How can i display symbolic expressions using decimals instead of rational fractions?
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Dennis Yeh
le 27 Fév 2015
Commenté : Walter Roberson
le 24 Avr 2021
Hello,
When I express symbolic expressions using syms with decimal values, I often get very large fractions. Since the result is not constant, I cannot use double() to evaluate the result as a decimal. sym2poly() works in most cases, but one day I will probably need to evaluate a long expression that is not a polynomial. I have also tried sym(expression,'d') but this doesn't work for non-numeric inputs. Is there some way to display symbolic expressions using decimals?
Thanks!
Example:
syms SIG_X SIG_Y SIG_Z
S_bar = [[0.78,-0.35,-0.38];[-0.35,0.78,-0.38];[-0.38,-0.38,0.92]]; %[Pa]
alpha = [-0.018,24.3,24.3]*10^-6; %[/C]
stress = [SIG_X;SIG_Y;SIG_Z];
dT = 25;
strain = S_bar*stress+alpha'*dT';
disp(strain)
Result:
(39*SIG_X)/50 - (7*SIG_Y)/20 - (19*SIG_Z)/50 - 8500259669165361/18889465931478580854784
(39*SIG_Y)/50 - (7*SIG_X)/20 - (19*SIG_Z)/50 + 5603198512389277/9223372036854775808
(23*SIG_Z)/25 - (19*SIG_Y)/50 - (19*SIG_X)/50 + 5603198512389277/9223372036854775808
Desired Result:
0.78*SIG_X - 0.35*SIG_Y - 0.38*SIG_Z - 4.5e-07
0.78*SIG_Y - 0.35*SIG_X - 0.38*SIG_Z + 6.075e-04
0.92*SIG_Z - 0.38*SIG_Y - 0.38*SIG_X + 6.075e-04
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Mischa Kim
le 27 Fév 2015
Dennis, you could use something like
vpa(strain,5)
13 commentaires
Sambit Supriya Dash
le 23 Avr 2021
@Walter Roberson first, 'vpa' is simplifying the fraction in decimal form, secondly, 'vpa(strain,a)' is specifying the order of accuracy 'd'.
So, 'vpa(strain)', would also work, if you don't specify any decimal accuracy.
Thanks @Mischa Kim
Walter Roberson
le 24 Avr 2021
When you vpa(strain) then that is the same as vpa(strain, digits()) -- it does the vpa at the number of default digits you have set up, rather than doing a different operation.
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Nitesh khanna
le 27 Juil 2020
Modifié(e) : Nitesh khanna
le 27 Juil 2020
Can we declare variables in matrix as 'real number' . if , y, then how to declare variable of matrix A as 'Real number'
A=[[sym( 'S_x', [N 3]) sym( 'S_y', [N 3]) ]
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