{"job_id":"anim-job-71485019-ebc0-4804-820f-8e2558f4d065","request_id":"bulk-2026-05-20T10-21-44-856Z-18-physics.11.laws-of-motion.circular-motion-centripetal","status":"complete","asset":{"primary_url":"https://storage.googleapis.com/pupiltree-animation-assets/anim-job-71485019-ebc0-4804-820f-8e2558f4d065/walkthrough.mp4","thumbnail_url":"https://storage.googleapis.com/pupiltree-animation-assets/anim-job-71485019-ebc0-4804-820f-8e2558f4d065/thumb.jpg","transcript_url":"https://storage.googleapis.com/pupiltree-animation-assets/anim-job-71485019-ebc0-4804-820f-8e2558f4d065/transcript.vtt","interactive_url":"https://storage.googleapis.com/pupiltree-animation-assets/anim-job-71485019-ebc0-4804-820f-8e2558f4d065/index.html","scenefile_url":"https://storage.googleapis.com/pupiltree-animation-assets/anim-job-71485019-ebc0-4804-820f-8e2558f4d065/scene-source.json","duration_seconds":15,"byte_size":494198,"renderer":"html_three_js_local","parameters":{"style":"auto","executor":"native_render_executor","localPath":"/app/storage/assets/anim-job-71485019-ebc0-4804-820f-8e2558f4d065","interactivity":"none","renderer_style":"three_js","durationSeconds":15,"render_manifest":{"jobId":"anim-job-71485019-ebc0-4804-820f-8e2558f4d065","request":{"gap":{"topic":"centripetal-vs-centrifugal","severity":"moderate","error_type":"wrong_assumption","memory_state":"fragile","display_topic":"Centripetal Force in Circular Motion","common_wrong_answer":"An object in circular motion has centrifugal force pushing it outward.","confidence_at_error":"high","correct_understanding":"Centripetal force always points inward toward the center; centrifugal is a pseudo-force in the rotating frame only."},"target":{"style":"auto","render":{"fps":30,"format":"mp4","resolution":"1920x1080","include_thumbnail":true,"include_transcript":true},"audience":{"tone":"neutral_instructional","grade":"11","language":"en"},"interactivity":"none","duration_seconds":15},"context":{"chapter":{"name":"Laws of Motion","ncert_class":11},"sub_topics":[{"topic":"centripetal-vs-centrifugal","key_concepts":["centripetal acceleration","centripetal force","uniform circular motion"]}]},"metadata":{"priority":"normal","trace_id":"bulk-run-2026-05-20T10-21-44-856Z"},"exam_type":"neet","asset_type":"simulation","request_id":"bulk-2026-05-20T10-21-44-856Z-18-physics.11.laws-of-motion.circular-motion-centripetal","subject_area":"physics"},"renderer":"html_three_js_local","storyboard":{"beats":[{"label":"Topic","visual":"Show the topic title and the key physical context.","narration":"Centripetal Force in Circular Motion"},{"label":"Mistake","visual":"Show the wrong approach and why it seems plausible.","narration":"An object in circular motion has centrifugal force pushing it outward."},{"label":"Correction","visual":"Show the right approach step by step.","narration":"Centripetal force always points inward toward the center; centrifugal is a pseudo-force in the rotating frame only."},{"label":"Concept","visual":"Highlight the key formula and the governing relationship.","narration":"centripetal acceleration. centripetal force. uniform circular motion"}],"title":"Centripetal Force in Circular Motion","sceneCode":"<!doctype html>\n<html lang=\"en\">\n<head>\n  <meta charset=\"utf-8\"/>\n  <meta name=\"viewport\" content=\"width=device-width, initial-scale=1\"/>\n  <title>Centripetal vs Centrifugal Force</title>\n  <style>\n    :root{--bg:#0e121a;--panel:#1c232e;--line:#303449;--accent:#fc884f;--text:#faf9f8;--muted:#9f9ea1;--blue:#627da5;--green:#8decb0;--red:#df8279;}\n    *{box-sizing:border-box;}\n    body{margin:0;font-family:\"Plus Jakarta Sans\",\"Manrope\",\"Inter\",ui-sans-serif,system-ui,sans-serif;background:radial-gradient(120% 90% at 20% -5%,#1c232e 0%,var(--bg) 55%);color:var(--text);}\n    main{min-height:100vh;display:grid;grid-template-columns:minmax(300px,380px) 1fr;}\n    aside{border-right:1px solid var(--line);background:linear-gradient(180deg,rgba(28,35,46,.86),rgba(14,18,26,.94));padding:24px;overflow:auto;backdrop-filter:blur(6px);}\n    section{padding:24px;display:grid;place-items:center;}\n    h1{margin:0 0 10px;font-size:1.65rem;line-height:1.15;}\n    .sub{margin:0 0 16px;color:var(--muted);}\n    .formula{margin:0 0 14px;padding:10px;border:1px solid var(--line);border-radius:10px;background:#11191e;color:var(--accent);font-family:ui-monospace,monospace;font-size:0.9rem;box-shadow:inset 0 0 28px rgba(229,186,103,.08);}\n    .control{display:grid;gap:6px;margin:12px 0;}\n    .control input{width:100%;accent-color:var(--accent);}\n    ul{margin:14px 0 0 18px;padding:0;color:var(--muted);display:grid;gap:6px;}\n    .stage{width:min(1020px,95%);aspect-ratio:16/9;border:1px solid #445862;border-radius:14px;position:relative;overflow:hidden;background:radial-gradient(circle at 50% 38%,#2f4a57,#0f1418 72%);box-shadow:0 18px 60px rgba(0,0,0,.45), inset 0 0 90px rgba(255,255,255,.03);}\n    .stage::before{content:\"\";position:absolute;inset:0;background:linear-gradient(180deg,rgba(255,255,255,.06),transparent 34%);pointer-events:none;}\n    .legend{position:absolute;right:12px;top:12px;padding:8px 10px;border-radius:10px;border:1px solid #465a64;background:rgba(9,14,18,.58);font-size:0.8rem;color:var(--muted);backdrop-filter:blur(4px);}\n    .mistake-box{margin:14px 0;padding:10px;border-left:3px solid var(--red);background:rgba(223,130,121,.1);border-radius:6px;font-size:0.85rem;line-height:1.4;}\n    .correction-box{margin:14px 0;padding:10px;border-left:3px solid var(--green);background:rgba(141,236,176,.1);border-radius:6px;font-size:0.85rem;line-height:1.4;}\n    @media(max-width:900px){main{grid-template-columns:1fr;}aside{border-right:0;border-bottom:1px solid var(--line);}}\n  </style>\n</head>\n<body>\n<main>\n  <aside>\n    <h1>Centripetal Force</h1>\n    <p class=\"sub\">Not centrifugal—inward only.</p>\n    <p class=\"formula\">F_c = m·v²/r</p>\n    <label class=\"control\"><span>Speed (m/s): <strong id=\"v-speed\">8</strong></span><input id=\"c-speed\" type=\"range\" min=\"2\" max=\"14\" step=\"0.5\" value=\"8\"/></label>\n    <label class=\"control\"><span>Mass (kg): <strong id=\"v-mass\">1</strong></span><input id=\"c-mass\" type=\"range\" min=\"0.5\" max=\"3\" step=\"0.1\" value=\"1\"/></label>\n    <label class=\"control\"><span>Radius (m): <strong id=\"v-radius\">4</strong></span><input id=\"c-radius\" type=\"range\" min=\"2\" max=\"6\" step=\"0.2\" value=\"4\"/></label>\n    <div class=\"mistake-box\">\n      ❌ <strong>Misconception:</strong> \"Centrifugal force pushes the object outward.\"\n    </div>\n    <div class=\"correction-box\">\n      ✓ <strong>Truth:</strong> Centripetal force points inward. Centrifugal is a pseudo-force felt only in the rotating frame.\n    </div>\n    <ul>\n      <li>• Inertia: object wants to go straight</li>\n      <li>• Center pulls: centripetal force</li>\n      <li>• Net inward = circular path</li>\n      <li>• No outward real force</li>\n    </ul>\n  </aside>\n  <section>\n    <div class=\"stage\" id=\"stage\">\n      <div class=\"legend\" id=\"legend\">Ready</div>\n      <canvas id=\"sim-cv\" style=\"position:absolute;inset:0;width:100%;height:100%;\"></canvas>\n    </div>\n  </section>\n</main>\n<script>\nconst controls = [{\"key\":\"speed\",\"label\":\"Speed\",\"min\":2,\"max\":14,\"step\":0.5,\"value\":8,\"units\":\"m/s\"},{\"key\":\"mass\",\"label\":\"Mass\",\"min\":0.5,\"max\":3,\"step\":0.1,\"value\":1,\"units\":\"kg\"},{\"key\":\"radius\",\"label\":\"Radius\",\"min\":2,\"max\":6,\"step\":0.2,\"value\":4,\"units\":\"m\"}];\nfor(const c of controls){\n  const inp=document.getElementById('c-'+c.key);\n  const out=document.getElementById('v-'+c.key);\n  inp?.addEventListener('input',()=>{out.textContent=inp.value;window.updateModel?.();});\n}\n(function(){\n  const cv=document.getElementById('sim-cv');\n  const ctx=cv.getContext('2d');\n  function resize(){const r=cv.getBoundingClientRect();if(r.width>0){cv.width=r.width;cv.height=r.height;}}\n  resize();new ResizeObserver(resize).observe(cv);\n  \n  // State\n  let angle=0;\n  let phase=0; 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