Difference between revisions of "Template:SYSU-Software/statics/html/Projects/Feature.html"

 
(6 intermediate revisions by 3 users not shown)
Line 1: Line 1:
 
<div class="page-container">
 
<div class="page-container">
 +
    <div class="last-page-identify" data-value="3"></div>
  
 
     <div class="header1"> Projects </div>
 
     <div class="header1"> Projects </div>
 
     <div class="header2"> Feature </div>
 
     <div class="header2"> Feature </div>
  
     <div class="header3">Efficient Collaboratin </div>
+
     <div class="header3">Efficient Collaboration </div>
  
 
     <div class="content">
 
     <div class="content">
         CO-RAD introduce a new collaboration method for synthetic biology and we develop many functions to help users
+
         CO-RAD provides a helpful collaboration platform for synthetic biology. First and foremost, our software is compatible to SBOL, the standard format that generally used in this field. Users can import and export data formated in SBOL and migrate them to any other SBOL-supported community with ease. Besides, CO-RAD overcomes the downsides in traditional methods. Visual circuit designer and management studio are dedicatedly developed for the enhancement in synbio cooperation, where users can share their design and turn to others in no time. Additionally, synchronization sketchpad allows users to construct and design their circuit in real time together, no matter how physically distant they are. Undoutedly, all these tools will significantly increase working on synthetic biology.  
        cooperate with partners efficiently and easily. With the support of SBOL, users can load or save their circuits
+
 
        design as SBOL format, which is used widely by many synthetic biology software. For solving the problem of
+
        inefficiency in traditional collaboration method , we upgrade our designer into a new collaboration platform.
+
        User can view and edit their project with partners in real time. Meanwhile, shared artboard allows users to
+
        circle and draw anything to show their thoughts with remote partners, like writing on the scratch paper face to
+
        face. All these are designed for a efficient collaboration method in synthetic biology.
+
 
     </div>
 
     </div>
 +
    <img src="https://static.igem.org/mediawiki/2018/0/0a/T--SYSU-Software--share-drag.gif" />
  
    <img src="https://static.igem.org/mediawiki/2018/d/dc/T--SYSU-Software--Pr-De-6.png" />
+
     <div class="header3"> Information Reference </div>
 
+
     <div class="header3"> Fast Information Retrieval </div>
+
 
     <div class="content">
 
     <div class="content">
         Users can feel free to search anythings they wanted and get valuable information easily in CO-RAD. Meanwhile,
+
         Previous works can be the source of creative ideas. Search engine embedded in CO-RAD intelligently returns desirable results based on the input keywords, with which users can find former projects and papers in no time.
        CO-RAD also recommend related circuits based on user’s design. All these are designed for users to raise more
+
 
        valuable ideas while cooperating.
+
 
     </div>
 
     </div>
     <img src="../../images/Pr-De-4.png" />
+
     <img src="https://static.igem.org/mediawiki/2018/1/16/T--SYSU-Software--search.png " />
    <!--TODO: Change image-->
+
  
 
+
     <div class="header3"> Excellent circuit analysis module</div>
     <div class="header3"> Excellent Calculation Simulation </div>
+
 
     <div class="content">
 
     <div class="content">
         To help users understand deeply about their circuits, we develop a series of ancillary functions based on the
+
         To help users further analyse their circuits, we develop a series of ancillary functions. CG & CAI value of the products can be quickly computed in CO-RAD visual designer. Simulation module can predict the expression level of the products with mathematical ODE systems, and evolutionary algorithm can help users design a better  circuit by offering kinetics parameters of the used parts.
        analysis of circuits. Users can get parts’ CG content & CAI easily on CO-RAD. Expression Simulation function
+
    </div>
        can predict product expression with ODE system, and evolutionary algorithm can help users design a more desired
+
    <div class="oneLine">
        circuits by offering kinetics value of parts.
+
        <img style="width: 35%;" src="https://static.igem.org/mediawiki/2018/2/27/T--SYSU-Software--simulation2.png" />
 +
        <img style="width: 35%;" src="https://static.igem.org/mediawiki/2018/2/2f/T--SYSU-Software--simulation3.png" />
 
     </div>
 
     </div>
    <img src="../../images/Pr-De-4.png" />
 
    <!--TODO: Change image-->
 
  
     <div class="next-page-identify" data-value="5"></div> <!-- 这个是跳页标记 -->
+
     <div class="next-page-identify" data-value="5"></div>  
  
 
</div>
 
</div>

Latest revision as of 03:36, 18 October 2018

Projects
Feature
Efficient Collaboration
       CO-RAD provides a helpful collaboration platform for synthetic biology. First and foremost, our software is compatible to SBOL, the standard format that generally used in this field. Users can import and export data formated in SBOL and migrate them to any other SBOL-supported community with ease. Besides, CO-RAD overcomes the downsides in traditional methods. Visual circuit designer and management studio are dedicatedly developed for the enhancement in synbio cooperation, where users can share their design and turn to others in no time. Additionally, synchronization sketchpad allows users to construct and design their circuit in real time together, no matter how physically distant they are. Undoutedly, all these tools will significantly increase working on synthetic biology. 
   <img src="T--SYSU-Software--share-drag.gif" />
Information Reference
       Previous works can be the source of creative ideas. Search engine embedded in CO-RAD intelligently returns desirable results based on the input keywords, with which users can find former projects and papers in no time.
   <img src="T--SYSU-Software--search.png " />
Excellent circuit analysis module
       To help users further analyse their circuits, we develop a series of ancillary functions. CG & CAI value of the products can be quickly computed in CO-RAD visual designer. Simulation module can predict the expression level of the products with mathematical ODE systems, and evolutionary algorithm can help users design a better  circuit by offering kinetics parameters of the used parts.	
       <img style="width: 35%;" src="T--SYSU-Software--simulation2.png" />
       <img style="width: 35%;" src="T--SYSU-Software--simulation3.png" />