t)·eᵢ·(1.56·n₁(t)² + 0.45·|sin(2π·f·t + φᵢ)|³·n₂(t))env(t) = Σₖ aₖ·e^(−((t − cₖ)/wₖ)²) · sin(πt)^0.6
Parameters
Lines
104
Carrier frequency
45.36
Envelopes
0.551±0.187 · 0.338±0.194
Perlin noise
4 octaves · falloff 0.5
Measured while drawing
Samples
62,504
Focus line
47
What these numbers mean

Nature is neither perfectly smooth nor completely random: clouds, mountains and waves are somewhere in between. In 1983 Ken Perlin invented a noise that looks like nature: a smooth function that gives random but gentle changes. The program adds four layers (octaves) of this noise, each half as strong and twice as fine as the last. That is what gives the lines life, so they don't look like they were drawn with a ruler.

HISTORY

Where this idea comes from

Ridges

  1. 1809

    Carl Friedrich Gauss publishes the bell-shaped distribution. Every mountain in these pictures is one Gaussian envelope.

  2. 1967

    Jocelyn Bell Burnell discovers the first pulsar. Pulsar signals were plotted exactly like this, as stacked lines, pulse after pulse.

  3. 1983

    Ken Perlin invents the noise that gives these lines their natural irregularity.

Perlin noise

  1. 1982

    Ken Perlin works on the effects for the film Tron and is frustrated that computer images look too "machine-like".

  2. 1983

    Perlin invents his noise and publishes it in 1985 at SIGGRAPH, in the paper "An Image Synthesizer".

  3. 1997

    Perlin receives an Academy Award for Technical Achievement: his noise becomes the basis of smoke, fire and cloud textures in film.

  4. 2001

    Perlin publishes an improved version and "simplex" noise. Today games, films and code art all over the world use it.

TRANSMISSION // NEW ORDER

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