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  2. Bat - Wikipedia

    en.wikipedia.org/wiki/Bat

    Principle of bat echolocation: orange is the call and green is the echo. In low-duty cycle echolocation, bats can separate their calls and returning echoes by time. They have to time their short calls to finish before echoes return. [95] The delay of the returning echoes allows the bat to estimate the range to their prey. [93]

  3. Animal echolocation - Wikipedia

    en.wikipedia.org/wiki/Animal_echolocation

    The term echolocation was coined by 1944 by the American zoologist Donald Griffin, who, with Robert Galambos, first demonstrated the phenomenon in bats. [1] [2] As Griffin described in his book, [3] the 18th century Italian scientist Lazzaro Spallanzani had, by means of a series of elaborate experiments, concluded that when bats fly at night, they rely on some sense besides vision, but he did ...

  4. Bechstein's bat - Wikipedia

    en.wikipedia.org/wiki/Bechstein's_bat

    The frequencies used by this bat species for echolocation lie between 35 and 108 kHz. Its echolocation calls have the most energy at 61 kHz, and have an average duration of 3.3 ms. [11] [12] Most of its echolocation is in the 50–60 kHz range.

  5. Discover the World of Bats: 5 Days of Engaging Lesson Plans - AOL

    www.aol.com/discover-world-bats-5-days-150259430...

    The unique use of echolocation to navigate their dark habitats allows bats to detect concealed objects and distinguish prey. Our five-day comprehensive unit plan dives deeper into the magnificent ...

  6. Greater horseshoe bat - Wikipedia

    en.wikipedia.org/wiki/Greater_horseshoe_bat

    The fur of the species is soft and fluffy, with the base of hairs being light grey, the dorsal side hair grey brown and the ventral side grey-white, with juvenile bats having more of an ash-grey tint to their fur. Wing membranes and ears are light grey-brown. The greater horseshoe bat weighs up to 30 grams (1.1 oz) [9] and can live up to 30 ...

  7. Schneider's leaf-nosed bat - Wikipedia

    en.wikipedia.org/wiki/Schneider's_Leaf-nosed_Bat

    The echolocation signals of H. speoris lack an initial upward frequency-modulated sweep and are of moderate duration (5.1–8.7 ms). Sequences had high duty cycles (23–41%) and very high pulse repetition rates (22.8–60.6 Hz). [4] Hipposiderid bats echolocate with combined CF/ FM-sounds at 127–138 kHz.

  8. Echolocation jamming - Wikipedia

    en.wikipedia.org/wiki/Echolocation_jamming

    Bats can make this adjustment very rapidly, often in less than 0.2 seconds. [9] Big brown bats can avoid jamming by going silent for periods of time when following another echolocating big brown bat. [10] This sometimes allows the silent bat to capture a prey in competitive foraging situations.

  9. Horseshoe bat - Wikipedia

    en.wikipedia.org/wiki/Horseshoe_bat

    Instead, they use echolocation to navigate, [14] employing some of the most sophisticated echolocation of any bat group. [24] To echolocate, they produce sound through their nostrils. While some bats use frequency-modulated echolocation, horseshoe bats use constant-frequency echolocation (also known as single-frequency echolocation). [25]

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