Difference between revisions of "GraphLimit Flash Applet Sample Problem 2"
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[[uSub Applet Sample Problem]] |
[[uSub Applet Sample Problem]] |
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</p> |
</p> |
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− | <table cellspacing="0" cellpadding="2" border="0"> |
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+ | |||
− | <tr valign="top"> |
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+ | {| style=" background-color:#ffffff;" cellpadding="5" cellspacing="0" border="1" |
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− | + | ! scope="col" width="50%"| PG problem file |
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− | + | ! scope="col" width="50%"| Explanation |
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− | + | |- style=" background-color:#ddddff;" |
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− | + | | <pre> |
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− | <td style="background-color:#ddddff;border:black 1px dashed;"> |
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− | <pre> |
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##DESCRIPTION |
##DESCRIPTION |
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## Graphical limits |
## Graphical limits |
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## Section1('') |
## Section1('') |
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## Problem1('') |
## Problem1('') |
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− | + | ######################################## |
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− | # This work is supported in part by the |
+ | # This work is supported in part by the |
+ | # National Science Foundation |
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# under the grant DUE-0941388. |
# under the grant DUE-0941388. |
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− | + | ######################################## |
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</pre> |
</pre> |
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− | < |
+ | | <p> |
− | <td style="background-color:#ccccff; padding:7px;"> |
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− | <p> |
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This is the <strong>tagging and description</strong> section of the problem. Note that any line that begins with a "#" character is a <em>comment</em> for other authors who read the problem, and is not interpreted by WeBWorK. |
This is the <strong>tagging and description</strong> section of the problem. Note that any line that begins with a "#" character is a <em>comment</em> for other authors who read the problem, and is not interpreted by WeBWorK. |
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</p> |
</p> |
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[http://hobbes.la.asu.edu/Holt/keywords.html list of keywords]. The list of keywords should be comma separated and quoted (e.g., KEYWORDS('calculus','derivatives')). |
[http://hobbes.la.asu.edu/Holt/keywords.html list of keywords]. The list of keywords should be comma separated and quoted (e.g., KEYWORDS('calculus','derivatives')). |
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</p> |
</p> |
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− | </td> |
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+ | |- style=" background-color:#ddffdd;" |
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− | < |
+ | | <pre> |
− | + | DOCUMENT(); |
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− | <td style="background-color:#ddffdd;border:black 1px dashed;"> |
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− | <pre> |
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− | DOCUMENT(); # This should be the first executable line in the problem. |
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loadMacros( |
loadMacros( |
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Line 76: | Line 76: | ||
); |
); |
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</pre> |
</pre> |
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− | < |
+ | | <p> |
− | <td style="background-color:#ccffcc;padding:7px;"> |
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− | <p> |
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This is the <strong>initialization section</strong> of the problem. The first executed line of the problem <strong>must</strong> be the <code>DOCUMENT();</code> command. Note that every command <em>must end with a semicolon</em>. |
This is the <strong>initialization section</strong> of the problem. The first executed line of the problem <strong>must</strong> be the <code>DOCUMENT();</code> command. Note that every command <em>must end with a semicolon</em>. |
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</p> |
</p> |
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The <code>loadMacros</code> command loads information that works behind the scenes. For our purposes we can usually just load the macros shown here and not worry about things further. |
The <code>loadMacros</code> command loads information that works behind the scenes. For our purposes we can usually just load the macros shown here and not worry about things further. |
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</p> |
</p> |
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− | </td> |
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+ | |- style=" background-color:#ffffdd;" |
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− | < |
+ | | <pre> |
− | <tr valign="top"> |
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− | <td style="background-color:#ffffdd;border:black 1px dashed;"> |
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− | <pre> |
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# Set up problem |
# Set up problem |
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TEXT(beginproblem()); |
TEXT(beginproblem()); |
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$x4=random($x3+2,7,1); |
$x4=random($x3+2,7,1); |
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</pre> |
</pre> |
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− | < |
+ | | <p> |
− | <td style="background-color:#ffffcc;padding:7px;"> |
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− | <p> |
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This is the <strong>problem set-up section</strong> of the problem. |
This is the <strong>problem set-up section</strong> of the problem. |
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</p> |
</p> |
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The four variables <code>$x1</code>, <code>$x2</code>, <code>$x3</code> and <code>$x4</code> are the x-coordinates of four points on the graph that the applet will set to be a removable discontinuity, a jump discontinuity or a cusp. The order of these phenomena is random as are the y-values chosen. The x-coordinates must be between -10 and 10. |
The four variables <code>$x1</code>, <code>$x2</code>, <code>$x3</code> and <code>$x4</code> are the x-coordinates of four points on the graph that the applet will set to be a removable discontinuity, a jump discontinuity or a cusp. The order of these phenomena is random as are the y-values chosen. The x-coordinates must be between -10 and 10. |
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</p> |
</p> |
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− | </td> |
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+ | |- style=" background-color:#ccffff;" |
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− | < |
+ | | <pre> |
− | + | ############################################ |
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− | <td style="background-color:#ccffff;border:black 1px dashed;"> |
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− | <pre> |
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− | ########################################################################## |
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# How to use the Graph_Test applet. |
# How to use the Graph_Test applet. |
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− | # Purpose: The purpose of this applet |
+ | # Purpose: The purpose of this applet |
− | # |
+ | # is to ask graphical limit questions |
− | # |
+ | # Use of applet: The applet state |
− | # |
+ | # consists of the following fields: |
− | # |
+ | # qType - question type: |
− | # |
+ | # limits, continuity, |
− | # |
+ | # first_derivative, |
− | # |
+ | # second_derivative |
− | # |
+ | # hintState - context sensitive |
+ | # help is either on or off. |
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+ | # Generally turned on before |
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+ | # dueDate |
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+ | # problemSeed - the seed sets |
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+ | # the random parameters that |
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+ | # control which graph is chosen. |
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+ | # If the seed is changed, the |
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+ | # graph is changed. |
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+ | ############################################ |
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# qType = first_derivative |
# qType = first_derivative |
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− | # get_interval_info - given a type of |
+ | # get_interval_info - given a type of |
+ | # interval returns a list of intervals |
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# with that characteristic |
# with that characteristic |
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− | # Valid types are - increasing, |
+ | # Valid types are - increasing, |
− | # |
+ | # decreasing, constant, up, down, |
− | # |
+ | # straight |
− | # |
+ | # up, down and straight pertain to |
− | # |
+ | # the concavity of the function |
+ | # on the interval |
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+ | # sample function call: |
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+ | # get_interval_info("increasing") |
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+ | # describe_interval - given an interval |
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+ | # and a type, the function returns |
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# information about the interval. |
# information about the interval. |
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+ | # |
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# Valid types are - |
# Valid types are - |
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# updown (for concavity information), |
# updown (for concavity information), |
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# posneg1 (for sign of first derivative), |
# posneg1 (for sign of first derivative), |
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# posneg2 (for sign of second derviative), |
# posneg2 (for sign of second derviative), |
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− | # incdec (for whether function is |
+ | # incdec (for whether function is |
+ | # increasing or decreasing on the |
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# interval. |
# interval. |
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− | # sample function call: |
+ | # sample function call: |
− | # |
+ | # describe_interval($x1,$x2,"updown") |
− | # |
+ | # right_limits - returns a list of |
− | # |
+ | # points (a,b) such that |
− | # |
+ | # lim_{x\to a^-}f(x)=b, |
− | # |
+ | # but lim_{x\to a^+}f(x)\= b |
− | # |
+ | # left_limits - returns a list of |
− | # |
+ | # points (a,b) such that |
+ | # lim_{x\to a^+}f(x)=b, |
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+ | # but lim_{x\to a^-}f(x)\= b |
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+ | # neither_limits - returns a list |
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+ | # of points (a,b) such that |
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+ | # lim_{x\to a^-}f(x)\= |
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+ | # lim_{x\to a^+}f(x)\= f(a)=b |
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+ | # get_intervals returns a list of |
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+ | # intervals on which f(x) is continuous. |
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# get_f_of_x - given x value, returns f(x). |
# get_f_of_x - given x value, returns f(x). |
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# returns NaN for x notin [-10,10]. |
# returns NaN for x notin [-10,10]. |
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# |
# |
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# What does the applet do? |
# What does the applet do? |
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− | # The applet draws a graph with jumps, |
+ | # The applet draws a graph with jumps, |
− | # |
+ | # a cusp and discontinuities |
− | # |
+ | # When turned on, there is context |
− | + | # sensitive help. |
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− | + | ############################################## |
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− | + | ################################### |
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− | + | # Create link to applet |
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− | + | ################################### |
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− | + | $appletName = "Graph_Limit"; |
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− | + | $applet = FlashApplet( |
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− | + | codebase |
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− | + | => findAppletCodebase("$appletName.swf"), |
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− | + | appletName |
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− | + | => $appletName, |
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− | + | appletId |
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− | + | => $appletName, |
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− | + | setStateAlias => 'setXML', |
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− | + | getStateAlias => 'getXML', |
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− | + | setConfigAlias => 'setConfig', |
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− | + | maxInitializationAttempts => 10, |
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− | + | height => '475', |
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− | + | width => '425', |
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− | + | bgcolor => '#ffffff', |
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− | + | debugMode => 0, |
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+ | submitActionScript => qq{ |
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+ | getQE("inc").value=getApplet |
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+ | ("$appletName").get_interval_info("increasing"); |
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+ | getQE("dec").value=getApplet |
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+ | ("$appletName").get_interval_info("decreasing"); |
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+ | getQE("constant").value=getApplet |
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+ | ("$appletName").get_interval_info("constant"); |
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}, |
}, |
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); |
); |
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################################### |
################################### |
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− | + | # Configure applet |
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− | + | ################################### |
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− | + | # configuration consists of hintState, |
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− | + | # question type, and random seed, |
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− | + | # and x-coordinates of four points |
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− | + | # where jumps, discontinuities or cusps |
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− | + | # occur. |
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− | + | $applet->configuration(qq{<xml> |
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− | + | <hintState>$showHint</hintState> |
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− | + | <qtype>limits</qtype> |
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+ | <seed>$problemSeed</seed> |
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+ | <xlist x1='$x1' x2='$x2' |
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+ | x3='$x3' x4='$x4' /></xml>}); |
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+ | $applet->initialState(qq{<xml> |
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+ | <hintState>$showHint</hintState> |
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+ | <qtype>limits</qtype> |
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+ | <seed>$problemSeed</seed> |
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+ | <xlist x1='$x1' x2='$x2' |
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+ | x3='$x3' x4='$x4' /></xml>}); |
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− | TEXT( MODES(TeX=>'object code', |
+ | TEXT( MODES(TeX=>'object code', |
+ | HTML=>$applet->insertAll( |
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debug=>0, |
debug=>0, |
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includeAnswerBox=>0, |
includeAnswerBox=>0, |
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− | # reinitialize_button=>$permissionLevel>=10, |
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))); |
))); |
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<input type="hidden" name="inc" id="inc" /> |
<input type="hidden" name="inc" id="inc" /> |
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<input type="hidden" name="dec" id="dec" /> |
<input type="hidden" name="dec" id="dec" /> |
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− | <input type="hidden" |
+ | <input type="hidden" |
+ | name="constant" id="constant" /> |
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END_TEXT |
END_TEXT |
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</pre> |
</pre> |
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− | < |
+ | | <p> |
− | <td style="background-color:#ccffff;padding:7px;"> |
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− | <p> |
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This is the <strong>Applet link section</strong> of the problem. |
This is the <strong>Applet link section</strong> of the problem. |
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</p><br> |
</p><br> |
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Line 267: | Line 267: | ||
The data from the hidden form fields is used in these simple perl subroutines to define the correct answers to the four questions that are part of this WeBWorK problem.</p><br> |
The data from the hidden form fields is used in these simple perl subroutines to define the correct answers to the four questions that are part of this WeBWorK problem.</p><br> |
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<p>The WeBWorK variable $answerString1 is the content of the hidden form field "inc". $correctAnswer1 is the solution to the first question. The solutions for the next two questions are defined in a similar way.</p> |
<p>The WeBWorK variable $answerString1 is the content of the hidden form field "inc". $correctAnswer1 is the solution to the first question. The solutions for the next two questions are defined in a similar way.</p> |
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− | </td> |
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+ | |- style=" background-color:#ccffff;" |
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− | < |
+ | | <pre> |
− | + | TEXT(MODES(TeX=>"", HTML=><<'END_TEXT')); |
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− | < |
+ | <script> |
− | + | if (navigator.appVersion.indexOf("MSIE") > 0) { |
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+ | document.write("<div width='3in' |
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+ | align='center' style='background:yellow'> |
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+ | You seem to be using Internet Explorer. |
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+ | <br/>It is recommended that another |
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+ | browser be used to view this page.</div>"); |
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+ | } |
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+ | </script> |
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+ | END_TEXT |
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+ | </pre> |
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+ | | <p> |
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+ | The text between the <code><script></code> tags detects whether the student is using Internet Explorer. If the student is using this browser, a warning is issued and the student is advised to use another browser. IE mis-sizes the applets. Some will work correctly when displayed at the wrong size, but others will fail. We do not recommend using IE with WeBWorK problems with Flash embedded.</p> |
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+ | |- style=" background-color:#ffdddd;" |
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+ | | <pre> |
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BEGIN_TEXT |
BEGIN_TEXT |
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Line 296: | Line 296: | ||
Context()->normalStrings; |
Context()->normalStrings; |
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</pre> |
</pre> |
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− | <td style="background-color:#ffcccc;padding:7px;"> |
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+ | | <p> |
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− | <p> |
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This is the <strong>text section</strong> of the problem. The <code>TEXT(beginproblem());</code> line displays a header for the problem, and the <code>Context()->texStrings</code> line sets how formulas are displayed in the text, and we reset this after the text section. Everything between the <code>BEGIN_TEXT</code> and <code>END_TEXT</code> lines (each of which must appear alone on a line) is shown to the student. |
This is the <strong>text section</strong> of the problem. The <code>TEXT(beginproblem());</code> line displays a header for the problem, and the <code>Context()->texStrings</code> line sets how formulas are displayed in the text, and we reset this after the text section. Everything between the <code>BEGIN_TEXT</code> and <code>END_TEXT</code> lines (each of which must appear alone on a line) is shown to the student. |
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</p> |
</p> |
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[[FormatVariableList|This page]] gives a list of variables like this. Finally, <code>\{ \}</code> sets off <em>code that will be executed in the problem text</em>. Here, <code>ans_rule(35)</code> is a function that inserts an answer blank 35 characters wide. |
[[FormatVariableList|This page]] gives a list of variables like this. Finally, <code>\{ \}</code> sets off <em>code that will be executed in the problem text</em>. Here, <code>ans_rule(35)</code> is a function that inserts an answer blank 35 characters wide. |
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</p> |
</p> |
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− | </td> |
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+ | |- style=" background-color:#eeccff;" |
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− | < |
+ | | <pre> |
− | + | ###################################### |
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− | <td style="background-color:#eeddff;border:black 1px dashed;"> |
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− | <pre> |
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− | ############################################################## |
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# |
# |
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# Answers |
# Answers |
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## answer evaluators |
## answer evaluators |
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− | ANS( $correctAnswer1-> |
+ | ANS( $correctAnswer1-> |
− | + | cmp(strings=>['None']) ); |
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− | + | #checks AnSwEr00001 |
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+ | ANS( $correctAnswer2-> |
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+ | cmp(strings=>['None']) ); |
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+ | #checks AnSwEr00002 |
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+ | ANS( $correctAnswer3-> |
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+ | cmp(strings=>['None']) ); |
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+ | #checks AnSwEr00003 |
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ENDDOCUMENT(); |
ENDDOCUMENT(); |
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</pre> |
</pre> |
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− | <td style="background-color:#eeccff;padding:7px;"> |
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+ | | <p> |
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− | <p> |
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This is the <strong>answer</strong> section of the problem. The problem answer is set by the <code>ANS( $correctAnswer1->cmp(strings=>['None']) );</code>, <code>ANS( $correctAnswer2->cmp(strings=>['None']) );</code>, <code>ANS( $correctAnswer3->cmp(strings=>['None']) );</code> lines. These compare the student's answer with the answers returned from the applet. The answers allow for either a list of intervals answer or the string 'None' for empty lists. |
This is the <strong>answer</strong> section of the problem. The problem answer is set by the <code>ANS( $correctAnswer1->cmp(strings=>['None']) );</code>, <code>ANS( $correctAnswer2->cmp(strings=>['None']) );</code>, <code>ANS( $correctAnswer3->cmp(strings=>['None']) );</code> lines. These compare the student's answer with the answers returned from the applet. The answers allow for either a list of intervals answer or the string 'None' for empty lists. |
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</p> |
</p> |
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Line 332: | Line 330: | ||
The <code>ENDDOCUMENT();</code> command is the last command in the file. |
The <code>ENDDOCUMENT();</code> command is the last command in the file. |
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</p> |
</p> |
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− | </td> |
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+ | |} |
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− | </tr> |
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− | </table> |
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[[Category:Sample Problems]] |
[[Category:Sample Problems]] |
Revision as of 14:21, 9 August 2011
Flash Applets embedded in WeBWorK questions GraphLimit Example
Sample Problem 2 with GraphLimit.swf embedded
This sample problem shows how to use this versatile applet.
A standard WeBWorK PG file with an embedded applet has six sections:
- A tagging and description section, that describes the problem for future users and authors,
- An initialization section, that loads required macros for the problem,
- A problem set-up section that sets variables specific to the problem,
- An Applet link section that inserts the applet and configures it, (this section is not present in WeBWorK problems without an embedded applet)
- A text section, that gives the text that is shown to the student, and
- An answer and solution section, that specifies how the answer(s) to the problem is(are) marked for correctness, and gives a solution that may be shown to the student after the problem set is complete.
The sample file attached to this page shows this; below the file is shown to the left, with a second column on its right that explains the different parts of the problem that are indicated above. A screenshot of the applet embedded in this WeBWorK problem is shown below:
There are other sample problems using this applet: GraphLimit Flash Applet Sample Problem
Other applet sample problems:
Derivative Graph Matching Flash Applet Sample Problem
trigwidget Applet Sample Problem
uSub Applet Sample Problem
PG problem file | Explanation |
---|---|
##DESCRIPTION ## Graphical limits ##ENDDESCRIPTION ##KEYWORDS('limits') ## DBsubject('Calculus') ## DBchapter('Limits') ## DBsection('Graphical limits') ## Date('7/5/2011') ## Author('Barbara Margolius') ## Institution('Cleveland State University') ## TitleText1('') ## EditionText1('2011') ## AuthorText1('') ## Section1('') ## Problem1('') ######################################## # This work is supported in part by the # National Science Foundation # under the grant DUE-0941388. ######################################## |
This is the tagging and description section of the problem. Note that any line that begins with a "#" character is a comment for other authors who read the problem, and is not interpreted by WeBWorK. The description is provided to give a quick summary of the problem so that someone reading it later knows what it does without having to read through all of the problem code. All of the tagging information exists to allow the problem to be easily indexed. Because this is a sample problem there isn't a textbook per se, and we've used some default tagging values. There is an on-line list of current chapter and section names and a similar list of keywords. The list of keywords should be comma separated and quoted (e.g., KEYWORDS('calculus','derivatives')). |
DOCUMENT(); loadMacros( "PGanswermacros.pl", "PGstandard.pl", "AppletObjects.pl", "MathObjects.pl", ); |
This is the initialization section of the problem. The first executed line of the problem must be the
The |
# Set up problem TEXT(beginproblem()); $showPartialCorrectAnswers = 1; Context("Numeric"); $qtype='first_derivative'; $showHint = 0; if(time>$dueDate){ $showHint=1; } $x1=random(-8,-2,1); $x2=$x1+random(2,4,1); $x3=$x2+random(2,3,1); $x4=random($x3+2,7,1); |
This is the problem set-up section of the problem.
The GraphLimits.swf applet will accept four different question types, specified with the
The applet has solution/hint information embedded in it. When
The four variables |
############################################ # How to use the Graph_Test applet. # Purpose: The purpose of this applet # is to ask graphical limit questions # Use of applet: The applet state # consists of the following fields: # qType - question type: # limits, continuity, # first_derivative, # second_derivative # hintState - context sensitive # help is either on or off. # Generally turned on before # dueDate # problemSeed - the seed sets # the random parameters that # control which graph is chosen. # If the seed is changed, the # graph is changed. ############################################ # qType = first_derivative # get_interval_info - given a type of # interval returns a list of intervals # with that characteristic # Valid types are - increasing, # decreasing, constant, up, down, # straight # up, down and straight pertain to # the concavity of the function # on the interval # sample function call: # get_interval_info("increasing") # describe_interval - given an interval # and a type, the function returns # information about the interval. # # Valid types are - # updown (for concavity information), # posneg1 (for sign of first derivative), # posneg2 (for sign of second derviative), # incdec (for whether function is # increasing or decreasing on the # interval. # sample function call: # describe_interval($x1,$x2,"updown") # right_limits - returns a list of # points (a,b) such that # lim_{x\to a^-}f(x)=b, # but lim_{x\to a^+}f(x)\= b # left_limits - returns a list of # points (a,b) such that # lim_{x\to a^+}f(x)=b, # but lim_{x\to a^-}f(x)\= b # neither_limits - returns a list # of points (a,b) such that # lim_{x\to a^-}f(x)\= # lim_{x\to a^+}f(x)\= f(a)=b # get_intervals returns a list of # intervals on which f(x) is continuous. # get_f_of_x - given x value, returns f(x). # returns NaN for x notin [-10,10]. # getf_list - given x value and string returns # "function" - returns f(x) # "leftlimit" - returns lim_{x->a^-}f(x) # "rightlimit" - returns lim_{x->a^+}f(x) # "limit" - returns lim_{x->a}f(x) or "DNE" # # What does the applet do? # The applet draws a graph with jumps, # a cusp and discontinuities # When turned on, there is context # sensitive help. ############################################## ################################### # Create link to applet ################################### $appletName = "Graph_Limit"; $applet = FlashApplet( codebase => findAppletCodebase("$appletName.swf"), appletName => $appletName, appletId => $appletName, setStateAlias => 'setXML', getStateAlias => 'getXML', setConfigAlias => 'setConfig', maxInitializationAttempts => 10, height => '475', width => '425', bgcolor => '#ffffff', debugMode => 0, submitActionScript => qq{ getQE("inc").value=getApplet ("$appletName").get_interval_info("increasing"); getQE("dec").value=getApplet ("$appletName").get_interval_info("decreasing"); getQE("constant").value=getApplet ("$appletName").get_interval_info("constant"); }, ); ################################### # Configure applet ################################### # configuration consists of hintState, # question type, and random seed, # and x-coordinates of four points # where jumps, discontinuities or cusps # occur. $applet->configuration(qq{<xml> <hintState>$showHint</hintState> <qtype>limits</qtype> <seed>$problemSeed</seed> <xlist x1='$x1' x2='$x2' x3='$x3' x4='$x4' /></xml>}); $applet->initialState(qq{<xml> <hintState>$showHint</hintState> <qtype>limits</qtype> <seed>$problemSeed</seed> <xlist x1='$x1' x2='$x2' x3='$x3' x4='$x4' /></xml>}); TEXT( MODES(TeX=>'object code', HTML=>$applet->insertAll( debug=>0, includeAnswerBox=>0, ))); TEXT(MODES(TeX=>"", HTML=><<'END_TEXT')); <input type="hidden" name="inc" id="inc" /> <input type="hidden" name="dec" id="dec" /> <input type="hidden" name="constant" id="constant" /> END_TEXT $answerString1 = $inputs_ref->{inc}; my $correctAnswer1 = List($answerString1); $answerString2 = $inputs_ref->{dec}; my $correctAnswer2 = List($answerString2); $answerString3 = $inputs_ref->{constant}; my $correctAnswer3 = List($answerString3); |
This is the Applet link section of the problem.
Those portions of the code that begin the line with You must include the section that follows The lines The code
The hidden form fields are created in the code block:
The applet is configured in the code line:
When the submit button is pressed, the hidden form fields defined in this block are filled with information from the applet. The data from the hidden form fields is used in these simple perl subroutines to define the correct answers to the four questions that are part of this WeBWorK problem. The WeBWorK variable $answerString1 is the content of the hidden form field "inc". $correctAnswer1 is the solution to the first question. The solutions for the next two questions are defined in a similar way. |
TEXT(MODES(TeX=>"", HTML=><<'END_TEXT')); <script> if (navigator.appVersion.indexOf("MSIE") > 0) { document.write("<div width='3in' align='center' style='background:yellow'> You seem to be using Internet Explorer. <br/>It is recommended that another browser be used to view this page.</div>"); } </script> END_TEXT |
The text between the |
BEGIN_TEXT $BR $BR list all intervals for which $BR a) \(f^\prime(x)>0\) \{ans_rule(35) \} $BR b) \(f^\prime(x)<0\) \{ans_rule(35) \} $BR c) \(f^\prime(x)=0\) \{ans_rule(35) \} $BR END_TEXT Context()->normalStrings; |
This is the text section of the problem. The
Mathematical equations are delimited by
There are a number of variables that set formatting: |
###################################### # # Answers # ## answer evaluators ANS( $correctAnswer1-> cmp(strings=>['None']) ); #checks AnSwEr00001 ANS( $correctAnswer2-> cmp(strings=>['None']) ); #checks AnSwEr00002 ANS( $correctAnswer3-> cmp(strings=>['None']) ); #checks AnSwEr00003 ENDDOCUMENT(); |
This is the answer section of the problem. The problem answer is set by the The solution is embedded in the applet and becomes available when the due date has passed.
The |