Convert Online Unit Length Gigameters to Bohr radius
Convert Gigameters to Bohr radius
Gigameters
Gm ResetBohr radius
b Copy
How to use this Gigameters to Bohr radius Converter 🤔 Follow these steps to convert given Gigameters value from Gigameters units to Bohr radius units.
Enter the input Gigameters value in the text field. The given Gigameters is converted to Bohr radius in realtime ⌚ using the formula, and displayed under the Bohr radius label. You may copy the resulting Bohr radius value using the Copy button. Calculation Calculation will be done after you enter a valid input.
Gigameters to Bohr radius Conversion TableThe following table gives some of the most used conversions from Gigameters to Bohr radius.
Gigameters (Gm ) Bohr radius (b ) 0 Gm 0 b 1 Gm 18897259885999997000 b 2 Gm 37794519771999990000 b 3 Gm 56691779657999990000 b 4 Gm 75589039543999990000 b 5 Gm 94486299429999980000 b 6 Gm 113383559315999980000 b 7 Gm 132280819201999980000 b 8 Gm 151178079087999980000 b 9 Gm 170075338974000000000 b 10 Gm 188972598859999970000 b 20 Gm 377945197719999940000 b 50 Gm 944862994299999900000 b 100 Gm 1.8897259885999998e+21 b 1000 Gm 1.8897259885999996e+22 b 10000 Gm 1.8897259885999998e+23 b 100000 Gm 1.8897259885999996e+24 b
Gigameters A gigameter (Gm) is a unit of length in the International System of Units (SI). One gigameter is equivalent to 1,000,000,000 meters or approximately 621,371,192 miles.
The gigameter is defined as one billion meters, making it a measurement for extremely large distances, often used in astronomical contexts.
Gigameters are used in fields such as astronomy and space science to describe distances on a scale larger than megameters. They offer a convenient way to express the vast distances between celestial bodies and in large-scale cosmic phenomena.
Bohr radius The Bohr radius is a fundamental unit of length used in atomic physics to describe the size of the ground state orbit of an electron around a proton in a hydrogen atom. One Bohr radius is approximately 5.29177 × 10^(-11) meters or about 0.529 angstroms.
The Bohr radius is derived from the Bohr model of the atom, which describes the electron's orbit as quantized and stable. It provides a characteristic length scale for the electron's position in its lowest energy state, known as the ground state.
The Bohr radius is used in atomic and quantum physics to understand the size of atoms, atomic orbitals, and the fundamental structure of matter. It is a key parameter in the Bohr model and provides insight into the scale of atomic interactions and energy levels.
{
"conversion": "gigameters-bohr_radius",
"x_slug": "gigameters",
"y_slug": "bohr_radius",
"x": "Gm",
"y": "b",
"x_desc": "Gigameters",
"y_desc": "Bohr radius",
"category": "Length",
"symbol": "m",
"formula": "x * 18897259885999997000",
"precision": 16,
"examples": "<div class=\"example\">\n <div class=\"example_head\"><span class=\"example_n\">1</span>\n <h3 class=\"question\">Consider that the distance from Earth to the Sun is approximately 150 gigameters.<br>Convert this distance from gigameters to Bohr radius.</h3></div>\n <h4 class=\"answer\">Answer:</h4>\n <p><strong>Given:</strong></p>\n <p>The length in gigameters is:</p>\n <p class=\"step\"><span>Length<sub>(Gigameters)</sub></span> = 150</p>\n <p><strong>Formula:</strong></p>\n <p>The formula to convert length from gigameters to bohr radius is:</p>\n <p class=\"formula step\"><span>Length<sub>(Bohr radius)</sub></span> = <span>Length<sub>(Gigameters)</sub></span> × 18897259885999997000</p>\n <p><strong>Substitution:</strong></p>\n <p>Substitute given weight <strong>Length<sub>(Gigameters)</sub> = 150</strong> in the above formula.</p>\n <p class=\"step\"><span>Length<sub>(Bohr radius)</sub></span> = <span>150</span> × 18897259885999997000</p>\n <p class=\"step\"><span>Length<sub>(Bohr radius)</sub></span> = 2.8345889828999995e+21</p>\n <p><strong>Final Answer:</strong></p>\n <p>Therefore, <strong>150 Gm</strong> is equal to <strong>2.8345889828999995e+21 b</strong>.</p>\n <p>The length is <strong>2.8345889828999995e+21 b</strong>, in bohr radius.</p>\n </div>\n <div class=\"example\">\n <div class=\"example_head\"><span class=\"example_n\">2</span>\n <h3 class=\"question\">Consider that the distance from Mars to Jupiter at their closest approach is about 550 gigameters.<br>Convert this distance from gigameters to Bohr radius.</h3></div>\n <h4 class=\"answer\">Answer:</h4>\n <p><strong>Given:</strong></p>\n <p>The length in gigameters is:</p>\n <p class=\"step\"><span>Length<sub>(Gigameters)</sub></span> = 550</p>\n <p><strong>Formula:</strong></p>\n <p>The formula to convert length from gigameters to bohr radius is:</p>\n <p class=\"formula step\"><span>Length<sub>(Bohr radius)</sub></span> = <span>Length<sub>(Gigameters)</sub></span> × 18897259885999997000</p>\n <p><strong>Substitution:</strong></p>\n <p>Substitute given weight <strong>Length<sub>(Gigameters)</sub> = 550</strong> in the above formula.</p>\n <p class=\"step\"><span>Length<sub>(Bohr radius)</sub></span> = <span>550</span> × 18897259885999997000</p>\n <p class=\"step\"><span>Length<sub>(Bohr radius)</sub></span> = 1.03934929373e+22</p>\n <p><strong>Final Answer:</strong></p>\n <p>Therefore, <strong>550 Gm</strong> is equal to <strong>1.03934929373e+22 b</strong>.</p>\n <p>The length is <strong>1.03934929373e+22 b</strong>, in bohr radius.</p>\n </div>\n ",
"img": "<img class=\"conversion\" src=\"/images/unit/length/gigameters-bohr_radius.webp\" height=\"360\" width=\"640\" alt=\"Gigameters to Bohr radius Converter | Gm to b\" />",
"table1n": "<h2><span class=\"x\">Gigameters</span> to <span class=\"y\">Bohr radius</span> Conversion Table</h2><p>The following table gives some of the most used conversions from Gigameters to Bohr radius.</p><table><thead><tr><th scope=\"column\" role=\"columnheader\">Gigameters (<span class=\"unit\">Gm</span>)</th><th scope=\"column\" role=\"columnheader\">Bohr radius (<span class=\"unit\">b</span>)</th><tr></thead><tbody><tr><td>0 <span class=\"unit\">Gm</span></td><td>0 <span class=\"unit\">b</span></td></tr><tr><td>1 <span class=\"unit\">Gm</span></td><td>18897259885999997000 <span class=\"unit\">b</span></td></tr><tr><td>2 <span class=\"unit\">Gm</span></td><td>37794519771999990000 <span class=\"unit\">b</span></td></tr><tr><td>3 <span class=\"unit\">Gm</span></td><td>56691779657999990000 <span class=\"unit\">b</span></td></tr><tr><td>4 <span class=\"unit\">Gm</span></td><td>75589039543999990000 <span class=\"unit\">b</span></td></tr><tr><td>5 <span class=\"unit\">Gm</span></td><td>94486299429999980000 <span class=\"unit\">b</span></td></tr><tr><td>6 <span class=\"unit\">Gm</span></td><td>113383559315999980000 <span class=\"unit\">b</span></td></tr><tr><td>7 <span class=\"unit\">Gm</span></td><td>132280819201999980000 <span class=\"unit\">b</span></td></tr><tr><td>8 <span class=\"unit\">Gm</span></td><td>151178079087999980000 <span class=\"unit\">b</span></td></tr><tr><td>9 <span class=\"unit\">Gm</span></td><td>170075338974000000000 <span class=\"unit\">b</span></td></tr><tr><td>10 <span class=\"unit\">Gm</span></td><td>188972598859999970000 <span class=\"unit\">b</span></td></tr><tr><td>20 <span class=\"unit\">Gm</span></td><td>377945197719999940000 <span class=\"unit\">b</span></td></tr><tr><td>50 <span class=\"unit\">Gm</span></td><td>944862994299999900000 <span class=\"unit\">b</span></td></tr><tr><td>100 <span class=\"unit\">Gm</span></td><td>1<span>.8897259885999998e+21</span> <span class=\"unit\">b</span></td></tr><tr><td>1000 <span class=\"unit\">Gm</span></td><td>1<span>.8897259885999996e+22</span> <span class=\"unit\">b</span></td></tr><tr><td>10000 <span class=\"unit\">Gm</span></td><td>1<span>.8897259885999998e+23</span> <span class=\"unit\">b</span></td></tr><tr><td>100000 <span class=\"unit\">Gm</span></td><td>1<span>.8897259885999996e+24</span> <span class=\"unit\">b</span></td></tr></table>",
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[
"hands",
"Hands",
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"span_cloth",
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"fingers_cloth",
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"finger"
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"nail"
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[
"twips",
"Twip",
"twip"
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[
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"aln",
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[
"famns",
"Famns",
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[
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[
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"Centiinch",
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[
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"Kens",
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[
"russian_archin",
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[
"roman_actus",
"Roman actus",
"Roman actus"
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[
"vara_de_tarea",
"Vara De Tarea",
"vara de tarea"
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[
"vara_conuquera",
"Vara Conuquera",
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[
"vara_castellana",
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"vara castellana"
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[
"cubits_greek",
"Cubit (Greek)",
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[
"long_reeds",
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"long reed"
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[
"reeds",
"Reed",
"reed"
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[
"long_cubits",
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[
"handbreadths",
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"fingerbreadth",
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[
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[
"electron_radius_classical",
"Electron radius (classical) ",
"electron radius"
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[
"bohr_radius",
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[
"earths_equatorial_radius",
"Earth's equatorial radius",
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[
"earths_polar_radius",
"Earth's polar radius",
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[
"earths_distance_from_sun",
"Earth's distance from sun",
"earth's distance from sun"
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[
"suns_radius",
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"x_long_desc": "A gigameter (Gm) is a unit of length in the International System of Units (SI). One gigameter is equivalent to 1,000,000,000 meters or approximately 621,371,192 miles. </p><p>The gigameter is defined as one billion meters, making it a measurement for extremely large distances, often used in astronomical contexts.</p><p>Gigameters are used in fields such as astronomy and space science to describe distances on a scale larger than megameters. They offer a convenient way to express the vast distances between celestial bodies and in large-scale cosmic phenomena.",
"y_long_desc": "The Bohr radius is a fundamental unit of length used in atomic physics to describe the size of the ground state orbit of an electron around a proton in a hydrogen atom. One Bohr radius is approximately 5.29177 × 10^(-11) meters or about 0.529 angstroms. </p><p>The Bohr radius is derived from the Bohr model of the atom, which describes the electron's orbit as quantized and stable. It provides a characteristic length scale for the electron's position in its lowest energy state, known as the ground state.</p><p>The Bohr radius is used in atomic and quantum physics to understand the size of atoms, atomic orbitals, and the fundamental structure of matter. It is a key parameter in the Bohr model and provides insight into the scale of atomic interactions and energy levels."
}