<snapdata remixID="10278906"><project name="Complex Fibonacci Part 2" app="Snap! 6, https://snap.berkeley.edu" version="1"><notes>---Complex function graphing tool---&#xD;-Grapths the output of a complex function (one that has both a complex input and output), where the color is the angle of the output, and the brightness the magnitude&#xD;-Click and drag to move the viewport,  scroll to zoom&#xD;&#xD;&lt;---Best viewed in the editor---&gt;</notes><thumbnail>data:image/png;base64,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</thumbnail><stage name="Stage" width="960" height="720" costume="0" color="255,255,255,1" tempo="60" threadsafe="false" penlog="false" volume="100" pan="0" lines="flat" ternary="false" hyperops="true" codify="false" inheritance="true" sublistIDs="false" scheduled="false" 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</pentrails><costumes><list id="2"><item><costume name="costume1" center-x="240" center-y="180" 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AgAN0kwQIECBAQID9AAECBAgQCAQEOEA3SYAAAQIELmhgaBBRNtU9AAAAAElFTkSuQmCC" id="3"/></item><item><costume name="Untitled" center-x="240" center-y="180" image="data:image/png;base64,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" id="4"/></item><item><costume name="1920px-SMPTE_Color_Bars_16x9" center-x="240" center-y="180" 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" id="5"/></item></list></costumes><sounds><list struct="atomic" id="6"></list></sounds><variables></variables><blocks><block-definition s="zoom in %&apos;amount&apos;" type="command" category="other"><comment x="0" y="0" w="219.8720703125" collapsed="false">What number to multiply the zoom by&#xD;- If currently at a zoom of 2 and you &apos;zoom in 1.5&apos;, the new zoom will be at 2*1.5 = 3</comment><header></header><code></code><translations></translations><inputs><input type="%n"></input></inputs><script><block s="doSetVar"><l>zoom</l><block s="reportProduct"><block var="zoom"/><block var="amount"/></block></block><block s="doTellTo"><l>Crosshairs</l><block s="reifyScript"><script><block s="gotoXY"><l>0</l><l>0</l></block><block s="doSwitchToCostume"><block s="reportPenTrailsAsCostume"></block></block><block s="setScale"><block s="reportProduct"><l>100</l><block var="amount"/></block></block><block s="doStamp"></block></script><list></list></block><list></list><comment w="90" collapsed="false">Generates a preview by scaling the old screen, then pasting it</comment></block><block s="doBroadcastAndWait"><l>render</l></block></script></block-definition><block-definition s="zoom out %&apos;amount&apos;" type="command" category="other"><comment x="0" y="0" w="214.8720703125" collapsed="false">What number to divide the zoom by.&#xD;- If currently at zoom 3, and you &apos;zoom out 1,5&apos;, the new zoom will be 3/1,5=2</comment><header></header><code></code><translations></translations><inputs><input type="%n"></input></inputs><script><block s="doSetVar"><l>zoom</l><block s="reportQuotient"><block var="zoom"/><block var="amount"/></block></block><block s="doTellTo"><l>Crosshairs</l><block s="reifyScript"><script><block s="gotoXY"><l>0</l><l>0</l></block><block s="doSwitchToCostume"><block s="reportPenTrailsAsCostume"></block></block><block s="setScale"><block s="reportQuotient"><l>100</l><block var="amount"/></block></block><block s="doStamp"></block></script><list></list></block><list></list><comment w="90" collapsed="false">Generates a preview by scaling the old screen</comment></block><block s="doBroadcastAndWait"><l>render</l></block></script></block-definition></blocks><scripts><script x="54" y="46.00000000000003"><block s="receiveInteraction"><l><option>pressed</option></l></block><block s="doDeclareVariables"><list><l>old_x</l></list></block><block s="doDeclareVariables"><list><l>old_y</l></list></block><block s="doSetVar"><l>old_x</l><block s="reportMouseX"></block></block><block s="doSetVar"><l>old_y</l><block s="reportMouseY"></block></block><block s="doTellTo"><l>Crosshairs</l><block s="reifyScript"><script><block s="setScale"><l>100</l></block><block s="show"></block><block s="doGotoObject"><l><option>mouse-pointer</option></l></block><block s="doSwitchToCostume"><block s="reportPenTrailsAsCostume"></block></block></script><list></list></block><list></list><comment w="90" collapsed="false">Copies the screen to a costume</comment></block><block s="doTellTo"><l>Label</l><block s="reifyScript"><script><block s="hide"></block><block s="doStopThis"><l><option>other scripts in sprite</option></l></block></script><list></list></block><list></list></block><block s="doUntil"><block s="reportNot"><block s="reportMouseDown"></block></block><script><block s="doTellTo"><l>Crosshairs</l><block s="reifyScript"><script><block s="doGotoObject"><l><option>mouse-pointer</option></l></block></script><list></list></block><list></list><comment w="90" collapsed="false">While the mouse is held, keep the costume following the mouse</comment></block></script></block><block s="doChangeVar"><l>xoffset</l><custom-block s="Scheme number %s of %s"><l>inexact</l><block s="reportProduct"><block s="reportQuotient"><block s="reportDifference"><block var="old_x"/><block s="reportMouseX"></block></block><block s="reportAttributeOf"><l><option>width</option></l><l>Stage</l></block></block><block s="reportQuotient"><l>2</l><block var="zoom"/></block></block></custom-block></block><block s="doChangeVar"><l>yoffset</l><custom-block s="Scheme number %s of %s"><l>inexact</l><block s="reportProduct"><block s="reportQuotient"><block s="reportDifference"><block var="old_y"/><block s="reportMouseY"></block></block><block s="reportAttributeOf"><l><option>width</option></l><l>Stage</l></block></block><block s="reportQuotient"><l>2</l><block var="zoom"/></block></block></custom-block></block><block s="doTellTo"><l>Crosshairs</l><block s="reifyScript"><script><block s="doStamp"></block><block s="hide"></block></script><list></list></block><list></list><comment w="90" collapsed="false">Stampt the costume, then hide it so that it can be drawn over</comment></block><block s="doBroadcastAndWait"><l>render</l></block></script><script x="522" y="26.833333333333314"><block s="receiveInteraction"><l><option>scrolled-up</option></l></block><custom-block s="zoom in %n" scope="local"><l>1.5</l></custom-block></script><script x="713" y="29.833333333333286"><block s="receiveInteraction"><l><option>scrolled-down</option></l></block><custom-block s="zoom out %n" scope="local"><l>1.5</l></custom-block></script><script x="546" y="111.66666666666666"><block s="receiveKey"><l><option>any key</option></l></block><block s="doIfElse"><block s="reportOr"><block s="reportKeyPressed"><block s="reportJoinWords"><list><l>=</l></list></block></block><block s="reportKeyPressed"><block s="reportJoinWords"><list><l>+</l></list></block></block></block><script><custom-block s="zoom in %n" scope="local"><l>1.5</l></custom-block></script><script><block s="doIf"><block s="reportOr"><block s="reportKeyPressed"><block s="reportJoinWords"><list><l>-</l></list></block></block><block s="reportKeyPressed"><block s="reportJoinWords"><list><l>_</l></list></block></block></block><script><custom-block s="zoom out %n" scope="local"><l>1.5</l></custom-block></script></block></script></block></script><comment x="921" y="42.66666666666666" w="90" collapsed="false">Self explanatory&#xD;When the uuser wants to zoom in, zoom in, else zoom out.</comment></scripts><sprites><sprite name="Crosshairs" idx="3" x="0" y="0" heading="90" scale="1.5" volume="100" pan="0" rotation="1" draggable="false" hidden="true" costume="0" color="35.342999999999925,0,252.45,1" pen="tip" id="255"><wear><costume name="Costume" center-x="480" center-y="360" 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" id="256"/></wear><costumes><list struct="atomic" id="257"></list></costumes><sounds><list struct="atomic" id="258"></list></sounds><blocks></blocks><variables></variables><scripts><script x="2989" y="252.00000000000003"><block s="reportJoinWords"><list><l>nothing</l></list></block></script><comment x="2975" y="238.66666666666666" w="104" collapsed="false">No- ther is actually nothing here- Stop looking!</comment><comment x="2975.2431640625" y="232.00000000000003" w="104" collapsed="false">------------------------------&#xD;I told you, there really is *nothing* here!&#xD;------------------------------</comment><script x="19" y="15"><block s="receiveGo"></block><block s="hide"></block></script><comment x="14" y="117.66666666666666" w="90" collapsed="false">Move along now, nothing to see here</comment></scripts></sprite><sprite name="Renderer" idx="1" x="480" y="360" heading="90" scale="1" volume="100" pan="0" rotation="1" draggable="false" hidden="true" costume="0" color="0.9529694116207185,1.8205982789171935,0,1" pen="tip" id="268"><costumes><list struct="atomic" id="269"></list></costumes><sounds><list struct="atomic" id="270"></list></sounds><blocks></blocks><variables></variables><scripts><script x="27.2880859375" y="11.333333333333258"><block s="receiveGo"></block><block s="doSetVar"><l>function</l><block s="reifyReporter"><autolambda><block s="reportQuotient"><block s="reportPower"><block s="reportSum"><l></l><l>1</l></block><l>2</l></block><block s="reportPower"><block s="reportDifference"><l></l><l>1</l></block><l>2</l></block></block></autolambda><list></list></block></block><block s="hide"></block><custom-block s="USE BIGNUMS %b"><l><bool>true</bool></l></custom-block><block s="setPenHSVA"><l><option>saturation</option></l><l>100</l></block><block s="setPenHSVA"><l><option>brightness</option></l><l>100</l></block><block s="doSetVar"><l>resolution</l><l>16</l></block><block s="doSetVar"><l>xoffset</l><l>0</l></block><block s="doSetVar"><l>yoffset</l><l>0</l></block><block s="doSetVar"><l>zoom</l><l>1</l></block><block s="clear"></block><block s="doBroadcast"><l>render</l></block></script><script x="10" y="1082.666666666666"><custom-block s="for %upvar = %n step %n to %n %cs"><l>y</l><block s="reportAttributeOf"><l><option>bottom</option></l><l>Stage</l></block><block var="resolution"/><block s="reportAttributeOf"><l><option>top</option></l><l>Stage</l></block><script><custom-block s="for %upvar = %n step %n to %n %cs"><l>x</l><block s="reportAttributeOf"><l><option>left</option></l><l>Stage</l></block><block var="resolution"/><block s="reportAttributeOf"><l><option>right</option></l><l>Stage</l></block><script><block s="doSetVar"><l>test</l><l></l></block></script></custom-block></script><comment w="90" collapsed="false">script for timing stuff</comment></custom-block></script><script x="572.927734375" y="10"><block s="receiveKey"><l><option>h</option></l><comment w="90" collapsed="false">h re-renders scene at high resolution&#xD;--May take over  minute, especially on slower computers--</comment></block><block s="clear"></block><block s="doSetVar"><l>resolution</l><l>2</l></block><block s="doBroadcastAndWait"><l>render</l></block><block s="doSetVar"><l>resolution</l><l>16</l></block></script><script x="876.927734375" y="10"><block s="receiveKey"><l><option>o</option></l><comment w="90" collapsed="false">o shows/hides the overlays (the ouput label and the axes)</comment></block><block s="doSetVar"><l>overlays?</l><block s="reportNot"><block var="overlays?"/></block></block><block s="doIfElse"><block var="overlays?"/><script><block s="doBroadcast"><l>show overlays</l></block></script><script><block s="doBroadcast"><l>hide overlays</l></block></script></block></script><script x="875.927734375" y="186.8333333333333"><block s="receiveKey"><l><option>space</option></l><comment w="90" collapsed="false">Space re-renders the scene</comment></block><block s="clear"></block><block s="doBroadcast"><l>render</l></block></script><comment x="67.2880859375" y="712.6666666666666" w="158.412109375" collapsed="false">sin(a+bi)=sinacoshb+icosasinhb</comment><script x="574.927734375" y="150.8333333333333"><block s="receiveKey"><l><option>r</option></l><comment w="90" collapsed="false">r resets the program</comment></block><custom-block s="USE BIGNUMS %b"><l><bool>true</bool></l></custom-block><block s="setPenHSVA"><l><option>saturation</option></l><l>100</l></block><block s="setPenHSVA"><l><option>brightness</option></l><l>100</l></block><block s="doSetVar"><l>resolution</l><l>16</l></block><block s="doSetVar"><l>xoffset</l><l>0</l></block><block s="doSetVar"><l>yoffset</l><l>0</l></block><block s="doSetVar"><l>zoom</l><l>1</l></block><block s="clear"></block><block s="doBroadcast"><l>render</l></block></script><script x="22.2880859375" y="354.66666666666663"><block s="receiveMessage"><l>render</l></block><block s="doSetVar"><l>rendering?</l><block s="reportBoolean"><l><bool>true</bool></l></block></block><custom-block s="Draw copmplex function %repRing at resolution %n offset by ( %n , %n ) zoom %n shading? %b %br"><block var="function"/><block var="resolution"/><block var="xoffset"/><block var="yoffset"/><block var="zoom"/><l><bool>true</bool></l><comment w="90" collapsed="false">Actually draws the function</comment></custom-block><block s="doSetVar"><l>rendering?</l><block s="reportBoolean"><l><bool>false</bool></l></block></block><block s="doBroadcast"><l>done</l></block></script><script x="153.2880859375" y="591.6666666666666"><custom-block s="Scheme number %s of %s"><l>angle</l><l></l></custom-block></script><script x="624" y="432.5"><block s="receiveKey"><l><option>n</option></l><comment w="90" collapsed="false">n gives a new function</comment></block><block s="doSetVar"><l>function</l><block s="reportListItem"><l><option>any</option></l><block s="reportNewList"><list><block s="reifyReporter"><autolambda><custom-block 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SchemeNumber(&apos;-inf.0&apos;) : SchemeNumber(&apos;+inf.0&apos;))&#xD;                };&#xD;                if (Number.isNaN(a) || Number.isNaN(b) || fn[&apos;=&apos;](b, &apos;0&apos;)) return NaN;&#xD;                return fn[&apos;/&apos;](a, b);&#xD;            },&#xD;            reportBasicPower: function (a, b) {&#xD;                a = parseNumber(a);&#xD;                b = parseNumber(b);&#xD;                if (Number.isNaN(a) || Number.isNaN(b)) return NaN;&#xD;                return fn[&apos;expt&apos;](a, b);&#xD;            },&#xD;            reportBasicModulus: function (a, b) {&#xD;                a = parseNumber(a);&#xD;                b = parseNumber(b);&#xD;                if (Number.isNaN(a) || Number.isNaN(b)) return NaN;&#xD;                var result = fn.mod(a, b);&#xD;                if (fn[&apos;&lt;&apos;](b, &apos;0&apos;) &amp;&amp; fn[&apos;&gt;&apos;](result, &apos;0&apos;)) {&#xD;                    result = fn[&apos;+&apos;](result, b);&#xD;                }&#xD;                return result;&#xD;            },&#xD;            reportBasicRandom: function (min, max) {&#xD;                var floor = parseNumber(min),&#xD;                    ceil = parseNumber(max);&#xD;                if (Number.isNaN(floor) || Number.isNaN(ceil)) return NaN;&#xD;                if (!fn[&apos;=&apos;](fn.mod(floor, &apos;1&apos;), &apos;0&apos;) || !fn[&apos;=&apos;](fn.mod(ceil, &apos;1&apos;), &apos;0&apos;)) {&#xD;                    // One of the numbers isn&apos;t whole. Include the decimal.&#xD;                    return fn[&apos;+&apos;](&#xD;                        fn[&apos;*&apos;](&#xD;                            Math.random(),&#xD;                            fn[&apos;-&apos;](ceil, floor)&#xD;                        ),&#xD;                        floor&#xD;                    );&#xD;                }&#xD;                return fn.floor(&#xD;                    fn[&apos;+&apos;](&#xD;                        fn[&apos;*&apos;](&#xD;                            Math.random(),&#xD;                            fn[&apos;+&apos;](&#xD;                                fn[&apos;-&apos;](ceil, floor),&#xD;                                &apos;1&apos;&#xD;                            )&#xD;                        ),&#xD;                        floor&#xD;                    )&#xD;                );&#xD;            },&#xD;            reportBasicLessThan: function (a, b) {&#xD;                a = parseNumber(a);&#xD;                b = parseNumber(b);&#xD;                if (Number.isNaN(a) || Number.isNaN(b)) return NaN;&#xD;                return fn[&apos;&lt;&apos;](a, b);&#xD;            },&#xD;            reportBasicGreaterThan: function (a, b) {&#xD;                a = parseNumber(a);&#xD;                b = parseNumber(b);&#xD;                if (Number.isNaN(a) || Number.isNaN(b)) return NaN;&#xD;                return fn[&apos;&gt;&apos;](a, b);&#xD;            },&#xD;            reportEqual: function (a, b) {&#xD;                x = parseNumber(a);&#xD;                y = parseNumber(b);&#xD;                if (Number.isNaN(x) || Number.isNaN(y)) return snapEquals(a, b);&#xD;                return fn[&apos;=&apos;](x, y);&#xD;            },&#xD;            reportIsIdentical: function (a, b) {&#xD;                x = parseNumber(a);&#xD;                y = parseNumber(b);&#xD;                if (Number.isNaN(x) || Number.isNaN(y)) return originalPrims.reportIsIdentical(a, b);&#xD;                return fn[&apos;=&apos;](x, y);&#xD;            },&#xD;            reportMonadic: function (fname, n) {&#xD;                if (this.enableHyperOps) {&#xD;                    if (n instanceof List) {&#xD;                        return n.map(each =&gt; this.reportMonadic(fname, each));&#xD;                    }&#xD;                }&#xD;&#xD;                n = parseNumber(n);&#xD;                if (Number.isNaN(n)) return NaN;&#xD;&#xD;                switch (Process.prototype.inputOption(fname)) {&#xD;                case &apos;abs&apos;:&#xD;                    return fn.abs(n);&#xD;                case &apos;neg&apos;:&#xD;                    return fn[&apos;-&apos;](n);&#xD;                case &apos;ceiling&apos;:&#xD;                    return fn.ceiling(n);&#xD;                case &apos;floor&apos;:&#xD;                    return fn.floor(n);&#xD;                case &apos;sqrt&apos;:&#xD;                    return sqrt(n);&#xD;                case &apos;sin&apos;:&#xD;                    return fn.sin(radians(n));&#xD;                case &apos;cos&apos;:&#xD;                    return fn.cos(radians(n));&#xD;                case &apos;tan&apos;:&#xD;                    return fn.tan(radians(n));&#xD;                case &apos;asin&apos;:&#xD;                    return degrees(fn.asin(n));&#xD;                case &apos;acos&apos;:&#xD;                    return degrees(fn.acos(n));&#xD;                case &apos;atan&apos;:&#xD;                    return degrees(fn.atan(n));&#xD;                case &apos;ln&apos;:&#xD;                    return fn.log(n);&#xD;                case &apos;log&apos;:&#xD;                    return fn.log(n, &apos;10&apos;);&#xD;                case &apos;lg&apos;:&#xD;                    return fn.log(n, &apos;2&apos;);&#xD;                case &apos;e^&apos;:&#xD;                    return fn.exp(n);&#xD;                case &apos;10^&apos;:&#xD;                    return fn.expt(&apos;10&apos;, n);&#xD;                case &apos;2^&apos;:&#xD;                    return fn.expt(&apos;2&apos;, n);&#xD;                default:&#xD;                    return SchemeNumber(&apos;0&apos;);&#xD;                }&#xD;            }&#xD;        });&#xD;    } else {&#xD;        InputSlotMorph.prototype.evaluate = window.bigNumbers.originalEvaluate;&#xD;        VariableFrame.prototype.changeVar = window.bigNumbers.originalChangeVar;&#xD;        Object.assign(Process.prototype, originalPrims);&#xD;    }&#xD;    done = true;&#xD;}&#xD;&#xD;function parseNumber (n) {&#xD;    var fn = SchemeNumber.fn;&#xD;    if (!fn[&apos;number?&apos;](n)) {&#xD;        n = &apos;&apos; + n;&#xD;        try {&#xD;            return parseENotation(n) || SchemeNumber(n);&#xD;        } catch (err) {&#xD;            return NaN;&#xD;        }&#xD;    }&#xD;    return n;&#xD;}&#xD;&#xD;function parseENotation (n) {&#xD;    var fn = SchemeNumber.fn;&#xD;&#xD;    var numbers = n.match(/^(-?\d+\.?\d*|-?\.\d+)e(-?\d+)$/i);&#xD;    if (!numbers) return null;&#xD;&#xD;    var coefficient = numbers[1];&#xD;    var exponent = numbers[2];&#xD;    return fn[&apos;*&apos;](&#xD;        coefficient,&#xD;        fn.expt(&apos;10&apos;, exponent)&#xD;    );&#xD;}&#xD;&#xD;function sqrt (n) {&#xD;    var fn = SchemeNumber.fn;&#xD;&#xD;    if (!fn[&apos;exact?&apos;](n) || !fn[&apos;rational?&apos;](n) || fn[&apos;&lt;&apos;](n,&apos;0&apos;)) return fn.sqrt(n);&#xD;&#xD;    var rootNumerator = fn[&apos;exact-integer-sqrt&apos;](fn.numerator(n));&#xD;    if (!fn[&apos;=&apos;](rootNumerator[1], &apos;0&apos;)) return fn.sqrt(n);&#xD;&#xD;    var rootDenominator = fn[&apos;exact-integer-sqrt&apos;](fn.denominator(n));&#xD;    if (!fn[&apos;=&apos;](rootDenominator[1], &apos;0&apos;)) return fn.sqrt(n);&#xD;&#xD;    return fn[&apos;/&apos;](rootNumerator[0], rootDenominator[0]);&#xD;}&#xD;&#xD;function isDone () {&#xD;    return done;&#xD;}&#xD;&#xD;if (window.bigNumbers) {&#xD;    loadBlocks();&#xD;} else {&#xD;    initialize(loadBlocks);&#xD;}&#xD;&#xD;return isDone;</l></block><list><block var="bool"/></list></block></block><block s="doWaitUntil"><block s="evaluate"><block var="isDone"/><list></list></block></block></script></block-definition><block-definition s="%&apos;n&apos; !" type="reporter" category="operators"><comment x="0" y="0" w="190.66666666666666" collapsed="false">The factorial function, to make very large numbers, to demo bignums.</comment><header></header><code></code><translations></translations><inputs><input type="%n"></input></inputs><script><block s="doReport"><block s="reportIfElse"><block s="reportEquals"><block var="n"/><l>0</l></block><l>1</l><block s="reportProduct"><block var="n"/><custom-block s="%n !"><block s="reportDifference"><block var="n"/><l>1</l></block></custom-block></block></block></block></script></block-definition><block-definition s="%&apos;x&apos;" type="reporter" category="operators"><comment x="0" y="0" w="234.66666666666666" collapsed="false">The identity function: reports its input.&#xD;It&apos;s useful to get things like 3/4 or 5-2i into&#xD;numeric input slots.</comment><header></header><code></code><translations></translations><inputs><input type="%s"></input></inputs><script><block s="doReport"><block var="x"/></block></script></block-definition><block-definition s="Scheme number %&apos;function&apos; of %&apos;number&apos;" type="reporter" category="operators"><comment x="0" y="0" w="300" collapsed="true">Provides Scheme arithmetic functions not in JavaScript</comment><header></header><code></code><translations>pt:_ de _&#xD;</translations><inputs><input type="%s" readonly="true"><options>number?&#xD;complex?&#xD;real?&#xD;rational?&#xD;integer?&#xD;exact?&#xD;inexact?&#xD;exact&#xD;inexact&#xD;finite?&#xD;infinite?&#xD;nan?&#xD;numerator&#xD;denominator&#xD;real-part&#xD;imag-part&#xD;magnitude&#xD;angle</options></input><input type="%s"></input></inputs><script><block s="doReport"><block s="evaluate"><block s="reportJSFunction"><list><l>which</l><l>num</l></list><l>function parseNumber (n) {&#xD;    var fn = SchemeNumber.fn;&#xD;    if (!fn[&apos;number?&apos;](n)) {&#xD;        n = &apos;&apos; + n;&#xD;        try {&#xD;            return parseENotation(n) || SchemeNumber(n);&#xD;        } catch (err) {&#xD;            return NaN;&#xD;        }&#xD;    }&#xD;    return n;&#xD;}&#xD;&#xD;function parseENotation (n) {&#xD;    var fn = SchemeNumber.fn;&#xD;&#xD;    var numbers = n.match(/^(-?\d+\.?\d*|-?\.\d+)e(-?\d+)$/i);&#xD;    if (!numbers) return null;&#xD;&#xD;    var coefficient = numbers[1];&#xD;    var exponent = numbers[2];&#xD;    return fn[&apos;*&apos;](&#xD;        coefficient,&#xD;        fn.expt(&apos;10&apos;, exponent)&#xD;    );&#xD;}&#xD;var fn=SchemeNumber.fn,&#xD;      number=parseNumber(num);&#xD;&#xD;switch (which) {&#xD;  case &apos;number?&apos;:&#xD;  case &apos;complex?&apos;:&#xD;    return (fn[&apos;number?&apos;](number));&#xD;  case &apos;real?&apos;:&#xD;    return (fn[&apos;real?&apos;](number) || fn[&apos;real-valued?&apos;](number));&#xD;  case &apos;rational?&apos;:&#xD;    return (fn[&apos;rational?&apos;](number) || (fn[&apos;=&apos;](number, fn.rationalize(number, parseNumber(&apos;1.0e-5&apos;)))));&#xD;  case &apos;integer?&apos;:&#xD;    return (fn[&apos;integer?&apos;](number) || fn[&apos;integer-valued?&apos;](number));&#xD;  case &apos;exact?&apos;:&#xD;  case &apos;inexact?&apos;:&#xD;  case &apos;finite?&apos;:&#xD;  case &apos;infinite?&apos;:&#xD;  case &apos;nan?&apos;:&#xD;  case &apos;real-part&apos;:&#xD;  case &apos;imag-part&apos;:&#xD;    return (fn[which](number));&#xD;  case &apos;magnitude&apos;:&#xD;    return (fn.magnitude(number));&#xD;  case &apos;angle&apos;:&#xD;    return (fn.angle(number));&#xD;  case &apos;numerator&apos;:&#xD;    return (fn.numerator(number));&#xD;  case &apos;denominator&apos;:&#xD;    return (fn.denominator(number));&#xD;  case &apos;exact&apos;:&#xD;    return (fn.exact(number));&#xD;case &apos;inexact&apos;:&#xD;    return (fn.inexact(number));&#xD;}</l></block><list><block var="function"/><block var="number"/></list></block></block></script></block-definition><block-definition s="round %&apos;part&apos; %&apos;num&apos;" type="reporter" category="operators"><header></header><code></code><translations></translations><inputs><input type="%s" readonly="true"><options>real&#xD;imag&#xD;re-im</options></input><input type="%n"></input></inputs><script><block s="doIf"><block s="reportEquals"><block var="part"/><l>real</l></block><script><block s="doReport"><block s="reportSum"><block s="reportRound"><custom-block s="Scheme number %s of %s"><l>real-part</l><block var="num"/></custom-block></block><block s="reportProduct"><custom-block s="Scheme number %s of %s"><l>imag-part</l><block var="num"/></custom-block><custom-block s="%s"><l>i</l></custom-block></block></block></block></script></block><block s="doIf"><block s="reportEquals"><block var="part"/><l>imag</l></block><script><block s="doReport"><block s="reportSum"><block s="reportProduct"><block s="reportRound"><custom-block s="Scheme number %s of %s"><l>imag-part</l><block var="num"/></custom-block></block><custom-block s="%s"><l>i</l></custom-block></block><custom-block s="Scheme number %s of %s"><l>real-part</l><block var="num"/></custom-block></block></block></script></block><block s="doIf"><block s="reportEquals"><block var="part"/><l>re-im</l></block><script><block s="doReport"><block s="reportSum"><block s="reportProduct"><block s="reportRound"><custom-block s="Scheme number %s of %s"><l>imag-part</l><block var="num"/></custom-block></block><custom-block s="%s"><l>i</l></custom-block></block><block s="reportRound"><custom-block s="Scheme number %s of %s"><l>real-part</l><block var="num"/></custom-block></block></block></block></script></block></script></block-definition><block-definition s="%&apos;n&apos; fib #" type="reporter" category="operators"><header></header><code></code><translations></translations><inputs><input type="%n"></input></inputs><script><block s="doReport"><block s="reportQuotient"><block s="reportDifference"><block s="reportPower"><custom-block s="phi"></custom-block><block var="n"/></block><block s="reportPower"><block s="reportMonadic"><l><option>neg</option></l><custom-block s="phi"></custom-block></block><block s="reportMonadic"><l><option>neg</option></l><block var="n"/></block></block></block><block s="reportMonadic"><l><option>sqrt</option></l><l>5</l></block></block></block></script></block-definition><block-definition s="phi" type="reporter" category="variables"><header></header><code></code><translations></translations><inputs></inputs><script><block s="doReport"><block s="reportQuotient"><block s="reportSum"><l>1</l><block s="reportMonadic"><l><option>sqrt</option></l><l>5</l></block></block><l>2</l></block></block></script></block-definition><block-definition s="e" type="reporter" category="variables"><header></header><code></code><translations></translations><inputs></inputs><script><block s="doReport"><l>2.7182818284590452353602874</l></block></script></block-definition><block-definition s="pi" type="reporter" category="variables"><header></header><code></code><translations></translations><inputs></inputs><script><block s="doReport"><l>3.14159265358979323846</l></block></script></block-definition><block-definition s="for %&apos;i&apos; = %&apos;start&apos; step %&apos;step&apos; to %&apos;end&apos; %&apos;action&apos;" type="command" category="control"><comment x="0" y="0" w="247.33333333333334" collapsed="false">The primitive FOR block uses an implicit step of ±1 depending on which of the starting and ending values is larger.  This version allows you to provide an explicit step value.  If the sign of the step input is incompatible with the ordering of the starting and ending values, the script will not be run at all.</comment><header></header><code></code><translations>pt:para _ de _ com passo _ a _ _ $loop-0.7&#xD;</translations><inputs><input type="%upvar"></input><input type="%n">1</input><input type="%n">1</input><input type="%n">10</input><input type="%cs"></input></inputs><script><block s="doDeclareVariables"><list><l>test</l></list></block><block s="doSetVar"><l>i</l><block var="start"/></block><block s="doIfElse"><block s="reportLessThan"><block var="step"/><l>0</l></block><script><block s="doSetVar"><l>test</l><block s="reifyPredicate"><autolambda><block s="reportLessThan"><block var="i"/><block var="end"/></block></autolambda><list></list></block></block></script><script><block s="doSetVar"><l>test</l><block s="reifyPredicate"><autolambda><block s="reportGreaterThan"><block var="i"/><block var="end"/></block></autolambda><list></list></block></block></script></block><block s="doUntil"><block s="evaluate"><block var="test"/><list></list></block><script><block s="doRun"><block var="action"/><list></list></block><block s="doChangeVar"><l>i</l><block var="step"/></block></script></block></script></block-definition><block-definition s="time %&apos;stuff&apos;" type="reporter" category="sensing"><header></header><code></code><translations></translations><inputs><input type="%cs"></input></inputs><script><block s="doDeclareVariables"><list><l>start</l></list></block><block s="doSetVar"><l>start</l><block s="reportDate"><l><option>time in milliseconds</option></l></block></block><block s="doRun"><block var="stuff"/><list></list></block><block s="doReport"><block s="reportDifference"><block s="reportDate"><l><option>time in milliseconds</option></l></block><block var="start"/></block></block></script></block-definition><block-definition s="%&apos;n&apos; fib # (fast)" type="reporter" category="operators"><comment x="0" y="0" w="90" collapsed="false">This version uses decimals instead of actaul definitions of phi and sqrt(5), making it areound 1.4 times faster</comment><header></header><code></code><translations></translations><inputs><input type="%n"></input></inputs><script><block s="doReport"><block s="reportQuotient"><block s="reportDifference"><block s="reportPower"><l>1.61803398874989484820</l><block var="n"/></block><block s="reportPower"><l>-1.61803398874989484820</l><block s="reportMonadic"><l><option>neg</option></l><block var="n"/></block></block></block><l>2.23606797749978969640</l></block></block></script></block-definition><block-definition s="round %&apos;num&apos; to %&apos;dec&apos; places" type="reporter" category="operators"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><block s="doReport"><custom-block s="Scheme number %s of %s"><l>inexact</l><block s="reportQuotient"><block s="reportRound"><block s="reportProduct"><block var="num"/><block s="reportMonadic"><l><option>10^</option></l><block var="dec"/></block></block></block><block s="reportMonadic"><l><option>10^</option></l><block var="dec"/></block></block></custom-block></block></script></block-definition><block-definition s="Draw copmplex function %&apos;func&apos; at resolution %&apos;res&apos; offset by ( %&apos;xoffset&apos; , %&apos;yoffset&apos; ) zoom %&apos;zoom&apos; shading? %&apos;shading?&apos; $nl" type="command" category="other"><comment x="0" y="0" w="221" collapsed="false">-The function should accept complex value of the form a+bi, and return another complex number&#xD;-Resolution is the size in pixels of the &apos;pixel&apos;s drawn on screen (lower is finer, higher is pixelated)&#xD;-x and y offsets are in the unit space of the function, not pixel coordinates&#xD;-zoom is how far zoomed the function is (2x zoom means the output is scaled up by 2x)&#xD;-Zoom of 1 and no offset the x values range from -1 to 1, and the y values from -.75i to .75i&#xD;-Shading darkens/lightens the color based on its mafnitude&#xD;&#xD;---If you want to change the stage size of the project, make sure to the 480&apos;s to half the width and the 360&apos;s to half the height, they are there becuase using a pure number makes the program slighly faster.---&#xD;---You should not need to change the hue function, as that is tied to the angle of the complex output, but you can change the birghtness function if your function has larger or smaller values to make it look better---&#xD;&#xD;---Legoman3.14</comment><header></header><code></code><translations></translations><inputs><input type="%repRing"></input><input type="%n"></input><input type="%n"></input><input type="%n"></input><input type="%n"></input><input type="%b">false</input></inputs><script><block s="doDeclareVariables"><list><l>func_temp</l></list></block><block s="setSize"><block s="reportSum"><block var="res"/><l>2</l></block></block><block s="setPenHSVA"><l><option>brightness</option></l><l>100</l></block><block s="setPenHSVA"><l><option>saturation</option></l><l>100</l></block><custom-block s="for %upvar = %n step %n to %n %cs"><l>y</l><block s="reportAttributeOf"><l><option>bottom</option></l><l>Stage</l></block><block var="res"/><block s="reportAttributeOf"><l><option>top</option></l><l>Stage</l></block><script><block s="doWarp"><script><block s="up"></block><custom-block s="for %upvar = %n step %n to %n %cs"><l>x</l><block s="reportAttributeOf"><l><option>left</option></l><l>Stage</l></block><block var="res"/><block s="reportAttributeOf"><l><option>right</option></l><l>Stage</l></block><script><block s="gotoXY"><block var="x"/><block var="y"/></block><block s="doSetVar"><l>func_temp</l><block s="evaluate"><block var="func"/><list><block s="reportSum"><block s="reportSum"><block s="reportQuotient"><block var="x"/><block s="reportProduct"><l>480</l><block var="zoom"/></block></block><block var="xoffset"/></block><block s="reportProduct"><custom-block s="%s"><l>i</l></custom-block><block s="reportSum"><block s="reportQuotient"><block var="y"/><block s="reportProduct"><l>480</l><block var="zoom"/></block></block><block var="yoffset"/></block></block></block></list></block></block><block s="setPenHSVA"><l><option>hue</option></l><block s="reportProduct"><block s="reportQuotient"><l>50</l><custom-block s="pi"></custom-block></block><custom-block s="Scheme number %s of %s"><l>angle</l><block var="func_temp"/></custom-block></block><comment w="90" collapsed="false">Sets the pen color based on the angle of the output</comment></block><block s="doIf"><block var="shading?"/><script><block s="setPenHSVA"><l><option>brightness</option></l><block s="reportProduct"><block s="reportMonadic"><l><option>atan</option></l><custom-block s="Scheme number %s of %s"><l>magnitude</l><block var="func_temp"/></custom-block></block><l>2.5</l></block><comment w="90" collapsed="false">If shading is enabled, brighten/darken the output based on its magnitude (size).</comment></block><block s="setPenHSVA"><l><option>saturation</option></l><block s="reportQuotient"><l>1000</l><custom-block s="Scheme number %s of %s"><l>magnitude</l><block var="func_temp"/></custom-block></block></block></script></block><block s="down"></block></script></custom-block></script></block></script></custom-block></script></block-definition><block-definition s="value of %&apos;func&apos; at mouse pointer zoom %&apos;zoom&apos; offset ( %&apos;xoffset&apos; , %&apos;yoffset&apos; )" type="reporter" category="other"><comment x="0" y="0" w="236.9999999999999" collapsed="false">Gives the output of a function at the mouse pointer.  ---Zoom, x-offset, and y-offset should be the same as in the main plotting block, in order to make this output line up with the graph.</comment><header></header><code></code><translations></translations><inputs><input type="%repRing"></input><input type="%n"></input><input type="%n"></input><input type="%n"></input></inputs><script><block s="doDeclareVariables"><list><l>func_temp</l></list></block><block s="doSetVar"><l>func_temp</l><block s="evaluate"><block var="func"/><list><custom-block s="Scheme number %s of %s"><l>inexact</l><block s="reportSum"><block s="reportSum"><block s="reportQuotient"><block s="reportMouseX"></block><block s="reportProduct"><l>480</l><block var="zoom"/></block></block><block var="xoffset"/></block><block s="reportProduct"><custom-block s="%s"><l>i</l></custom-block><block s="reportSum"><block s="reportQuotient"><block s="reportMouseY"></block><block s="reportProduct"><l>480</l><block var="zoom"/></block></block><block var="yoffset"/></block></block></block></custom-block></list></block></block><block s="doReport"><block s="reportJoinWords"><list><block s="reportJoinWords"><list><custom-block s="round %n to %n places"><custom-block s="%s of %n"><l>base</l><custom-block s="Scheme number %s of %s"><l>real-part</l><block var="func_temp"/></custom-block></custom-block><l>2</l></custom-block><l>e</l><custom-block s="%s of %n"><l>power</l><custom-block s="Scheme number %s of %s"><l>real-part</l><block var="func_temp"/></custom-block></custom-block></list></block><l>║</l><block s="reportJoinWords"><list><custom-block s="round %n to %n places"><custom-block s="%s of %n"><l>base</l><custom-block s="Scheme number %s of %s"><l>imag-part</l><block var="func_temp"/></custom-block></custom-block><l>2</l></custom-block><l>e</l><custom-block s="%s of %n"><l>power</l><custom-block s="Scheme number %s of %s"><l>imag-part</l><block var="func_temp"/></custom-block></custom-block><l>𝙞</l></list></block></list></block></block></script></block-definition><block-definition s="x-axis %&apos;xaxis?&apos; min %&apos;xmin&apos; max %&apos;xmax&apos; position %&apos;x_axis_position&apos; ticks? %&apos;x-ticks?&apos; #ticks %&apos;#x_ticks&apos; $nl ‎‎‏‏‎ ‎ $nl y-axis %&apos;yaxis?&apos; min %&apos;ymin&apos; max %&apos;ymax&apos; position %&apos;y_axis_position&apos; ticks? %&apos;y-ticks?&apos; #ticks %&apos;# y_ticks&apos;" type="command" category="pen"><header></header><code></code><translations></translations><inputs><input type="%b">true</input><input type="%n"></input><input type="%n"></input><input type="%n"></input><input type="%b">true</input><input type="%n"></input><input type="%b">true</input><input type="%n"></input><input type="%n"></input><input type="%n"></input><input type="%b">true</input><input type="%n"></input></inputs><script><block s="doIf"><block var="xaxis?"/><script><block s="doDeclareVariables"><list><l>xrange</l></list></block><block s="doSetVar"><l>xrange</l><block s="reportDifference"><block var="xmax"/><block var="xmin"/></block></block><block s="setSize"><l>6</l></block><block s="up"></block><block s="gotoXY"><block s="reportAttributeOf"><l><option>left</option></l><l>Stage</l></block><block var="x_axis_position"/></block><block s="down"></block><block s="gotoXY"><block s="reportAttributeOf"><l><option>right</option></l><l>Stage</l></block><block var="x_axis_position"/></block><block s="up"></block><block s="doIf"><block var="x-ticks?"/><script><block s="setSize"><l>4</l></block><block s="doDeclareVariables"><list><l>up?</l></list><comment w="90" collapsed="false">Stagers the y offset of the labels to make them not collide</comment></block><block s="doSetVar"><l>up?</l><block s="reportBoolean"><l><bool>false</bool></l></block></block><block s="doForEach"><l>tick</l><custom-block s="nice ticks min %n max %n with %n tickmarks"><block var="xmin"/><block var="xmax"/><block var="#x_ticks"/></custom-block><script><block s="up"></block><block s="gotoXY"><custom-block s="remap %n from ( %n , %n ) to ( %n , %n"><block var="tick"/><block var="xmin"/><block var="xmax"/><block s="reportAttributeOf"><l><option>left</option></l><l>Stage</l></block><block s="reportAttributeOf"><l><option>right</option></l><l>Stage</l></block></custom-block><block s="reportSum"><block var="x_axis_position"/><l>10</l></block></block><block s="down"></block><block s="gotoXY"><custom-block s="remap %n from ( %n , %n ) to ( %n , %n"><block var="tick"/><block var="xmin"/><block var="xmax"/><block s="reportAttributeOf"><l><option>left</option></l><l>Stage</l></block><block s="reportAttributeOf"><l><option>right</option></l><l>Stage</l></block></custom-block><block s="reportDifference"><block var="x_axis_position"/><l>10</l></block></block><block s="up"></block><block s="changeYPosition"><block s="reportIfElse"><block s="reportLessThan"><block var="x_axis_position"/><l>330</l></block><block s="reportIfElse"><block s="reportLessThan"><block var="x_axis_position"/><l>-330</l></block><block s="reportIfElse"><block var="up?"/><l>30</l><l>50</l></block><block s="reportIfElse"><block var="up?"/><l>-25</l><l>30</l></block></block><block s="reportIfElse"><block var="up?"/><l>-45</l><l>-25</l></block></block><comment w="90" collapsed="false">Moves the sprite into place to draw label</comment></block><block s="changeXPosition"><l>-30</l></block><block s="doIf"><block s="reportGreaterThan"><custom-block s="%s of %n"><l>power</l><block var="tick"/></custom-block><l>-10</l></block><script><block s="write"><block s="reportJoinWords"><list><custom-block s="round %n to %n places"><custom-block s="%s of %n"><l>base</l><block var="tick"/></custom-block><l>3</l></custom-block><l>e</l><custom-block s="%s of %n"><l>power</l><block var="tick"/></custom-block></list></block><l>24</l></block></script><comment w="90" collapsed="false">If the tickmark is not 0, write a label, changing the color to white if the background is too dark</comment></block><block s="doSetVar"><l>up?</l><block s="reportNot"><block var="up?"/></block></block></script></block></script></block></script></block><block s="doIf"><block var="yaxis?"/><script><block s="doDeclareVariables"><list><l>yrange</l></list></block><block s="doSetVar"><l>yrange</l><block s="reportDifference"><block var="ymax"/><block var="ymin"/></block></block><block s="setSize"><l>6</l></block><block s="up"></block><block s="gotoXY"><block var="y_axis_position"/><block s="reportAttributeOf"><l><option>top</option></l><l>Stage</l></block></block><block s="down"></block><block s="gotoXY"><block var="y_axis_position"/><block s="reportAttributeOf"><l><option>bottom</option></l><l>Stage</l></block></block><block s="up"></block><block s="doIf"><block var="y-ticks?"/><script><block s="setSize"><l>4</l></block><block s="doForEach"><l>tick</l><custom-block s="nice ticks min %n max %n with %n tickmarks"><block var="ymin"/><block var="ymax"/><block var="# y_ticks"/></custom-block><script><block s="up"></block><block s="gotoXY"><block s="reportDifference"><block var="y_axis_position"/><l>10</l></block><custom-block s="remap %n from ( %n , %n ) to ( %n , %n"><block var="tick"/><block var="ymin"/><block var="ymax"/><block s="reportAttributeOf"><l><option>bottom</option></l><l>Stage</l></block><block s="reportAttributeOf"><l><option>top</option></l><l>Stage</l></block></custom-block></block><block s="down"></block><block s="gotoXY"><block s="reportSum"><block var="y_axis_position"/><l>10</l></block><custom-block s="remap %n from ( %n , %n ) to ( %n , %n"><block var="tick"/><block var="ymin"/><block var="ymax"/><block s="reportAttributeOf"><l><option>bottom</option></l><l>Stage</l></block><block s="reportAttributeOf"><l><option>top</option></l><l>Stage</l></block></custom-block></block><block s="up"></block><block s="changeYPosition"><l>10</l><comment w="90" collapsed="false">Moves the sprite into place to draw label</comment></block><block s="changeXPosition"><block s="reportIfElse"><block s="reportLessThan"><block var="y_axis_position"/><l>400</l></block><l>0</l><l>-120</l></block></block><block s="doIf"><block s="reportGreaterThan"><custom-block s="%s of %n"><l>power</l><block var="tick"/></custom-block><l>-10</l></block><script><block s="write"><block s="reportJoinWords"><list><custom-block s="round %n to %n places"><custom-block s="%s of %n"><l>base</l><block var="tick"/></custom-block><l>3</l></custom-block><l>e</l><custom-block s="%s of %n"><l>power</l><block var="tick"/></custom-block><l>𝑖</l></list></block><l>24</l></block></script><comment w="90" collapsed="false">If the tickmark is not 0, write a label, changing the color to white if the background is too dark</comment></block></script></block></script></block></script></block></script><scripts><script x="770" y="644.9999999999995"><block s="doIfElse"><block s="reportLessThan"><block s="reportAspect"><l><option>brightness</option></l><l><option>myself</option></l></block><l>50</l></block><script><block s="setPenHSVA"><l><option>brightness</option></l><l>100</l></block></script><script><block s="setPenHSVA"><l><option>brightness</option></l><l>0</l></block></script></block><block s="setPenHSVA"><l><option>brightness</option></l><l>0</l></block></script><comment x="538" y="43.36666666666679" w="222" collapsed="false">If you change scren size, make sure to cahge all hard-coded numbers</comment></scripts></block-definition><block-definition s="nice ticks min %&apos;min&apos; max %&apos;max&apos; with %&apos;ticks&apos; tickmarks" type="reporter" category="operators"><comment x="0" y="0" w="237" collapsed="false">Reports a list of &apos;nice&apos; values (those that start with 1, 2, or 5) between min and mix centered around the nice number closest to the center, or at 0, if that is between min and max&#xD;---!numbers are not garunteed to be sorted!---</comment><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input><input type="%n"></input></inputs><script><block s="doDeclareVariables"><list><l>range</l></list></block><block s="doDeclareVariables"><list><l>tick_size</l></list></block><block s="doSetVar"><l>range</l><block s="reportDifference"><block var="max"/><block var="min"/></block></block><block s="doSetVar"><l>tick_size</l><custom-block s="%s of %n"><l>scientfic notation</l><block s="reportNewList"><list><custom-block s="%l nearest to %n"><block s="reportNewList"><list><l>1</l><l>2</l><l>5</l><l>10</l></list></block><custom-block s="%s of %n"><l>base</l><custom-block s="Scheme number %s of %s"><l>inexact</l><block s="reportQuotient"><block var="range"/><block var="ticks"/></block></custom-block></custom-block></custom-block><custom-block s="%s of %n"><l>power</l><custom-block s="Scheme number %s of %s"><l>inexact</l><block s="reportQuotient"><block var="range"/><block var="ticks"/></block></custom-block></custom-block></list></block></custom-block></block><block s="doReport"><custom-block s="numbers from %n to %n step %n"><block s="reportSum"><block var="min"/><block s="reportDifference"><custom-block s="%s of %n"><l>full</l><block var="tick_size"/></custom-block><block s="reportModulus"><block var="min"/><custom-block s="%s of %n"><l>full</l><block var="tick_size"/></custom-block></block></block></block><block var="max"/><custom-block s="%s of %n"><l>full</l><block var="tick_size"/></custom-block></custom-block></block></script><scripts><script x="247" y="374.6666666666667"><block s="doIfElse"><block s="reportAnd"><block s="reportGreaterThan"><block var="max"/><l>0</l></block><block s="reportLessThan"><block var="min"/><l>0</l></block></block><script></script><script></script></block></script><script x="506.005859375" y="296.8333333333334"><block s="reportDifference"><block var="min"/><block s="reportModulus"><block var="min"/><custom-block s="%s of %n"><l>full</l><block var="tick_size"/></custom-block></block></block></script><script x="541" y="432.99999999999994"><block s="doReport"><block s="reportConcatenatedLists"><list><custom-block s="numbers from %n to %n step %n"><l>0</l><block var="min"/><custom-block s="%s of %n"><l>full</l><block var="tick_size"/></custom-block></custom-block><block s="reportCDR"><custom-block s="numbers from %n to %n step %n"><l>0</l><block var="max"/><custom-block s="%s of %n"><l>full</l><block var="tick_size"/></custom-block></custom-block></block></list></block></block></script><script x="78" y="427.8333333333334"><block s="reportCDR"><l/></block></script></scripts></block-definition><block-definition s="%&apos;part&apos; of %&apos;num&apos;" type="reporter" category="operators"><comment x="0" y="0" w="229" collapsed="false">take a number in scientific or normal notation, and reports thepower or the base&#xD;-base of 1234 = 1.234&#xD;-power of 1234 = 3</comment><header></header><code></code><translations></translations><inputs><input type="%s" readonly="true"><options>base=base&#xD;power=power&#xD;scientfic notation=scientfic notation&#xD;full=full</options></input><input type="%n"></input></inputs><script><block s="doIf"><block s="reportEquals"><block var="part"/><l>base</l></block><script><block s="doReport"><block s="reportListItem"><l>1</l><custom-block s="%s of %n"><l>scientfic notation</l><block var="num"/></custom-block></block></block></script></block><block s="doIf"><block s="reportEquals"><block var="part"/><l>power</l></block><script><block s="doReport"><block s="reportListItem"><l>2</l><custom-block s="%s of %n"><l>scientfic notation</l><block var="num"/></custom-block></block></block></script></block><block s="doIf"><block s="reportEquals"><block var="part"/><l>scientfic notation</l></block><script><block s="doIfElse"><block s="reportIsA"><block var="num"/><l><option>number</option></l></block><script><block s="doReport"><block s="reportNewList"><list><block s="reportQuotient"><block var="num"/><block s="reportMonadic"><l><option>10^</option></l><block s="reportMonadic"><l><option>floor</option></l><block s="reportMonadic"><l><option>log</option></l><block s="reportMonadic"><l><option>abs</option></l><block var="num"/></block></block></block></block></block><block s="reportMonadic"><l><option>floor</option></l><block s="reportMonadic"><l><option>log</option></l><block s="reportMonadic"><l><option>abs</option></l><block var="num"/></block></block></block></list></block></block></script><script><block s="doReport"><custom-block s="%s of %n"><l>scientfic notation</l><block s="reportProduct"><block s="reportListItem"><l>1</l><block var="num"/></block><block s="reportMonadic"><l><option>10^</option></l><block s="reportListItem"><l>2</l><block var="num"/></block></block></block></custom-block></block></script></block></script></block><block s="doIf"><block s="reportEquals"><block var="part"/><l>full</l></block><script><block s="doIfElse"><block s="reportIsA"><block var="num"/><l><option>number</option></l></block><script><block s="doReport"><block var="num"/></block></script><script><block s="doReport"><block s="reportProduct"><block s="reportListItem"><l>1</l><block var="num"/></block><block s="reportMonadic"><l><option>10^</option></l><block s="reportListItem"><l>2</l><block var="num"/></block></block></block></block></script></block></script></block></script><scripts><script x="627" y="236.83333333333331"><block s="doIfElse"><block s="reportIsA"><block var="num"/><l><option>number</option></l></block><script><block s="doReport"><block s="reportIfElse"><block s="reportEquals"><block var="part"/><l>base</l></block><l></l><block s="reportListItem"><l>2</l><l/></block></block></block></script><script><block s="doReport"><block s="reportIfElse"><block s="reportEquals"><block var="part"/><l>base</l></block><l></l><block s="reportListItem"><l>2</l><block var="num"/></block></block></block></script></block></script><script x="484" y="391.49999999999994"><block s="doIfElse"><block s="reportIsA"><block var="num"/><l><option>number</option></l></block><script></script><script><block s="doReport"><block s="reportListItem"><l>2</l><block var="num"/></block></block></script></block></script><script x="389" y="97.66666666666669"><block s="doIfElse"><block s="reportIsA"><block var="num"/><l><option>number</option></l></block><script></script><script><block s="doReport"><block s="reportListItem"><l>1</l><custom-block s="%s of %n"><l>scientfic notation</l><block var="num"/></custom-block></block></block></script></block></script></scripts></block-definition><block-definition s="numbers from %&apos;min&apos; to %&apos;max&apos; step %&apos;step&apos;" type="reporter" category="lists"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input><input type="%n"></input></inputs><script><block s="doReport"><block s="reportProduct"><block s="reportNumbers"><block s="reportQuotient"><block var="min"/><block var="step"/></block><block s="reportQuotient"><block var="max"/><block var="step"/></block></block><block var="step"/></block></block></script><scripts><script x="256.0185546875" y="126.83333333333343"><block var="max"/></script></scripts></block-definition><block-definition s="%&apos;list&apos; nearest to %&apos;num&apos;" type="reporter" category="lists"><comment x="0" y="0" w="90" collapsed="false">find the item of the list closest to the number</comment><header></header><code></code><translations></translations><inputs><input type="%l"></input><input type="%n"></input></inputs><script><block s="doDeclareVariables"><list><l>closest</l></list></block><block s="doSetVar"><l>closest</l><block s="reportListItem"><l>1</l><block var="list"/></block></block><block s="doForEach"><l>item</l><block var="list"/><script><block s="doIf"><block s="reportLessThan"><block s="reportMonadic"><l><option>abs</option></l><block s="reportDifference"><block var="num"/><block var="item"/></block></block><block s="reportMonadic"><l><option>abs</option></l><block s="reportDifference"><block var="num"/><block var="closest"/></block></block></block><script><block s="doSetVar"><l>closest</l><block var="item"/></block></script></block></script></block><block s="doReport"><block var="closest"/></block></script></block-definition><block-definition s="remap %&apos;num&apos; from ( %&apos;old_min&apos; , %&apos;old_max&apos; ) to ( %&apos;new_min&apos; , %&apos;new_max&apos;" type="reporter" category="operators"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input><input type="%n"></input><input type="%n"></input><input type="%n"></input></inputs><script><block s="doReport"><block s="reportSum"><block s="reportProduct"><block s="reportQuotient"><block s="reportDifference"><block var="num"/><block var="old_min"/></block><block s="reportDifference"><block var="old_max"/><block var="old_min"/></block></block><block s="reportDifference"><block var="new_max"/><block var="new_min"/></block></block><block var="new_min"/></block></block></script></block-definition><block-definition s="%&apos;text&apos; %&apos;commands&apos;" type="command" category="other"><header></header><code></code><translations></translations><inputs><input type="%txt"></input><input type="%cs"></input></inputs><script><block s="doRun"><block var="commands"/><list></list></block></script></block-definition><block-definition s="%&apos;h-trig&apos; of %&apos;num&apos;" type="reporter" category="operators"><header></header><code></code><translations></translations><inputs><input type="%txt" readonly="true">sinh<options>sin&#xD;cost&#xD;tan&#xD;sec&#xD;csc&#xD;cot&#xD;sinh&#xD;cosh&#xD;tanh&#xD;sech&#xD;csch&#xD;coth</options></input><input type="%n"></input></inputs><script><block s="doIf"><block s="reportEquals"><block var="h-trig"/><l>sinh</l></block><script><block s="doReport"><l></l></block></script></block><block s="doIf"><l/><script></script></block></script></block-definition></blocks><variables><variable name="resolution"><l>16</l></variable><variable name="xoffset"><l>0</l></variable><variable name="yoffset"><l>0</l></variable><variable name="zoom"></variable><variable name="overlays?"><bool>false</bool></variable><variable name="rendering?"><bool>false</bool></variable><variable name="function"><context id="2023"><inputs></inputs><variables></variables><block s="reportPower"><custom-block s="%s"><l>i</l></custom-block><block s="reportPower"><l></l><l>2</l></block></block><receiver><ref id="268"></ref></receiver><origin><ref id="268"></ref></origin><context id="2034"><inputs><input>[object Object],[object Object],[object Object],[object Object]</input></inputs><variables></variables><receiver><ref id="268"></ref></receiver><origin><ref id="268"></ref></origin></context></context></variable></variables></project><media name="Complex Fibonacci Part 2" app="Snap! 6, https://snap.berkeley.edu" version="1"></media></snapdata>