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last edited 10 years ago by test1 |
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Editor: Bill Page
Time: 2008/08/21 07:44:13 GMT-7 |
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Note: rewrite rules |
changed: -sincosAngles:= rule ( _ - cos((n | integer?(n)) * x) == _ - cos((n - 1)*x) * cos(x) - sin((n - 1)*x) * sin(x); _ - sin((n | integer?(n)) * x) == _ - sin((n - 1)*x) * cos(x) + cos((n - 1)*x) * sin(x) ) sincosAngles:= rule cos((n | integer?(n)) * x) == cos((n - 1)*x) * cos(x) - sin((n - 1)*x) * sin(x) sin((n | integer?(n)) * x) == sin((n - 1)*x) * cos(x) + cos((n - 1)*x) * sin(x)
The domain InputForm can be quite useful for manipulating parts of expressions. For examplefricasex1:=integrate(log(x)+x,\begin{equation} \label{eq1}{{2 \ x \ {\log \left({x}\right)}}+{{x}^{2}}-{2 \ x}}\over 2\end{equation}x) Type: Union(Expression(Integer),...) fricas%::InputForm\begin{equation} \label{eq2}\left(/ \ {\left(+ \ {\left( \ {\left( \ 2 \ x \right)}\ {\left(\log \ x \right)}\right)}\ {\left(+ \ {\left(^\ x \ 2 \right)}\ {\left( \ - 2 \ x \right)}\right)}\right)}\ 2 \right)\end{equation*}Type: InputForm?fricasex2:=interpret((%::InputForm).2.2)\begin{equation} \label{eq3}2 \ x \ {\log \left({x}\right)}\end{equation}Type: Expression(Integer)If you would like to do this with a more common type of expression and hide the details, you can define
fricasop(n,x) == interpret((x::InputForm).(n+1)) Type: VoidThen manipulating expressions looks like this:
fricasop(1,ex1) \begin{equation} \label{eq4}{2 \ x \ {\log \left({x}\right)}}+{{x}^{2}}-{2 \ x}\end{equation}fricasCompiling function op with type (PositiveInteger,Expression(Integer) ) -> Any Type: Expression(Integer)fricasop(1,%) \begin{equation} \label{eq5}2 \ x \ {\log \left({x}\right)}\end{equation}fricasCompiling function op with type (PositiveInteger,Any) -> Any Type: Expression(Integer)fricas(op(1,\begin{equation} \label{eq6}{{2 \ x \ {\log \left({x}\right)}}-{{x}^{2}}+{2 \ x}}\over 2\end{equation}op(1, ex1))-op(2, op(1, ex1)))/op(2, ex1) Type: Expression(Integer)Rules and Pattern Matching (from WesterProblemSet?)
Trigonometric manipulations---these are typically difficult for students
fricasr:= cos(3*x)/cos(x)\begin{equation} \label{eq7}{\cos \left({3 \ x}\right)}\over{\cos \left({x}\right)}\end{equation}Type: Expression(Integer)=> cos(x)^2 - 3 sin(x)^2 or similar
fricasreal(complexNormalize(r))\begin{equation} \label{eq8}-{2 \ {{\sin \left({x}\right)}^{2}}}+{2 \ {{\cos \left({x}\right)}^{2}}}- 1\end{equation}Type: Expression(Integer)=> 2 cos(2 x) - 1
fricasreal(normalize(simplify(complexNormalize(r))))\begin{equation} \label{eq9}{2 \ {\cos \left({2 \ x}\right)}}- 1\end{equation}Type: Expression(Integer)Use rewrite rules => cos(x)^2 - 3 sin(x)^2
fricassincosAngles:= rule cos((n | integer?(n)) * x) == cos((n - 1)*x) * cos(x) - sin((n - 1)*x) * sin(x) sin((n | integer?(n)) * x) == sin((n - 1)*x) * cos(x) + cos((n - 1)*x) * sin(x)\begin{equation*} \label{eq10}\begin{array}{@{}l} \displaystyle \left\{{{\cos \left({n \ x}\right)}\mbox{\rm = =}{-{{\sin \left({x}\right)}\ {\sin \left({{\left(n - 1 \right)}\ x}\right)}}+{{\cos \left({x}\right)}\ {\cos \left({{\left(n - 1 \right)}\ x}\right)}}}}, \right. \ \ \displaystyle \left.\:{{\sin \left({n \ x}\right)}\mbox{\rm = =}{{{\cos \left({x}\right)}\ {\sin \left({{\left(n - 1 \right)}\ x}\right)}}+{{\cos \left({{\left(n - 1 \right)}\ x}\right)}\ {\sin \left({x}\right)}}}}\right\} \end{array} \end{equation*}Type: Ruleset(Integer,Integer, Expression(Integer)) fricassincosAngles r\begin{equation} \label{eq11}-{3 \ {{\sin \left({x}\right)}^{2}}}+{{\cos \left({x}\right)}^{2}}\end{equation}Type: Expression(Integer)Other Operations
The domain FunctionSpace? includes the following operations:
isExpt(p,f:Symbol) returns [x, n] if p = x**n and n <> 0 and x = f(a) isExpt(p,op:BasicOperator) returns [x, n] if p = x**n and n <> 0 and x = op(a) isExpt(p) returns [x, n] if p = x**n and n <> 0 isMult(p) returns [n, x] if p = n * x and n <> 0 isPlus(p) returns [m1,...,mn] if p = m1 +...+ mn and n > 1 isPower(p) returns [x, n] if p = x**n and n <> 0 isTimes(p) returns [a1,...,an] if p = a1*...*an and n > 1If these conditions are not met, then the above operations return "failed".
For example,
fricasisMult(3*x)\begin{equation*} \label{eq12}\left[{coef = 3}, \:{var = x}\right]?\end{equation*}Type: Union(Record(coef: Integer,var: Kernel(Expression(Integer))), ...) but
fricasisMult(x*y)\begin{equation} \label{eq13}\mbox{\tt "failed"}\end{equation}Type: Union("failed",...) In the context of
Expression Integer
, orPolynomial Integer
the parameter n must be an Integer. The Symboly
is not anInteger
.Not exactly analogously
fricasisPower(x**y)
There are no library operations named ** Use HyperDoc Browse or issue )what op ** to learn if there is any operation containing " ** " in its name.
Cannot find a definition or applicable library operation named ** with argument type(s) Variable(x) Variable(y)
Perhaps you should use "@" to indicate the required return type,or "$" to specify which version of the function you need. whereas
fricasisPower(x**10)
There are no library operations named ** Use HyperDoc Browse or issue )what op ** to learn if there is any operation containing " ** " in its name.
Cannot find a definition or applicable library operation named ** with argument type(s) Variable(x) PositiveInteger
Perhaps you should use "@" to indicate the required return type,or "$" to specify which version of the function you need. In the first case the
Integer
is assume to be 1.We have:
fricasisTimes(x*y*z)\begin{equation*} \label{eq14}\left[ z , \: y , \: x \right]?\end{equation*}Type: Union(List(Polynomial(Integer)),...) fricasisPlus(x+y+z*y)\begin{equation*} \label{eq15}\left[{y \ z}, \: y , \: x \right]?\end{equation*}Type: Union(List(Polynomial(Integer)),...) Whereas
fricasisTimes((x+y)*z)\begin{equation} \label{eq16}\mbox{\tt "failed"}\end{equation}Type: Union("failed",...) That is because the expression is internally treated as a
MultivariatePolynomial
like this:fricas((x+y)*z)::MPOLY([x,\begin{equation} \label{eq17}{z \ x}+{z \ y}\end{equation}y, z], INT) If you say:
fricasisPlus((x+y)*z)\begin{equation*} \label{eq18}\left[{y \ z}, \:{x \ z}\right]?\end{equation*}Type: Union(List(Polynomial(Integer)),...) perhaps the result makes sense?
For some of the details of these operations I consulted the actual algebra code at:
http://axiom-wiki.newsynthesis.org/axiom--test--1/src/algebra/FspaceSpad
Click on
dvi
to see the documentation.You can also enter expressions like
isTimes
in the search box on the upper right and see all the places in the algebra where this operation is defined and used.
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