2.3 Assess the Web and Record Observations
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Review the web scan video clip below and share some of the features that you observed. Share ideas on how you think design elements can be used to generate new engineering ideas.
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May 22, 2021 at 1:15 am
Each strand begins from the wall of the container and finally ends on the net. Also, there are multiple pathways to reach a point on the web.
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June 14, 2021 at 2:36 pm
It seems like there’s more density and more structural complexity in the “middle” of the web.
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January 8, 2022 at 12:51 pm
Does the size and shape of container plays role in the size and shape of web?
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September 10, 2022 at 4:43 am
Hello Ladies and Gentlemen,
Structural integrity degrades over time.
Whether injecting the string or spider with a barium substance is possible, altered photography is.
The time of web dissipation and directions of dissipation shows areas of possible improvement.
New engineering ideas include material strength to regulate loss of fibre.
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October 14, 2022 at 7:36 pm
It’s fascinating how it mimics a bridge, as the center column or roadway/bridge supports the rest of the structure, under tension and compression on both sides, they seem almost equal in force. Fascinaitng. Its basically a suspension system with adhesion to the sides of the box.
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September 17, 2023 at 2:28 pm
Each strand begins from the wall of the container and finally ends on the net. Also, there are multiple pathways to reach a point on the web.
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July 7, 2025 at 2:05 am
We could develop adaptive materials that mimic the way spider webs distribute tension and maintain structural integrity. These materials could adjust their shape and density in response to external forces, much like how a spider adapts its web to its surroundings. Additionally, we could explore materials that have controlled degradation patterns, similar to how spider webs break down over time, leading to more sustainable and self-repairing structures.
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