scientific notation convertion of coefficients of a polynomial
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syms x
f = - 0.042440155 + 0.29476113*x + 0.47380563*x^2 - 0.17632127*x^3 + 0.038426007*x^4 - 0.005090693*x^5 + ...
0.00073686606*x^6 - 0.00024549191*x^7 + 0.000072758471*x^8 - 0.000017260649*x^9 + 0.0000048409949*x^10 - ...
0.0000014708831*x^11 + 0.00000037777292*x^12 - 0.000000086757727*x^13 + 0.000000020031646*x^14 - ...
4.1039434e-9*x^15 + 5.354131e-10*x^16 + 3.6711725e-12*x^17 - 1.9835736e-11*x^18 + 4.9956502e-12*x^19 - ...
7.3416852e-13*x^20 + 7.2822196e-14*x^21 - 4.9740077e-15*x^22 + 2.2607386e-16*x^23 - ...
6.1866125e-18*x^24 + 7.7315661e-20*x^25;
%% I want Matlab to convert all the coefficients of f(x) like: 7.7315661 e-20 (one digit before decimal and the exponential form with base 10 or e) and give me a modified f(x)
3 comentarios
Dyuman Joshi
el 27 de En. de 2024
Is the purpose to get the data in that particular format just for display? Or is it something else?
MINATI PATRA
el 27 de En. de 2024
syms x
f = - 0.042440155 + 0.29476113*x + 0.47380563*x^2 - 0.17632127*x^3 + 0.038426007*x^4 - 0.005090693*x^5 + ...
0.00073686606*x^6 - 0.00024549191*x^7 + 0.000072758471*x^8 - 0.000017260649*x^9 + 0.0000048409949*x^10 - ...
0.0000014708831*x^11 + 0.00000037777292*x^12 - 0.000000086757727*x^13 + 0.000000020031646*x^14 - ...
4.1039434e-9*x^15 + 5.354131e-10*x^16 + 3.6711725e-12*x^17 - 1.9835736e-11*x^18 + 4.9956502e-12*x^19 - ...
7.3416852e-13*x^20 + 7.2822196e-14*x^21 - 4.9740077e-15*x^22 + 2.2607386e-16*x^23 - ...
6.1866125e-18*x^24 + 7.7315661e-20*x^25;
vpa(f, 8)
Respuesta aceptada
Más respuestas (2)
syms x
f = - 0.042440155 + 0.29476113*x + 0.47380563*x^2 - 0.17632127*x^3 + 0.038426007*x^4 - 0.005090693*x^5 + ...
0.00073686606*x^6 - 0.00024549191*x^7 + 0.000072758471*x^8 - 0.000017260649*x^9 + 0.0000048409949*x^10 - ...
0.0000014708831*x^11 + 0.00000037777292*x^12 - 0.000000086757727*x^13 + 0.000000020031646*x^14 - ...
4.1039434e-9*x^15 + 5.354131e-10*x^16 + 3.6711725e-12*x^17 - 1.9835736e-11*x^18 + 4.9956502e-12*x^19 - ...
7.3416852e-13*x^20 + 7.2822196e-14*x^21 - 4.9740077e-15*x^22 + 2.2607386e-16*x^23 - ...
6.1866125e-18*x^24 + 7.7315661e-20*x^25
f = vpa(f,2)
something like this
1 comentario
Dyuman Joshi
el 27 de En. de 2024
Editada: Dyuman Joshi
el 27 de En. de 2024
@VBBV, nice idea, however, it does not change the notation for all values, please see the coefficients of x^4, x^3, x^2, x^1 and x^0.
syms x
f = - 0.042440155 + 0.29476113*x + 0.47380563*x^2 - 0.17632127*x^3 + 0.038426007*x^4 - 0.005090693*x^5 + ...
0.00073686606*x^6 - 0.00024549191*x^7 + 0.000072758471*x^8 - 0.000017260649*x^9 + 0.0000048409949*x^10 - ...
0.0000014708831*x^11 + 0.00000037777292*x^12 - 0.000000086757727*x^13 + 0.000000020031646*x^14 - ...
4.1039434e-9*x^15 + 5.354131e-10*x^16 + 3.6711725e-12*x^17 - 1.9835736e-11*x^18 + 4.9956502e-12*x^19 - ...
7.3416852e-13*x^20 + 7.2822196e-14*x^21 - 4.9740077e-15*x^22 + 2.2607386e-16*x^23 - ...
6.1866125e-18*x^24 + 7.7315661e-20*x^25
c = coeffs(f, 'all') % or
[c, t] = coeffs(f)
Now you can do whatever formatting you want with c.
The 'all' option and/or the second input are useful if one of the powers of x is not present in f, as in this example:
f2 = x^3+2*x+3
c1 = coeffs(f2) % Missing the x^2 term and in a different order
c2 = coeffs(f2, 'all') % Including the x^2 term
[c3, t3] = coeffs(f2) % x^2 (and its coefficient) are not present in both c3 and t3
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