Difference between revisions of "Team:SSHS-Shenzhen/Model"

(Replaced content with "{{SSHS-Shenzhen/CSS}} <html lang="en"> <head> <meta charset="UTF-8"> <title>Title</title> <style> h1{ color: #fff; padding:150px 50px 5px!important; font-size: 3...")
Line 10: Line 10:
 
padding:150px 50px 5px!important; font-size: 30px!important; text-align: center;
 
padding:150px 50px 5px!important; font-size: 30px!important; text-align: center;
 
}
 
}
</style>
+
 
 +
.header li a:hover,.dropdown:hover.dropbtn {
 +
color: #fff;
 +
}
 +
.header {
 +
font-size: 30px;
 +
padding: 0px;
 +
margin: 0px;
 +
top: 0;
 +
left: 0;
 +
width: 100%;
 +
position: fixed;
 +
height: 3em;
 +
z-index: 99;
 +
float: left;
 +
background-color: #5d8aa8;
 +
min-width: 1080px;
 +
}
 +
body {
 +
background-color: #fff;
 +
}
 +
.dropdown-content {
 +
display: none;
 +
position: absolute;
 +
background-color: #5d8aa8;
 +
min-width: 250px
 +
}
 +
.dropdown-content a {
 +
color: #f7f7f7;
 +
padding: 12px 16px;
 +
text-decoration: none;
 +
display: block;
 +
font-size: 20px;
 +
}
 +
.header li a,.dropbtn,.header a:link, .header a:visited {
 +
color: #f7f7f7;
 +
}
 +
  #para{
 +
color: #000;
 +
padding:30px 100px 5px;
 +
font-size: 20px!important;
 +
}
 +
#fig{
 +
color: #000;
 +
padding:30px 100px 5px;
 +
font-size: 20px!important;
 +
text-align: center !important;
 +
}
 +
 +
h1{
 +
color: #000;
 +
padding:150px 50px 5px!important; font-size: 30px!important; text-align: center;
 +
}
 +
 
 +
h2{
 +
color: #000;
 +
padding:100px 100px 5px;
 +
font-size: 25px!important;
 +
text-align: left;
 +
line-height: 120%;
 +
}
 +
 
 +
h3{
 +
color: #000;
 +
padding:100px 100px 5px;
 +
font-size: 25px!important;
 +
text-align: center;
 +
line-height: 120%;
 +
}
 +
 
 +
</style>  
 
</head>
 
</head>
 
<body>
 
<body>
Line 17: Line 87:
 
Model
 
Model
 
</div>
 
</div>
 +
<h1>
 +
Abstract
 +
</h1>
 +
<p id="para">
 +
Our model is formalized by the Differential Equation: (Logistic Function)<br><br>
 +
We've chosen this model as it's often used for modeling the growth and decay of a population. In our condition where we apply our pesticide to the pests, we investigate the underlying parameters that affect the relationship between time and the number of deaths.
 +
 +
</p>
 +
 +
<h1>
 +
Assumptions
 +
</h1>
 +
<p id="para">
 +
 +
</p>
 +
 +
<h1>
 +
Parameters
 +
</h1>
 +
<p id="para">
 +
 +
</p>
 +
 +
<h1>
 +
Experiments
 +
</h1>
 +
<p id="para">
 +
 +
</p>
 +
 +
<h1>
 +
Results
 +
</h1>
 +
<p id="para">
  
 +
</p>
 +
<p id="para">
  
 +
</p>
 
<br><br><br><br><br>
 
<br><br><br><br><br>
 
</body>
 
</body>
 
</html>
 
</html>

Revision as of 17:28, 5 October 2018

Title

Title

Model

Abstract

Our model is formalized by the Differential Equation: (Logistic Function)

We've chosen this model as it's often used for modeling the growth and decay of a population. In our condition where we apply our pesticide to the pests, we investigate the underlying parameters that affect the relationship between time and the number of deaths.

Assumptions

Parameters

Experiments

Results