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  "Title": "A Tidy Physics Engine for Building and Visualizing Orbital\nSimulations",
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    "add_body_keplerian",
    "add_planet",
    "add_sun",
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    "create_system",
    "distance_earth_moon",
    "distance_earth_sun",
    "distance_jupiter_sun",
    "distance_mars_sun",
    "distance_mercury_sun",
    "distance_neptune_sun",
    "distance_pluto_sun",
    "distance_saturn_sun",
    "distance_uranus_sun",
    "distance_venus_sun",
    "export_bodies",
    "get_bodies",
    "gravitational_constant",
    "load_solar_system",
    "load_system",
    "mass_earth",
    "mass_jupiter",
    "mass_mars",
    "mass_mercury",
    "mass_moon",
    "mass_neptune",
    "mass_pluto",
    "mass_saturn",
    "mass_sun",
    "mass_uranus",
    "mass_venus",
    "plot_orbits",
    "plot_orbits_3d",
    "plot_system",
    "plot_system_3d",
    "remove_body",
    "save_system",
    "seconds_per_day",
    "seconds_per_hour",
    "seconds_per_year",
    "shift_reference_frame",
    "simulate_system",
    "speed_earth",
    "speed_jupiter",
    "speed_mars",
    "speed_mercury",
    "speed_moon",
    "speed_neptune",
    "speed_pluto",
    "speed_saturn",
    "speed_uranus",
    "speed_venus"
  ],
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    {
      "page": "add_body",
      "title": "Add a physical body to the system",
      "topics": [
        "add_body"
      ]
    },
    {
      "page": "add_body_keplerian",
      "title": "Add a body using Keplerian orbital elements",
      "topics": [
        "add_body_keplerian"
      ]
    },
    {
      "page": "add_planet",
      "title": "Add a known solar system body by name",
      "topics": [
        "add_planet"
      ]
    },
    {
      "page": "add_sun",
      "title": "Add the Sun to the system",
      "topics": [
        "add_sun"
      ]
    },
    {
      "page": "animate_system",
      "title": "Animate the System Over Time (Smart 2D/3D Dispatch)",
      "topics": [
        "animate_system"
      ]
    },
    {
      "page": "animate_system_3d",
      "title": "Animate the System Over Time in Interactive 3D",
      "topics": [
        "animate_system_3d"
      ]
    },
    {
      "page": "create_system",
      "title": "Initialize an orbitr simulation system",
      "topics": [
        "create_system"
      ]
    },
    {
      "page": "export_bodies",
      "title": "Export body states to CSV",
      "topics": [
        "export_bodies"
      ]
    },
    {
      "page": "get_bodies",
      "title": "Extract the body table from a system",
      "topics": [
        "get_bodies"
      ]
    },
    {
      "page": "load_solar_system",
      "title": "Load a pre-built solar system",
      "topics": [
        "load_solar_system"
      ]
    },
    {
      "page": "load_system",
      "title": "Load an orbit_system from disk",
      "topics": [
        "load_system"
      ]
    },
    {
      "page": "physical_constants",
      "title": "Physical Constants for Orbital Mechanics",
      "topics": [
        "distance_earth_moon",
        "distance_earth_sun",
        "distance_jupiter_sun",
        "distance_mars_sun",
        "distance_mercury_sun",
        "distance_neptune_sun",
        "distance_pluto_sun",
        "distance_saturn_sun",
        "distance_uranus_sun",
        "distance_venus_sun",
        "gravitational_constant",
        "mass_earth",
        "mass_jupiter",
        "mass_mars",
        "mass_mercury",
        "mass_moon",
        "mass_neptune",
        "mass_pluto",
        "mass_saturn",
        "mass_sun",
        "mass_uranus",
        "mass_venus",
        "physical_constants",
        "seconds_per_day",
        "seconds_per_hour",
        "seconds_per_year",
        "speed_earth",
        "speed_jupiter",
        "speed_mars",
        "speed_mercury",
        "speed_moon",
        "speed_neptune",
        "speed_pluto",
        "speed_saturn",
        "speed_uranus",
        "speed_venus"
      ]
    },
    {
      "page": "plot_orbits",
      "title": "Plot Orbital Trajectories (Smart 2D/3D Dispatch)",
      "topics": [
        "plot_orbits"
      ]
    },
    {
      "page": "plot_orbits_3d",
      "title": "Plot 3D Interactive Orbital Trajectories",
      "topics": [
        "plot_orbits_3d"
      ]
    },
    {
      "page": "plot_system",
      "title": "Plot System Snapshot at a Single Time (Smart 2D/3D Dispatch)",
      "topics": [
        "plot_system"
      ]
    },
    {
      "page": "plot_system_3d",
      "title": "Plot 3D Interactive System Snapshot at a Single Time",
      "topics": [
        "plot_system_3d"
      ]
    },
    {
      "page": "print.orbit_system",
      "title": "Print an orbit_system",
      "topics": [
        "print.orbit_system"
      ]
    },
    {
      "page": "remove_body",
      "title": "Remove one or more bodies from the system",
      "topics": [
        "remove_body"
      ]
    },
    {
      "page": "save_system",
      "title": "Save an orbit_system to disk",
      "topics": [
        "save_system"
      ]
    },
    {
      "page": "shift_reference_frame",
      "title": "Shift the coordinate reference frame of the simulation",
      "topics": [
        "shift_reference_frame"
      ]
    },
    {
      "page": "simulate_system",
      "title": "Simulate kinematics for an orbitr system",
      "topics": [
        "simulate_system"
      ]
    }
  ],
  "_pkglogo": "https://github.com/drosenman/orbitr/raw/HEAD/man/figures/logo.svg",
  "_readme": "https://github.com/drosenman/orbitr/raw/HEAD/README.md",
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      "headings": [
        "How the 2D/3D Dispatch Works",
        "A Tilted Lunar Orbit",
        "Forcing 3D for Flat Data"
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      "engine": "knitr::rmarkdown",
      "headings": [
        "The Convention: Central Body at the Origin",
        "Why Velocity Must Be Perpendicular to Position",
        "The Circular Orbit Velocity",
        "What Happens If You Get the Speed Wrong?",
        "Escape Velocity",
        "Which Direction Does the Orbit Go?",
        "Rotating the Whole Setup",
        "When the Central Body Isn't Much Heavier",
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      "engine": "knitr::rmarkdown",
      "headings": [
        "Masses",
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        "Mean Orbital Speeds",
        "Using the Constants",
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      "engine": "knitr::rmarkdown",
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        "The Inner Solar System",
        "The Earth-Moon System",
        "The Sun-Earth System",
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      "filename": "further-reading.html",
      "title": "Further Reading",
      "engine": "knitr::rmarkdown",
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        "Books",
        "Classical Dynamics of Particles and Systems — Stephen T. Thornton & Jerry B. Marion (5th ed., 2004, Brooks/Cole)",
        "Computational Physics — Mark Newman (2012, CreateSpace)",
        "Data Structures & Algorithms in Python — John Canning, Alan Broder & Robert Lafore (2022, Addison-Wesley)",
        "Online Documentation",
        "Rcpp Documentation — CRAN",
        "Acknowledgments"
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        "Shape: Semi-Major Axis and Eccentricity",
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        "Position: True Anomaly",
        "The Conversion: Elements to Cartesian",
        "Using add_planet() for Quick Setup",
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        "Your First Simulation in 30 Seconds",
        "Customizing the Plot",
        "Watching the Orbit in Motion",
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        "Removing Bodies",
        "The Output is Just a Tibble",
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        "Next Steps"
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      "title": "Reference Frames",
      "engine": "knitr::rmarkdown",
      "headings": [
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        "Shifting the Reference Frame",
        "How It Works",
        "Keeping vs. Removing the Center Body",
        "Multiple Perspectives on the Same Data",
        "Analyzing Relative Velocities",
        "A Binary Star System from the Planet's View",
        "Practical Tips"
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      "created": "2026-04-06 15:54:15",
      "modified": "2026-04-18 18:14:11",
      "commits": 4
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      "filename": "roadmap.html",
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      "engine": "knitr::rmarkdown",
      "headings": [
        "Physics",
        "A radius argument on add_body()",
        "Non-gravitational forces",
        "General-relativistic corrections",
        "Setup helpers",
        "~~Construct bodies from Keplerian orbital elements~~ ✅ Added in v0.2.0",
        "~~A load_solar_system() convenience~~ ✅ Added in v0.2.0",
        "Quality of life",
        "Save and load simulation state",
        "Progress bar for long simulations",
        "Built-in conservation diagnostics",
        "Suggestions Welcome"
      ],
      "created": "2026-04-07 12:31:01",
      "modified": "2026-04-13 02:02:32",
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      "title": "The Physics",
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        "Why Initial Velocity Matters",
        "Gravitational Softening",
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        "1. Velocity Verlet (default, method = \"verlet\")",
        "2. Euler-Cromer (method = \"euler_cromer\")",
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