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Neglect higher order derivatives in expression
Linearity AssumptionReplace rule with function? Derivatives don't evaluateTransformation of Derivatives under change of coordinatesReplace function and its derivativesSymbolic derivatives and substitutionReplaceAll and derivativesSetting a function and all its derivatives to zeroReplace functions of an expression by their zeroth derivativeReplaceString on complicated expressionReplace derivatives using vector notationFastest way to replace/evaluate symbols in long expressions
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Say I have an expression of this sort:
Derivative[5][x1][t]+Derivative[3][x2][t]+x1[t]+Derivative[2][x1][t]
and so on...
I would like to ask Mathematica to neglext all expressions having derivatives higher than a given order (say N).
What would be a good solution for that?
calculus-and-analysis replacement
$endgroup$
add a comment |
$begingroup$
Say I have an expression of this sort:
Derivative[5][x1][t]+Derivative[3][x2][t]+x1[t]+Derivative[2][x1][t]
and so on...
I would like to ask Mathematica to neglext all expressions having derivatives higher than a given order (say N).
What would be a good solution for that?
calculus-and-analysis replacement
$endgroup$
$begingroup$
Related: mathematica.stackexchange.com/questions/192076/…
$endgroup$
– Michael E2
6 mins ago
add a comment |
$begingroup$
Say I have an expression of this sort:
Derivative[5][x1][t]+Derivative[3][x2][t]+x1[t]+Derivative[2][x1][t]
and so on...
I would like to ask Mathematica to neglext all expressions having derivatives higher than a given order (say N).
What would be a good solution for that?
calculus-and-analysis replacement
$endgroup$
Say I have an expression of this sort:
Derivative[5][x1][t]+Derivative[3][x2][t]+x1[t]+Derivative[2][x1][t]
and so on...
I would like to ask Mathematica to neglext all expressions having derivatives higher than a given order (say N).
What would be a good solution for that?
calculus-and-analysis replacement
calculus-and-analysis replacement
edited 5 mins ago
Michael E2
147k12198475
147k12198475
asked 29 mins ago
Mirko AvetaMirko Aveta
908617
908617
$begingroup$
Related: mathematica.stackexchange.com/questions/192076/…
$endgroup$
– Michael E2
6 mins ago
add a comment |
$begingroup$
Related: mathematica.stackexchange.com/questions/192076/…
$endgroup$
– Michael E2
6 mins ago
$begingroup$
Related: mathematica.stackexchange.com/questions/192076/…
$endgroup$
– Michael E2
6 mins ago
$begingroup$
Related: mathematica.stackexchange.com/questions/192076/…
$endgroup$
– Michael E2
6 mins ago
add a comment |
1 Answer
1
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Derivative[5][x1][t] + Derivative[3][x2][t] + x1[t] +
Derivative[2][x1][t] /. Derivative[k_][x_][t_] /; k >= 3 :> 0
x1[t] + (x1^[Prime][Prime])[t]
For understanding /;
see the documentation of Condition
.
$endgroup$
add a comment |
Your Answer
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1 Answer
1
active
oldest
votes
1 Answer
1
active
oldest
votes
active
oldest
votes
active
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votes
$begingroup$
Derivative[5][x1][t] + Derivative[3][x2][t] + x1[t] +
Derivative[2][x1][t] /. Derivative[k_][x_][t_] /; k >= 3 :> 0
x1[t] + (x1^[Prime][Prime])[t]
For understanding /;
see the documentation of Condition
.
$endgroup$
add a comment |
$begingroup$
Derivative[5][x1][t] + Derivative[3][x2][t] + x1[t] +
Derivative[2][x1][t] /. Derivative[k_][x_][t_] /; k >= 3 :> 0
x1[t] + (x1^[Prime][Prime])[t]
For understanding /;
see the documentation of Condition
.
$endgroup$
add a comment |
$begingroup$
Derivative[5][x1][t] + Derivative[3][x2][t] + x1[t] +
Derivative[2][x1][t] /. Derivative[k_][x_][t_] /; k >= 3 :> 0
x1[t] + (x1^[Prime][Prime])[t]
For understanding /;
see the documentation of Condition
.
$endgroup$
Derivative[5][x1][t] + Derivative[3][x2][t] + x1[t] +
Derivative[2][x1][t] /. Derivative[k_][x_][t_] /; k >= 3 :> 0
x1[t] + (x1^[Prime][Prime])[t]
For understanding /;
see the documentation of Condition
.
edited 17 mins ago
answered 25 mins ago
Henrik SchumacherHenrik Schumacher
54.4k472151
54.4k472151
add a comment |
add a comment |
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Related: mathematica.stackexchange.com/questions/192076/…
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– Michael E2
6 mins ago