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The Bermuda Triangle, also known as the Devil's Triangle, is a loosely defined region between Florida, Bermuda, and Puerto Rico in the North Atlantic Ocean.Since the mid-20th century, the area has been the subject of an urban legend, which claims that many aircraft and ships have disappeared there under mysterious circumstances.
A triangle with sides a, b, and c. In geometry, Heron's formula (or Hero's formula) gives the area of a triangle in terms of the three side lengths , , . Letting be the semiperimeter of the triangle, = (+ +), the area is [1]
The area of a triangle can be demonstrated, for example by means of the congruence of triangles, as half of the area of a parallelogram that has the same base length and height. A graphic derivation of the formula T = h 2 b {\displaystyle T={\frac {h}{2}}b} that avoids the usual procedure of doubling the area of the triangle and then halving it.
He told The Independent that the sheer volume of traffic—in a tricky area to navigate, no less—shows “the number [of ships and planes] that go missing in the Bermuda Triangle is the same as ...
A popular theory often floated to explain these disappearances is that ships in the Bermuda Triangle may get pulled under the water by methane bubbles resulting from undersea gas explosions.
Pick any one of the more than 50 ships or 20 planes that have disappeared in the Bermuda Triangle in the last century. Each one has a story without an ending, leading to a litany of conspiracy ...
Berlitz's wild ideas about the Bermuda Triangle — and, by extension, Atlantis — were definitively debunked the following year by researcher Larry Kusche, author of 1975 The Bermuda Triangle Mystery — Solved. [2] [3] In 1984, Berlitz wrote Atlantis: The Lost Continent Revealed to counter his shot down ideas from critics.
The blue area above the x-axis may be specified as positive area, while the yellow area below the x-axis is the negative area. The integral of a real function can be imagined as the signed area between the x {\displaystyle x} -axis and the curve y = f ( x ) {\displaystyle y=f(x)} over an interval [ a , b ].