Thursday, February 23, 2012

A Couple of Tuesdays Ago

Soccer throw off!!!




Did I really catch Nathan smiling?? :D


Wade and Seth kicking it out! 
Oh Wade did you lose?

Mary Beth going for the ball

Ouch, that must have hurt :O!!

Really, is Wade Tebowing??? :D

What happened???? :P

Wade, the prime, and sole citizen of Grumpeville!! :D


Sarah catching a breath

Heading in!! I think we all had fun!!! Right? :)

The King of Cat and Mouse Games!


Saturday, February 18, 2012

Snap Shot Memories

             Here are some photos from church Thursday night. They were supposed to be practicing I think, so I decided to snap a few shots, and here they are. If you feel left out because your pictures not here, don't worry, you may appear in future posts. :)


Hannah Templeton  
Josiah  playing his Cello

Hannah playing her recorder 
Lydia and her violin

Timothy and his Guitar

Sam, thinking :D

Bethany and Lydia :D

Mary Beth 

Playing with feeling :)

In thought......

Friday, February 3, 2012

A Spiders Secret


Picture of a spider web made by a Darwin's bark spider, a new species said to weave the world's biggest spider webs -- and the strongest
An approximately three-foot-wide (meter-wide) Darwin's bark spider web hangs above a river in Madagascar.



Not many of us see a spider and think, 'that really is some awesome insect'.  Most of us even are scared of the sometimes tiny, for the most part, harmless insects.  But when we are pestered by the fact that we are frightened by something so tiny, we almost always fail to look at the bright side of things.  Did you know that the spider is capable of making a very intricate and ingenious silk, some of the finest in fact of all the silk making insects, which by the way is stronger than steel.  Only lately have scientists actually discovered he essential part of how spiders webs remain so strong, and look so frail.  As you can see in the picture above, this spiders web has only seven supporting strands, but remains hanging despite the tremendous weight of the web.  Most of the time this web will have around thirty large moths trapped in the sticky coating on the silk.  Following is an article from the University of Massachusetts.


Secret Behind the Strength of Spider Webs


Published on February 3, 2012 at 3:23 AM

By Cameron Chai

Research at Massachusetts Institute of Technology (MIT) has revealed that the resilience of spider webs depends not only on the strength of the spider silk but also on its stretchiness and web structure.


Spider Web. Photo: Francesco Tomasinelli and Emanuele Biggi
Associate professor of civil and environmental engineering at MIT, Markus Buehler, along with his colleagues have analyzed the structure of spider webs and found important properties related to the resilience of webs. The findings can help develop better damage-resistant synthetic materials and networked systems.
Spider silk is considered to be stronger than steel and is one among the strongest materials known to man. It derives its robustness from its stretchiness, a property which was considered as a weakness. When pulled, spider silk initially softens and stretches. When the pulling force is increased it stiffens. This property helps the spider silk resist damage.
The research team analyzed the response of materials to stress when they were arranged in a spider web pattern. Materials which initially are stretchy and then become “plastic” and others which performed like linear springs were not as effective in responding to the stresses.
Spider webs have a flaw-tolerant system. Damage that occurs is localized and can be repaired. Even if it is not repaired the web mechanically functions as before. The research team tested their findings on actual webs. Initially, the entire spider web deformed, but later only the threads on which the force was applied stretched out and became stiff. When more force was applied it broke. The team found that the web broke only where it was pulled.
In simulated studies spider webs were nearly able to withstand the strength of a hurricane. Buehler states that the way the spider web gains actual strength is more important than the strength factor itself. Materials with complex, non-linear responses can have significant advantages, he added.
Earthquake-resistant buildings dissipate energy to reduce load on their structure, and when the buildings fail, they fail completely. Based on the spider web principle, future buildings can be designed to flex to a certain level and then allow only certain structural elements to break. This will help the other parts of the building to survive. The building can also be repaired and demolition can be avoided. The same spider web design principles can be applied to armored vehicles and airplanes and networked systems.
The findings of the study have been published in Nature.


FUN FACT!!!! DID YOU KNOW THAT DURING WORLD WARII THE ALLIED FORCES USED THE BLACK WIDOWS SILK FOR THE SIGHTS ON THEIR ARTILLERY GUNS, BECAUSE THEIR WAS NOTHING ELSE THAT COULD STAND UP TO THE CONSTANT VIBRATION, AND JERKING PRESSURE!!!!