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Binary file added docs/assets/FieldBoundary.webp
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11 changes: 11 additions & 0 deletions docs/index.html
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Expand Up @@ -330,6 +330,17 @@ <h3>Doppler Effect</h3>
<div class="tags"><span class="tag">waves</span><span class="tag">sound</span><span class="tag">frequency</span></div>
</div>
</a>
<a class="card" href="https://openphysics.github.io/FieldBoundary/" style="--hue: 240;">
<div class="thumb"><img src="assets/FieldBoundary.webp" alt="Field Boundary simulation screenshot" loading="lazy" decoding="async" width="1154" height="753"><span class="badge">FB</span></div>
<div class="card-body">
<div class="card-head">
<h3>Field Boundary</h3>
<span class="card-arrow" aria-hidden="true">&rarr;</span>
</div>
<p>Explore Maxwell boundary conditions for E/D and B/H at a planar interface between two media.</p>
<div class="tags"><span class="tag">electromagnetism</span><span class="tag">boundary-conditions</span><span class="tag">dielectrics</span></div>
</div>
</a>
<a class="card" href="https://openphysics.github.io/FluidDynamics/" style="--hue: 244;">
<div class="thumb"><img src="assets/FluidDynamics.webp" alt="Fluid Dynamics simulation screenshot" loading="lazy" decoding="async" width="1154" height="753"><span class="badge">FD</span></div>
<div class="card-body">
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48 changes: 36 additions & 12 deletions structure/repos.json
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Expand Up @@ -31,7 +31,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "AC phasor simulation exploring resistors, inductors, and capacitors across four screens Intro (single element), Series RLC, Resonance, and Power.",
"description": "AC phasor simulation exploring resistors, inductors, and capacitors across four screens \u2014 Intro (single element), Series RLC, Resonance, and Power.",
"deployedUrl": "https://openphysics.github.io/ACPhasor",
"physicsTopics": [
"AC circuits",
Expand Down Expand Up @@ -146,7 +146,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Explore the Carnot cycle across three screens: a piston-cylinder tied to a live PV diagram, a quantitative efficiency lab with a T–S view, and the same cycle reversed as a refrigerator or heat pump.",
"description": "Explore the Carnot cycle across three screens: a piston-cylinder tied to a live PV diagram, a quantitative efficiency lab with a T\u2013S view, and the same cycle reversed as a refrigerator or heat pump.",
"deployedUrl": "https://openphysics.github.io/CarnotHeatEngine",
"physicsTopics": [
"thermodynamics",
Expand Down Expand Up @@ -174,7 +174,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Explore crystal structure across five screens: the five 2D Bravais lattices, cubic unit cells and packing factors, hexagonal vs cubic close packing, Miller indices, and aperiodic order Penrose tilings and the hat monotile, with diffraction as sharp as a crystal's but a symmetry no crystal can have.",
"description": "Explore crystal structure across five screens: the five 2D Bravais lattices, cubic unit cells and packing factors, hexagonal vs cubic close packing, Miller indices, and aperiodic order \u2014 Penrose tilings and the hat monotile, with diffraction as sharp as a crystal's but a symmetry no crystal can have.",
"deployedUrl": "https://openphysics.github.io/CrystalLattice",
"physicsTopics": [
"crystallography",
Expand Down Expand Up @@ -206,7 +206,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Interactive simulation of the Doppler Effect visualizes how the frequency of sound waves shifts with relative motion between source and observer.",
"description": "Interactive simulation of the Doppler Effect \u2014 visualizes how the frequency of sound waves shifts with relative motion between source and observer.",
"deployedUrl": "https://openphysics.github.io/DopplerEffect",
"physicsTopics": [
"waves",
Expand Down Expand Up @@ -261,7 +261,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Interactive simulation of two exoplanet-detection methods radial velocity (Doppler wobble) and transit (light-curve dip).",
"description": "Interactive simulation of two exoplanet-detection methods \u2014 radial velocity (Doppler wobble) and transit (light-curve dip).",
"deployedUrl": "https://openphysics.github.io/ExtrasolarPlanets",
"physicsTopics": [
"astronomy",
Expand All @@ -276,6 +276,30 @@
],
"status": "active"
},
{
"name": "FieldBoundary",
"displayName": "Field Boundary",
"type": "simulation",
"isSimulation": true,
"lineage": "original",
"upstream": null,
"language": [
"TypeScript"
],
"framework": "SceneryStack",
"description": "Explore Maxwell boundary conditions for E/D and B/H at a planar interface between two media.",
"deployedUrl": "https://openphysics.github.io/FieldBoundary",
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"boundary-conditions",
"dielectrics"
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{
"name": "FluidDynamics",
"displayName": "Fluid Dynamics",
Expand All @@ -287,7 +311,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Explore fluid flow concepts Intro and Lab screens for interactive fluid dynamics.",
"description": "Explore fluid flow concepts \u2014 Intro and Lab screens for interactive fluid dynamics.",
"deployedUrl": "https://openphysics.github.io/FluidDynamics",
"physicsTopics": [],
"screens": [
Expand Down Expand Up @@ -337,7 +361,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Heat as a field on a WebGPU engine temperature, conduction, convection, transport balance, and materials across five screens, with GPU-native compute shaders and a CPU reference backend.",
"description": "Heat as a field on a WebGPU engine \u2014 temperature, conduction, convection, transport balance, and materials across five screens, with GPU-native compute shaders and a CPU reference backend.",
"deployedUrl": "https://openphysics.github.io/HeatTransfer",
"physicsTopics": [
"heat transfer",
Expand Down Expand Up @@ -441,7 +465,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Interactive simulation of how light propagates through polarizers and wave plates Intro, Polarization, Wave Plates, and Lab screens.",
"description": "Interactive simulation of how light propagates through polarizers and wave plates \u2014 Intro, Polarization, Wave Plates, and Lab screens.",
"deployedUrl": "https://openphysics.github.io/LightPropagation",
"physicsTopics": [
"optics",
Expand Down Expand Up @@ -669,7 +693,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Interactive map of the Earth's tectonic plates drawn entirely from real data PB2002 plate boundaries, USGS earthquakes, Holocene volcanoes and NOAA relief plus cross-sections through a subduction zone, a spreading ridge and a transform fault, and a reconstruction clock running 50 Myr either side of the present. Two further screens port the tabs of PhET's Java simulation: crustal isostasy, and the evolution of a convergent or divergent plate boundary.",
"description": "Interactive map of the Earth's tectonic plates drawn entirely from real data \u2014 PB2002 plate boundaries, USGS earthquakes, Holocene volcanoes and NOAA relief \u2014 plus cross-sections through a subduction zone, a spreading ridge and a transform fault, and a reconstruction clock running 50 Myr either side of the present. Two further screens port the tabs of PhET's Java simulation: crustal isostasy, and the evolution of a convergent or divergent plate boundary.",
"deployedUrl": "https://openphysics.github.io/PlateTectonics",
"physicsTopics": [
"plate tectonics",
Expand Down Expand Up @@ -878,7 +902,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "GitHub template for OpenPhysics SceneryStack sims Use this template or Baton create-sim.sh; rename + scaffold-screens for one or N screens.",
"description": "GitHub template for OpenPhysics SceneryStack sims \u2014 Use this template or Baton create-sim.sh; rename + scaffold-screens for one or N screens.",
"deployedUrl": null,
"physicsTopics": [],
"screens": null,
Expand Down Expand Up @@ -947,7 +971,7 @@
},
{
"name": "SternGerlach",
"displayName": "Stern–Gerlach",
"displayName": "Stern\u2013Gerlach",
"type": "simulation",
"isSimulation": true,
"lineage": "original",
Expand All @@ -956,7 +980,7 @@
"TypeScript"
],
"framework": "SceneryStack",
"description": "Interactive Stern–Gerlach experiment: assemble analyzers, magnets, and counters; fire spin-½ / spin-1 atoms; compare Monte Carlo counts with analytic quantum predictions.",
"description": "Interactive Stern\u2013Gerlach experiment: assemble analyzers, magnets, and counters; fire spin-\u00bd / spin-1 atoms; compare Monte Carlo counts with analytic quantum predictions.",
"deployedUrl": "https://openphysics.github.io/SternGerlach",
"physicsTopics": [
"quantum mechanics",
Expand Down