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  2. Gecko feet - Wikipedia

    en.wikipedia.org/wiki/Gecko_feet

    The interactions between the gecko's feet and the climbing surface are stronger than simple surface area effects. On its feet, the gecko has many microscopic hairs, or setae (singular seta), that increase the Van der Waals forces - the distance-dependent attraction between atoms or molecules - between its feet and the surface.

  3. Synthetic setae - Wikipedia

    en.wikipedia.org/wiki/Synthetic_setae

    The two front feet of a tokay gecko can withstand 20.1 N of force parallel to the surface with 227 mm 2 of pad area, [4] a force as much as 40 times the gecko's weight. . Scientists have been investigating the secret of this extraordinary adhesion ever since the 19th century, and at least seven possible mechanisms for gecko adhesion have been discussed over the past 17

  4. Arthropod adhesion - Wikipedia

    en.wikipedia.org/wiki/Arthropod_adhesion

    This has been observed in geckos and spiders but also in the smooth adhesive pads of ants, bush-crickets and cockroaches. [3] Adhesive hairs of geckos are non-symmetrical and feature distally pointing setae and spatulae that are able to generate increased friction and adhesion when aligned with a proximal pull. [ 3 ]

  5. Dry glue - Wikipedia

    en.wikipedia.org/wiki/Dry_glue

    Dry glue is an adhesion product based upon the adaptations of geckos' feet that allow them to climb sheer surfaces such as vertical glass. Synthetic equivalents use carbon nanotubes as synthetic setae on reusable adhesive patches.

  6. Nano tape - Wikipedia

    en.wikipedia.org/wiki/Nano_tape

    Nano tape, also called gecko tape is a synthetic adhesive tape consisting of arrays of carbon nanotubes transferred onto a backing material of flexible polymer tape. These arrays are called synthetic setae and mimic the nanostructures found on the toes of a gecko ; this is an example of biomimicry .

  7. Lamella (surface anatomy) - Wikipedia

    en.wikipedia.org/wiki/Lamella_(surface_anatomy)

    Lamellae on a gecko's foot. In surface anatomy, a lamella is a thin plate-like structure, often one amongst many lamellae very close to one another, with open space between. Aside from respiratory organs, they appear in other biological roles including filter feeding and the traction surfaces of geckos. [1]

  8. How To Get Your Feet Feeling Baby-Soft In 4 Steps ... - AOL

    www.aol.com/lifestyle/feet-feeling-baby-soft-4...

    Step 4: Make Foot Care Part Of Your Routine. Just like your skincare routine, it’s equally important to continue to give your feet some TLC—even after you’ve healed them.

  9. Self-cleaning surfaces - Wikipedia

    en.wikipedia.org/wiki/Self-cleaning_surfaces

    Self-cleaning surfaces are a class of materials with the inherent ability to remove any debris or bacteria from their surfaces in a variety of ways. The self-cleaning functionality of these surfaces are commonly inspired by natural phenomena observed in lotus leaves, gecko feet, and water striders to name a few.