Web9 jan. 2010 · Sitting in a kayak: The distance to the horizon for someone sitting in a kayak is approximately 2.1 miles. When you’re sitting in a kayak your eyes are about 2.5 feet … Web27 sep. 2024 · If you used meters, your answer will be in kilometers, and if feet, the answer will be in miles. The distance calculated is a straight line from your eyes to the horizon. …
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Web23 jul. 2024 · At higher altitude, the horizon is at a larger angle to the near edge of the water. This is both an effect of perspective, and because you can see farther. When the … Web16 jul. 2016 · center a circle thus a flat horizon, and this will happen anywhere on a spherical surface until you get far enough away where the perspective changes, so basically space. The earth is very vast, so yes, you can see 60 miles away. And if you are high enough above sea level, you can see quite far. The ships on the ocean diabetes test clinics
physics - What would the horizon look like when standing on a …
Web31 mei 2024 · The formula to calculate distance to the horizon is: 1.17 times the square root of 156 = Distance to the horizon in nautical miles. If you want to calculate the distance at … Web12 jan. 2024 · So here’s the math. For a 170cm tall observer standing on the ground, the horizon is at a distance of 4.7 kilometres. The 2 metres tall person standing in the same place would see as far as 5 kilometres. If an observer climbed up 100 metres above sea level, the horizon would be at a distance of 36 kilometres. For an observer atop Mount ... Web9 jan. 2010 · distance to horizon (miles) = √ 7h (feet)/4 This formula gives you the rough distance (Imperial) of the apparent horizon accounting for normal refraction. This is the distance to where the sky appears to meet the Earth. If mirages are apparent, the distance to the apparent horizon may differ. cindy dyson and she was