update on machine learning

This commit is contained in:
mhjensen
2017-12-06 14:13:28 +01:00
parent 2111fd0fbc
commit 3eaf9e4578
70 changed files with 7950 additions and 551 deletions
+41 -47
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@@ -46,45 +46,39 @@ Automatically generated HTML file from DocOnce source
('Software and needed installations', 2, None, '___sec3'),
('Python installers', 2, None, '___sec4'),
('Installing R, C++, cython or Julia', 2, None, '___sec5'),
('Installing R, C++, cython or Julia', 2, None, '___sec6'),
('Introduction to Jupyter notebook and available tools',
2,
None,
'___sec6'),
('Doing it in R', 2, None, '___sec7'),
('Representing data, overarching aims', 2, None, '___sec8'),
('Representing data, more examples', 2, None, '___sec9'),
('Binning of data', 2, None, '___sec10'),
('Adding model complexity: Predator-Prey model from ecology',
2,
None,
'___sec11'),
('Case study from Hudson bay', 2, None, '___sec12'),
('Hudson bay data', 2, None, '___sec13'),
('Plotting the data', 2, None, '___sec14'),
'___sec7'),
('Representing data, more examples', 2, None, '___sec8'),
('Predator-Prey model from ecology', 2, None, '___sec9'),
('Case study from Hudson bay', 2, None, '___sec10'),
('Hudson bay data', 2, None, '___sec11'),
('Plotting the data', 2, None, '___sec12'),
('Hares and lynx in Hudson bay from 1900 to 1920',
2,
None,
'___sec15'),
'___sec13'),
('Why now create a computer model for the hare and lynx '
'populations?',
2,
None,
'___sec16'),
('The traditional (top-down) approach', 2, None, '___sec17'),
("The ``new'' discrete bottom-up approach", 2, None, '___sec18'),
('Basic (computer-friendly) mathematics notation',
2,
None,
'___sec19'),
'___sec14'),
('The traditional (top-down) approach', 2, None, '___sec15'),
('Basic mathematics notation', 2, None, '___sec16'),
('Basic dynamics of the population of hares',
2,
None,
'___sec20'),
('Basic dynamics of the population of lynx', 2, None, '___sec21'),
('Evolution equations', 2, None, '___sec22'),
('Adapt the model to the Hudson Bay case', 2, None, '___sec23'),
('The program', 2, None, '___sec24'),
('The plot', 2, None, '___sec25')]}
'___sec17'),
('Basic dynamics of the population of lynx', 2, None, '___sec18'),
('Evolution equations', 2, None, '___sec19'),
('Adapt the model to the Hudson Bay case', 2, None, '___sec20'),
('The program', 2, None, '___sec21'),
('The plot', 2, None, '___sec22'),
('Linear regression in Python', 2, None, '___sec23'),
('Linear Least squares in R', 2, None, '___sec24'),
('Non-Linear Least squares in R', 2, None, '___sec25')]}
end of tocinfo -->
<body>
@@ -128,26 +122,26 @@ MathJax.Hub.Config({
<!-- navigation toc: --> <li><a href="._How2ReadData-bs004.html#___sec3" style="font-size: 80%;">Software and needed installations</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs005.html#___sec4" style="font-size: 80%;">Python installers</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs006.html#___sec5" style="font-size: 80%;">Installing R, C++, cython or Julia</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs007.html#___sec6" style="font-size: 80%;">Introduction to Jupyter notebook and available tools</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs008.html#___sec7" style="font-size: 80%;">Doing it in R</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs009.html#___sec8" style="font-size: 80%;">Representing data, overarching aims</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs010.html#___sec9" style="font-size: 80%;">Representing data, more examples</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs011.html#___sec10" style="font-size: 80%;">Binning of data</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs012.html#___sec11" style="font-size: 80%;">Adding model complexity: Predator-Prey model from ecology</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs013.html#___sec12" style="font-size: 80%;">Case study from Hudson bay</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs014.html#___sec13" style="font-size: 80%;">Hudson bay data</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs015.html#___sec14" style="font-size: 80%;">Plotting the data</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs016.html#___sec15" style="font-size: 80%;">Hares and lynx in Hudson bay from 1900 to 1920</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs017.html#___sec16" style="font-size: 80%;">Why now create a computer model for the hare and lynx populations?</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs018.html#___sec17" style="font-size: 80%;">The traditional (top-down) approach</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs019.html#___sec18" style="font-size: 80%;">The ``new'' discrete bottom-up approach</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs020.html#___sec19" style="font-size: 80%;">Basic (computer-friendly) mathematics notation</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs021.html#___sec20" style="font-size: 80%;">Basic dynamics of the population of hares</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs022.html#___sec21" style="font-size: 80%;">Basic dynamics of the population of lynx</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs023.html#___sec22" style="font-size: 80%;">Evolution equations</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs024.html#___sec23" style="font-size: 80%;">Adapt the model to the Hudson Bay case</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs025.html#___sec24" style="font-size: 80%;">The program</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs026.html#___sec25" style="font-size: 80%;">The plot</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs007.html#___sec6" style="font-size: 80%;">Installing R, C++, cython or Julia</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs008.html#___sec7" style="font-size: 80%;">Introduction to Jupyter notebook and available tools</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs009.html#___sec8" style="font-size: 80%;">Representing data, more examples</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs010.html#___sec9" style="font-size: 80%;">Predator-Prey model from ecology</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs011.html#___sec10" style="font-size: 80%;">Case study from Hudson bay</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs012.html#___sec11" style="font-size: 80%;">Hudson bay data</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs013.html#___sec12" style="font-size: 80%;">Plotting the data</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs014.html#___sec13" style="font-size: 80%;">Hares and lynx in Hudson bay from 1900 to 1920</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs015.html#___sec14" style="font-size: 80%;">Why now create a computer model for the hare and lynx populations?</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs016.html#___sec15" style="font-size: 80%;">The traditional (top-down) approach</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs017.html#___sec16" style="font-size: 80%;">Basic mathematics notation</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs018.html#___sec17" style="font-size: 80%;">Basic dynamics of the population of hares</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs019.html#___sec18" style="font-size: 80%;">Basic dynamics of the population of lynx</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs020.html#___sec19" style="font-size: 80%;">Evolution equations</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs021.html#___sec20" style="font-size: 80%;">Adapt the model to the Hudson Bay case</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs022.html#___sec21" style="font-size: 80%;">The program</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs023.html#___sec22" style="font-size: 80%;">The plot</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs024.html#___sec23" style="font-size: 80%;">Linear regression in Python</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs025.html#___sec24" style="font-size: 80%;">Linear Least squares in R</a></li>
<!-- navigation toc: --> <li><a href="._How2ReadData-bs026.html#___sec25" style="font-size: 80%;">Non-Linear Least squares in R</a></li>
</ul>
</li>
@@ -182,7 +176,7 @@ MathJax.Hub.Config({
<center>[2] <b>Department of Physics and Astronomy and National Superconducting Cyclotron Laboratory, Michigan State University</b></center>
<br>
<p>
<center><h4>Dec 1, 2017</h4></center> <!-- date -->
<center><h4>Dec 6, 2017</h4></center> <!-- date -->
<br>
<p>