(Removed margin-top in reset wiki style) |
(Added sub-descriptions) |
||
Line 16: | Line 16: | ||
padding:0px; | padding:0px; | ||
width:100% !important; | width:100% !important; | ||
+ | margin-top:-26px; | ||
margin-left:0px ; | margin-left:0px ; | ||
} | } | ||
Line 219: | Line 220: | ||
<!------------------------ SUB-DESCRIPTIONS START ------------------------> | <!------------------------ SUB-DESCRIPTIONS START ------------------------> | ||
<div class="home-sub-descriptions-wrapper"> | <div class="home-sub-descriptions-wrapper"> | ||
− | + | <div class="home-sub-description-left"> | |
− | + | <div class="home-sub-description-left-content"> | |
− | + | <div class="sub-description-sub-heading-left"> | |
+ | Ideation. | ||
+ | </div> | ||
+ | <hr class="yellow-accent-line-left-sub"> | ||
+ | <p>We are building a <span id="home-description-emphasis-words">biological band-pass filter</span>. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a <span id="home-description-emphasis-words">frequency-response</span> low-pass and high-pass filter to create a <span id="home-description-emphasis-words">novel</span> band-pass filter.</p> | ||
+ | </div> | ||
+ | <div class="home-sub-description-right-image"> | ||
+ | <img src="https://scontent-lga3-1.xx.fbcdn.net/v/t1.0-9/30582017_1320346971399297_7632589328069165056_o.jpg?_nc_cat=0&oh=02afd16c56a7d6e48ce41fa1fab2bec9&oe=5C1ABEB3"> | ||
+ | </div> | ||
</div> | </div> | ||
− | <div class="home-sub-description- | + | <div class="home-sub-description-right"> |
− | + | <div class="home-sub-description-right-content"> | |
+ | <div class="sub-description-sub-heading-right"> | ||
+ | Ideation. | ||
+ | </div> | ||
+ | <hr class="yellow-accent-line-right-sub"> | ||
+ | <p>We are building a <span id="home-description-emphasis-words">biological band-pass filter</span>. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a <span id="home-description-emphasis-words">frequency-response</span> low-pass and high-pass filter to create a <span id="home-description-emphasis-words">novel</span> band-pass filter.</p> | ||
+ | </div> | ||
+ | <div class="home-sub-description-left-image"> | ||
+ | <img src="https://scontent-lga3-1.xx.fbcdn.net/v/t1.0-9/30582017_1320346971399297_7632589328069165056_o.jpg?_nc_cat=0&oh=02afd16c56a7d6e48ce41fa1fab2bec9&oe=5C1ABEB3"> | ||
+ | </div> | ||
</div> | </div> | ||
− | |||
+ | <div class="home-sub-description-left2"> | ||
+ | <div class="home-sub-description-left-content"> | ||
+ | <div class="sub-description-sub-heading-left"> | ||
+ | Ideation. | ||
+ | </div> | ||
+ | <hr class="yellow-accent-line-left-sub"> | ||
+ | <p>We are building a <span id="home-description-emphasis-words">biological band-pass filter</span>. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a <span id="home-description-emphasis-words">frequency-response</span> low-pass and high-pass filter to create a <span id="home-description-emphasis-words">novel</span> band-pass filter.</p> | ||
+ | </div> | ||
+ | <div class="home-sub-description-right-image"> | ||
+ | <img src="https://scontent-lga3-1.xx.fbcdn.net/v/t1.0-9/30582017_1320346971399297_7632589328069165056_o.jpg?_nc_cat=0&oh=02afd16c56a7d6e48ce41fa1fab2bec9&oe=5C1ABEB3"> | ||
+ | </div> | ||
</div> | </div> | ||
− | <div class="home-sub-description- | + | <div class="home-sub-description-right2"> |
− | + | <div class="home-sub-description-right-content"> | |
+ | <div class="sub-description-sub-heading-right"> | ||
+ | Ideation. | ||
+ | </div> | ||
+ | <hr class="yellow-accent-line-right-sub"> | ||
+ | <p>We are building a <span id="home-description-emphasis-words">biological band-pass filter</span>. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a <span id="home-description-emphasis-words">frequency-response</span> low-pass and high-pass filter to create a <span id="home-description-emphasis-words">novel</span> band-pass filter.</p> | ||
+ | </div> | ||
+ | <div class="home-sub-description-left-image"> | ||
+ | <img src="https://scontent-lga3-1.xx.fbcdn.net/v/t1.0-9/30582017_1320346971399297_7632589328069165056_o.jpg?_nc_cat=0&oh=02afd16c56a7d6e48ce41fa1fab2bec9&oe=5C1ABEB3"> | ||
+ | </div> | ||
</div> | </div> | ||
</div> | </div> |
Revision as of 21:22, 24 September 2018
Our filter would allow bacteria to respond only to certain frequency-based inputs, and give it even more digital logic-like character, long a goal of synthetic biology. Moving forward, our project could be an important tool for scientists as synthetic biology branches into increasingly diverse fields.
We are building a biological band-pass filter. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a frequency-response low-pass and high-pass filter to create a novel band-pass filter.
We are building a biological band-pass filter. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a frequency-response low-pass and high-pass filter to create a novel band-pass filter.
We are building a biological band-pass filter. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a frequency-response low-pass and high-pass filter to create a novel band-pass filter.
We are building a biological band-pass filter. While biological band pass filters have been developed before, none respond to frequency-based inputs but instead respond to amplitude based inputs. By controlling the rates of degradation of the components of our system, we are putting together a frequency-response low-pass and high-pass filter to create a novel band-pass filter.