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Euler's Helix 3D visualization – Modelo 3D imprimible de MakerOnline MakerOnline
Euler's Helix 3D visualization – Bild 1 Euler's Helix 3D visualization – Bild 2 Euler's Helix 3D visualization – Bild 3 Euler's Helix 3D visualization – Bild 4 Euler's Helix 3D visualization – Bild 5 Euler's Helix 3D visualization – Bild 6
Education

Euler's Helix 3D visualization

por IB2M · Education
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Here is the English version of the shortened and optimized description: Model Description: Euler's Helix The Concept This model provides a 3D visualization of Euler's formula in time-space. It plots the complex exponential function as a 3D helical curve, offering an intuitive way to understand the relationship between sine and cosine functions. Visually, the sine and cosine waves appear as the 2D orthogonal projections of a continuous rotation around a central time axis. The Mathematical Framework The model represents a complex number z rotating counterclockwise in a circle at a constant rate over time. This signal, known as a "complex sinusoid," is expressed by the equation: z(t) = A * e^(i(wt + θ)) Following Euler's formula, this rotation breaks down across the Real (Re) and Imaginary (Im) axes as follows: x(t) = A * cos(wt + θ) y(t) = A * sin(wt + θ) Where: w = 2πF (with F being the frequency, F = 1/T) θ = Phase A = Amplitude Visualizing this concept is fundamental for many applications in mathematics and physics, including Signal Processing, Fourier Transforms, and Frequency Analysis. Print and Assembly Instructions The design is engineered to be simple and practical. It consists of only 3 parts (the planes, the origin, and the helix) that snap together perfectly with a snug fit—no glue required. Step-by-step Assembly: Insert the Origin face (with two holes) into the Planes (which have two cylinders). Fold the other plane (with one cylinder) into the corresponding hole on the Origin face. Insert the Helix from the back of the Origin until you hear a "click." You can then animate the helix by twisting the back handle. ⚠️ Printing Recommendation: It is crucial to keep the supports enabled for the Helix part. Because of its tall and thin structure, supports are necessary to stabilize the print and prevent layer shifts near the top. With the default settings, they come off easily without damaging the part. 💡 Update: I have reworked and improved this model to make it
Categoría
Education
Fuente
MakerOnline
Publicado
Lo que necesitas para imprimir: Avanzado Baja confianza
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ensamblaje de 3 piezas
3 piezas para ensamblar
Soportes 1/3
Ensamblaje 2/3
Ajustes 1/3
Tamaño de cama 0/3
Postproceso 1/3
Impresora
FDM / FFF
Formato de archivo
STL
Material
PLA
Postprocesado
Pegado
Software
Cura, PrusaSlicer o similar
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