MaplePrimes Questions


I trying to get a proc to work. In the 1st half of the document, I derive four sections for a pedal curve and plot them fine. In the second I try doing it with a procedure called Pedal. Am having problems. I think it might be something to do with the for.. do loop. 

restart

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Typesetting:-mrow(Typesetting:-mi("Trunc", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo("≔", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("proc", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("F", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo("∷", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("procedure", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo(",", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.3333333em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("`+`", italic 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font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("v", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo("∷", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mi("list", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("name", italic = "true", font_style_name = "2D Input", mathvariant = "italic")), font_style_name = "2D Input", mathvariant = "normal"), Typesetting:-mo("≔", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("x", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo(",", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.3333333em"), Typesetting:-mi("y", italic = "true", font_style_name = "2D Input", mathvariant = "italic")), font_style_name = "2D Input", mathvariant = "normal", open = "[", close = "]")), font_style_name = "2D Input", mathvariant = "normal"), Typesetting:-mi(""), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("description", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-ms(" Truncates an algebraic equation to required degree"), Typesetting:-mo(";", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.2777778em"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "auto"), Typesetting:-mo("local", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("f", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo("≔", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("`if`", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("F", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo("∷", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mi("procedure", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo(",", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.3333333em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("F", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("v", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("")), font_style_name = "2D Input", mathvariant = "normal", open = "[", close = "]")), font_style_name = "2D Input", mathvariant = "normal"), Typesetting:-mo(",", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.3333333em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("F", italic = "true", font_style_name = "2D Input", mathvariant = "italic")), font_style_name = "2D Input", mathvariant = "normal"), Typesetting:-mo(";", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.2777778em"), Typesetting:-mi("print", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("F", italic = "true", font_style_name = "2D Input", mathvariant = "italic")), font_style_name = "2D Input", mathvariant = "normal"), Typesetting:-mo(";", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.2777778em"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "auto"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("if", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("not", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("f", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo("∷", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mi("`+`", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("then", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "auto"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("error", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-ms("Can't truncate 1-term expression"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "auto"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("else", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "auto"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("select", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("q", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo("→", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("degree", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mfenced(Typesetting:-mrow(Typesetting:-mi("q", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo(",", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.3333333em"), Typesetting:-mi("v", italic = "true", font_style_name = "2D Input", mathvariant = "italic")), font_style_name = "2D Input", mathvariant = "normal"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("≤", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("odr", italic = "true", font_style_name = "2D Input", mathvariant = "italic"), Typesetting:-mo(",", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "true", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.3333333em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mi("f", italic = "true", font_style_name = "2D Input", mathvariant = "italic")), font_style_name = "2D Input", mathvariant = "normal"), Typesetting:-mi(""), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "auto"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("fi", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mspace(height = "0.0ex", width = "0.0em", depth = "0.0ex", linebreak = "newline"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("end", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(" ", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo("proc", bold = "true", font_style_name = "2D Input", mathvariant = "bold", fontweight = "bold", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.0em", rspace = "0.0em"), Typesetting:-mo(":", font_style_name = "2D Input", mathvariant = "normal", fence = "false", separator = "false", stretchy = "false", symmetric = "false", largeop = "false", movablelimits = "false", accent = "false", lspace = "0.2777778em", rspace = "0.2777778em"))

NULLNULLNULL

NULL

a := 3; b := -1; c := -1

C := (x^2+y^2+12*x+9)^2-4*(2*x+3)^3

(x^2+y^2+12*x+9)^2-4*(2*x+3)^3

(1)

p21 := plots:-implicitplot(C, x = -3 .. 3, y = -5 .. 5, colour = "Salmon", gridrefine = 2, size = [300, 300])

 

sol1 := [solve(C, y)]

[(-x^2-12*x-9+2*(8*x^3+36*x^2+54*x+27)^(1/2))^(1/2), -(-x^2-12*x-9+2*(8*x^3+36*x^2+54*x+27)^(1/2))^(1/2), (-x^2-12*x-9-2*(8*x^3+36*x^2+54*x+27)^(1/2))^(1/2), -(-x^2-12*x-9-2*(8*x^3+36*x^2+54*x+27)^(1/2))^(1/2)]

(2)

NULL

f1 := expand(eval(C, [x = X+r, y = Y+s]))

X^4+4*X^3*r+2*X^2*Y^2+4*X^2*Y*s+6*X^2*r^2+2*X^2*s^2+4*X*Y^2*r+8*X*Y*r*s+4*X*r^3+4*X*r*s^2+Y^4+4*Y^3*s+2*Y^2*r^2+6*Y^2*s^2+4*Y*r^2*s+4*Y*s^3+r^4+2*r^2*s^2+s^4-8*X^3-24*X^2*r+24*X*Y^2+48*X*Y*s-24*X*r^2+24*X*s^2+24*Y^2*r+48*Y*r*s-8*r^3+24*r*s^2+18*X^2+36*X*r+18*Y^2+36*Y*s+18*r^2+18*s^2-27

(3)

ltg1 := simplify(expand(eval(Trunc(f1, 1, [Y, X]), [X = x-r, Y = y-s])))

-3*r^4+(4*x+16)*r^3+(-6*s^2+4*s*y-24*x-18)*r^2+((4*x-48)*s^2+48*s*y+36*x)*r-27-3*s^4+4*s^3*y+(24*x-18)*s^2+36*s*y

(4)

NULLThis*section*works*out*the*pedal*curve

This*section*works*out*the*pedal*curve

(5)

xp1 := 1; yp1 := 2; lprp1 := -coeff(ltg1, y)*x+coeff(ltg1, x)*y+K1; for i to nops(sol1) do s := eval(sol1[i], x = r); print("s  ", s); K1 := solve(eval(lprp1, [x = xp1, y = yp1]), K1); print("K1  ", K1); sol2 := solve([ltg1, lprp1], [x, y]); Pedal || i := [rhs(sol2[1, 1]), rhs(sol2[1, 2])]; p9 || i := plot([op(Pedal || i), r = -20 .. 20], colour = "MediumSeaGreen"); unassign('K1', 'sol2') end do

"K1  ", -4*(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(3/2)-4*r^2*(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(1/2)+16*(8*r^3+36*r^2+54*r+27)^(1/2)*r-48*r*(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(1/2)+192*r^2+96*(8*r^3+36*r^2+54*r+27)^(1/2)-36*(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(1/2)+576*r+432

(6)

seq(simplify(Pedal || i), i = 1 .. nops(sol1))

[((((2*r+3)^3)^(1/2)+6*r+9)*(-r^2-12*r-9+2*((2*r+3)^3)^(1/2))^(1/2)-2*(r-3)*(r^2+(5/2)*r-((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18), ((-2*r^2-3*r-((2*r+3)^3)^(1/2))*(-r^2-12*r-9+2*((2*r+3)^3)^(1/2))^(1/2)+6*(r-3)*(r-(1/6)*((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18)], [((-((2*r+3)^3)^(1/2)-6*r-9)*(-r^2-12*r-9+2*((2*r+3)^3)^(1/2))^(1/2)-2*(r-3)*(r^2+(5/2)*r-((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18), ((2*r^2+((2*r+3)^3)^(1/2)+3*r)*(-r^2-12*r-9+2*((2*r+3)^3)^(1/2))^(1/2)+6*(r-3)*(r-(1/6)*((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18)], [((6*r-((2*r+3)^3)^(1/2)+9)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)-2*(r-3)*(r^2+(5/2)*r+((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18), ((-2*r^2+((2*r+3)^3)^(1/2)-3*r)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+6*(r-3)*(r+(1/6)*((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18)], [((((2*r+3)^3)^(1/2)-6*r-9)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)-2*(r-3)*(r^2+(5/2)*r+((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18), ((2*r^2-((2*r+3)^3)^(1/2)+3*r)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+6*(r-3)*(r+(1/6)*((2*r+3)^3)^(1/2)+3/2))/(4*r^2-6*r-18)]

(7)

plots:-display(p21, seq(p9 || i, i = 1 .. nops(sol1)), size = [600, 600], scaling = constrained, caption = " Curve and it's Pedal curve")

 

This I can't get to work. All 4 sections of the pedal curve are the same and should not be.

Parse:-ConvertTo1D, "`%1` is not a module or member", RonanRoutines

Pedal2 := Pedal(C, xp1, yp1)

"K||i", -8*r^3+(-4*(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(1/2)+48)*r^2-8*(-(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(1/2)-3)^2*r-4*(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(3/2)+48*r^2+576*r+432+96*(8*r^3+36*r^2+54*r+27)^(1/2)-36*(-r^2-12*r-9-2*(8*r^3+36*r^2+54*r+27)^(1/2))^(1/2)

(8)

seq(simplify(Pedal2[i]), i = 1 .. nops(sol1))

[((4*r^2+6*((2*r+3)^3)^(1/2)+30*r+36)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(-r^2-34*r-69)*((2*r+3)^3)^(1/2)-26*r^3-243*r^2-540*r-351)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162), (((r+9)*((2*r+3)^3)^(1/2)+14*r^2+51*r+45)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(12*r+72)*((2*r+3)^3)^(1/2)+4*r^3+126*r^2+432*r+378)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162)], [((4*r^2+6*((2*r+3)^3)^(1/2)+30*r+36)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(-r^2-34*r-69)*((2*r+3)^3)^(1/2)-26*r^3-243*r^2-540*r-351)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162), (((r+9)*((2*r+3)^3)^(1/2)+14*r^2+51*r+45)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(12*r+72)*((2*r+3)^3)^(1/2)+4*r^3+126*r^2+432*r+378)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162)], [((4*r^2+6*((2*r+3)^3)^(1/2)+30*r+36)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(-r^2-34*r-69)*((2*r+3)^3)^(1/2)-26*r^3-243*r^2-540*r-351)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162), (((r+9)*((2*r+3)^3)^(1/2)+14*r^2+51*r+45)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(12*r+72)*((2*r+3)^3)^(1/2)+4*r^3+126*r^2+432*r+378)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162)], [((4*r^2+6*((2*r+3)^3)^(1/2)+30*r+36)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(-r^2-34*r-69)*((2*r+3)^3)^(1/2)-26*r^3-243*r^2-540*r-351)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162), (((r+9)*((2*r+3)^3)^(1/2)+14*r^2+51*r+45)*(-r^2-2*((2*r+3)^3)^(1/2)-12*r-9)^(1/2)+(12*r+72)*((2*r+3)^3)^(1/2)+4*r^3+126*r^2+432*r+378)/((2*r+30)*((2*r+3)^3)^(1/2)+36*r^2+162*r+162)]

(9)

for i to nops(sol1) do p9 || i := plot([op(Pedal2[i]), r = -20 .. 20], colour = "MediumSeaGreen") end do

 

``

NULL

NULL

``


 

Download Proc_for_Pedal_not_working.mw

Hi all


I have the following ordinary differential equation, where all the parameter used are constant ( A,B,C,D,E,F,G,H).

Is there any technique gives a solution
diff(y(x), x$2)+(A/x+B/x^2+C)*(diff(y(x), x))+D*(diff(y(x), x))^2/x+E*(diff(y(x), x))^3+F/x+G/x^2+H/x^3 = 0;

 

 thanks for your help

Dear all;

I hope an idea to solve the following problem.

P(n,t): probability at time t

Lambda and mu : two given parameters ( can be fixed ), and we assure mu greater then lambda

 t : time parameter ( we can say that 0<= t <=T , and T fixed ) 

 for n an integrer  greater then 1 we have the following equation

eq := diff(P(n, t), t) = -(lambda+mu)*P(n, t)+lambda*P(n-1, t)+mu*P(n+1, t);
 

for n=0, we have

ics := diff(P(0, t), t) = -lambda*P(0, t)+mu*P(1, t);

How can we compute P(n,t) ,

is there an exact solution or a numerical method to get the value of P(n,t)

Then we plot( P(n,t),t=0..100) ;

 

Many thinks

 

 

 

 

 

Can somebody please help me with this assignment?
Struggling a bit with the Euler-method from task d) and further.


 

rand1 := rand(2 .. 9):

4

(1)

NULL

(a*sqrt(a*a^b))^(1/c)

16^(1/4)*2^(1/8)

(2)

"example a:=2;b:=6;c:=4; result 2 D output is ((2*sqrt(2*2^(6)))^(1/(4)))"

````

``

NULL

but*result*is*16^(1/4)*2^(1/8)

``

assume(x > 0)

sqrt(x^3*(x^(3/4)))

(x^(15/4))^(1/2)

(3)

``(15/8)*How*determine*x*exponent*is

``


 

Download luythua.mw

 

From the screenshot we see that Maple has correctly replaced a in the defintion of s. But it has not incorported v[B]. I was a SMath (free from internet) user and this was a simple operation.

Thanks for any advice.


SymbolicEval.mw

How do you can convert g into ?

Can you help me?

 

Hi

I am trying to evaluate a function that contains an infinite sum. I need to evaluate the integral to determine a CDF, and from that hopefully the inverse CDF in order to sample the corresponding PDF.

The sum comes from a 2F1 hypergeometric function, which I have written manually in the attached file.

Can anyone tell me if and how it is possible to evaluate this integral, with respect to x?

I have inserted an image below, but also the entire file :) Marginal2.mw

Thanks in advance.

 

Maple 2018 starts but block and hangs after the first imput.

Even after a clean install on a clean disk where there are no old files of maple.

My specs are: WIN10 pr 64/ I7 /16 GB/ SSD

Who has the same problem and a sollution?

Uxx + Uyy =0

      y is less than Pi,x is greater than 0

B.c are u(0,y)=0 , u(Pi,y)=sinh*Pi*cosy

              u(x,0)=sinx , u(x,Pi)=-sinhx

How can I compute MatrixInverse, MatrixMultiply and eigenvalues(eigenvectors) faster? are there any procedures or commands that can be used instead of those three command mentioned before to speed up calculations?

1.mw

In the above document, digits must be 30.

I want to know how to program a metric g_[ ]  so that entries are zero apart from the diagonal.
Basically I am using the physics package and can set it as arbitrary or can set it to be specific values but I just want arbitrary values across the diagonal. e.g
 

with(Physics);
Setup(mathematicalnotation = true);
                 [mathematicalnotation = true]

Setup(metric = arbitrary);
 [metric = {(1, 1) = _F1(X), (1, 2) = _F2(X), (1, 3) = _F3(X), (1, 4) = _F4(X), (2, 2) = _F5(X), (2, 3) = _F6(X),  (2, 4) = _F7(X),

(3, 3) = _F8(X), (3, 4) = _F9(X),  (4, 4) = _F10(X)}]

SO here I want to keep F1 F5 F8 and F10, thanks in advance!

THIS IS WHAT I TRIED:

 

with(Physics);
Setup(mathematicalnotation = true);
Setup(Coordinatesystem = (X = [x1, x2, x3, x4]), metric = f(dx1^2+dx2^2+dx3^2+dx4^2));
    * Partial match of  'Coordinatesystem' against keyword 

       'coordinatesystems'

  Default differentiation variables for d_, D_ and dAlembertian 

   are: (Xequals(x1,x2,x3,x4))
  Systems of spacetime Coordinates are: (Xequals(x1,x2,x3,x4))
Error, (in Physics:-Setup) expected definition of a metric as a tensorial algebraic expression with two free indices; received one with free indices {}

 

I have a solution to a linear ODE which is very long and complicated.  The solition clearly has some parts which are repeated and so it would would be easiest to express those repeated parts as something simpler.

 

For example, suppose I had

 

x = (-b + sqrt(b^2 - 4*a*c) ) /2*a

 

What is the command to take x and do someting like

 

Z = sqrt(b^2 - 4*a*c)

 

x = (-b + Z)/2*a

 

 

 

 

when plotting a polar function in terms of r and theta, is there a way to animate it?  

For instance I want to animate u(r,theta)=rcos(theta) for theta between 0 and 2Pi.

i have to list 
a := sort([.17, .23, .33, .39, .39, .40, .45, .52, .56, .59, .64, .66, .70, .76, .77, .78, .95, .97, 1.02, 1.12, 1.19, 1.24, 1.59, 1.74, 2.92])

b:=[5,seq(0,i=1..19)]:

i want to make aloop on a  by saying that for i=1 eliminate b[1] from a then sort the remining elements of a 

then for i=2 eliminate b[2] from a then sort the rest elimant of a and so on  

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