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edx
edx-platform
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afc56863
Commit
afc56863
authored
May 05, 2016
by
Alison Hodges
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Updates link to learner info in Numerical Input template
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common/lib/xmodule/xmodule/templates/problem/formularesponse.yaml
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common/lib/xmodule/xmodule/templates/problem/formularesponse.yaml
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afc56863
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@@ -7,9 +7,9 @@ data: |
<p>
In math expression input problems, learners enter text that represents a
mathematical expression into a field, and text is converted to a symbolic
expression that appears below that field. You can refer learners to
<a href="http://edx.readthedocs.
org/projects/edx-guide-for-students/en/latest
/SFD_mathformatting.html" target="_blank">
Entering Mathematical and Scientific Expressions</a> in the <i>
e
dX Guide for
expression that appears below that field. You can refer learners to
<a href="http://edx.readthedocs.
io/projects/edx-guide-for-students/en/latest/completing_assignments
/SFD_mathformatting.html" target="_blank">
Entering Mathematical and Scientific Expressions</a> in the <i>
E
dX Guide for
Students</i> for information about how to enter text into the field.
</p>
<p>
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@@ -24,12 +24,12 @@ data: |
"beautiful math." For more information about how to use MathJax in Studio,
see <a href="http://edx.readthedocs.org/projects/edx-partner-course-staff/en/latest/exercises_tools/mathjax.html" target="_blank">
A Brief Introduction to MathJax in Studio</a> in <i>Building and Running an edx
Course</i>.
Course</i>.
</p>
<p>When you add the problem, be sure to select <strong>Settings</strong>
<p>When you add the problem, be sure to select <strong>Settings</strong>
to specify a <strong>Display Name</strong> and other values that apply.</p>
<p>You can use the following example problems as models.</p>
<p>Write an expression for the product of \( R_1\), \( R_2\), and
the inverse of \( R_3\) .</p>
<formularesponse type="ci" samples="R_1,R_2,R_3@1,2,3:3,4,5#10" answer="$VoVi">
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@@ -43,7 +43,7 @@ data: |
<p>Let \( x\) be a variable, and let \( n\) be an arbitrary constant.
What is the derivative of \( x^n\)?</p>
<script type="loncapa/python">
derivative = "n*x^(n-1)"
</script>
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