PRATT GRAD STUDENT

Monday, October 27, 2008

Thursday, September 18, 2008

Shark Skin Coating

Shark Skin Coating

Shark Skin Coating

Shark Skin Coating

Shark Skin Coating

Shark Skin Coating

Shark Skin Coating

Shark Skin Coating

Shark Skin Inspires Ship Coating

Shark Skin Inspires Ship Coating

Shark - Wikipedia, the free encyclopedia

Shark - Wikipedia, the free encyclopedia

Shark Anatomy - Enchanted Learning Software

Shark Anatomy - Enchanted Learning Software

Blogger: Design Studio 5: Vertical 1 - Edit Post "Processing Shark Skin into Rawhide"

Blogger: Design Studio 5: Vertical 1 - Edit Post "Processing Shark Skin into Rawhide"

Blogger: Design Studio 5: Vertical 1 - Edit Post "Processing Shark Skin into Rawhide"

Blogger: Design Studio 5: Vertical 1 - Edit Post "Processing Shark Skin into Rawhide"

Web-Footed Gecko essays

Web-Footed Gecko essays

Shark Questions

Shark Questions

Lotus Plant Study

Lotus Plant Study

Nelumbo nucifera - Wikipedia, the free encyclopedia

Nelumbo nucifera - Wikipedia, the free encyclopedia

RESEARCH

SHARK SKIN Shark skin feels exactly like sandpaper because it is made up of tiny teeth-like structures called placoid scales, also known as dermal denticles. These scales point towards the tail and helps to reduce friction from surrounding water when the shark swims. Because of this, if someone rubbed the skin from the head towards the tail, it would feel very smooth. In the opposite direction it feels very rough like sandpaper. As the shark grows, the placoid scales do not increase in size, but rather the shark grows more scales. The silky shark (Carcharhinus falciformis) has small scales giving it a "silky" feel to the touch.



Researchers are using shark skin as a model for creating new coatings that prevent adhesion of algae and barnacles to boats. The new coating is modeled after sharks' placoid scales, which have a rectangular base embedded in the skin with tiny spines or bristles that poke up from the surface that prevent things from attaching to the shark's skin.






LOTUS PLANT
The Lotuses I closely observed were in various life stages; many were well-established (at Terra Flora and the Chicago Botanic Garden), and one was a young plant (in the water garden at my home). The plants were large overall, both in how much space they took and the size of leaves. They send the cylindrical stalks of both the leaves and flowers from the muddy bottom of the water high into the air.
The tuberous roots were not visible beneath the mud, but I could see the shoots emerging from the mud and out of the water. Each individual stem of leaf and flower rises separately from the root/muck (group consciousness?). The stems are hollow but extremely tough on the outside, with small, rather pointed “dots” along the entire length of the stem.
The leaves and flowers are borne high above the water’s surface, unlike those of the water lily, which float directly on the surface of the water. Initially, the leaves and flower buds are very pointy. The leaves are like tips of an arrowhead shooting up and unfurling into large, rounded, very broad cups. The cup-like leaves have a central “dot” which collects drops of water. This central, circular marking shows in the flower as well. Dew/water droplets also collect around the edges of the leaves and pods.



LOTUS -FLOWER



Flowers - large and attractive with lots of petals. They tend to be rosy-pink or white coloured. They are sacred in Buddhist and Hindu religions and are frequently represented in South Asian art and literature


TERMITE MOUNDS

CHICKEN EGG SHELL




What gives the egg shell its hardy strength is calcium carbonate – a common substance found in rocks. The team found that calcium carbonate made up almost 98 per cent of an egg shell. The remaining two per cent comprises proteins which act as the "cement" to hold the calcium carbonate together.
"Calcium carbonate acts as the bricks for construction of the house. But bricks alone can't build a strong house. You need cement to hold these building blocks together to form a mechanically strong structure," said Assoc Prof Suresh.

















































Tuesday, September 9, 2008

Biomimicry Institute - Biomimicking Sharks

Biomimicry Institute - Biomimicking Sharks

learning from mother nature

http://images.businessweek.com/ss/08/02/0209_green_biomimic/index_01.htm

Using Nature as a Design Guide

Using Nature as a Design Guide

EGG SHELL

http://kuromiku.blogspot.com/2007/09/egg-shell-art.html

CASE STUDIES

http://www.biomimicryinstitute.org/case-studies/case-studies/#

biomimicry guild

http://www.biomimicryguild.com/guild_biomimicry.html

Moshe Safdie on building uniqueness | Video on TED.com

Moshe Safdie on building uniqueness Video on TED.com

Frank Gehry as a young rebel | Video on TED.com

Frank Gehry as a young rebel Video on TED.com

Biomimicry Guild - What is Biomimicry?

Biomimicry Guild - What is Biomimicry?

Termites details

TeacherTube - Ameoba Moving with Psuedopodia 400X

TeacherTube - Ameoba Moving with Psuedopodia 400X

FWR template

FWR template

Amoebae

Amoebae

Cell Biology/Introduction/Cell size - Wikibooks, collection of open-content textbooks

Cell Biology/Introduction/Cell size - Wikibooks, collection of open-content textbooks

Amoeba - Wikipedia, the free encyclopedia

Amoeba - Wikipedia, the free encyclopedia

Biomimicry Institute - Biomimicking Sharks

Biomimicry Institute - Biomimicking Sharks

Biomimicry Institute - What is Biomimicry?

Biomimicry Institute - What is Biomimicry?

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