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A new stepsize change technique for Adams methods


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Fig. 1

Plot of the φ1(α)) for AM2 methods for T1 and T3 techniques
Plot of the φ1(α)) for AM2 methods for T1 and T3 techniques

Fig. 2

Spectral radius of the AM2 methods for T1, T3 and interpolation techniques
Spectral radius of the AM2 methods for T1, T3 and interpolation techniques

Fig. 3

Spectral radius of the AM3 methods for T1, T3 and interpolation techniques
Spectral radius of the AM3 methods for T1, T3 and interpolation techniques

Fig. 4

Spectral radius of the AM4 methods for T1, T3 and interpolation techniques
Spectral radius of the AM4 methods for T1, T3 and interpolation techniques

Fig. 5

Spectral radius of the AM5 methods for T1, T3 and interpolation techniques
Spectral radius of the AM5 methods for T1, T3 and interpolation techniques

Fig. 6

Spectral radius of the AM6 methods for T1, T3 and interpolation techniques
Spectral radius of the AM6 methods for T1, T3 and interpolation techniques

Fig. 7

Spectral radius of the AM7 methods for T1, T3 and interpolation techniques. Note that there exists an interval near 0.8 where the spectral radius of T1 and interpolation techniques is greater than one.
Spectral radius of the AM7 methods for T1, T3 and interpolation techniques. Note that there exists an interval near 0.8 where the spectral radius of T1 and interpolation techniques is greater than one.

T1

T3

interp.

k

rk

Mk(rk)

αk

rk

Mk(rk)

αk

rk

Mk(rk)

2

1.803

[0, 1.803]

0.8122

1.803

[0, 1.803]

0.9184

1.695

[0, 1.695]

3

1.462

[0, 1.491]

0.8000

1.422

[0, 1.461]

0.9898

1.419

[0, 1.437]

4

1.315

[0, 1.321]

0.8000

1.296

[0, 1.321]

1.0020

1.297

[0, 1.297]

5

1.221

[0, 1.251]

0.9000

1.094

[0, 1.123]

0.9796

0.905

[0, 1.056]

6

1.120

[0, 1.172]

0.7489

1.017

[0, 1.096]

1.0351

1.170

[0, 0.257] ∪ [.971, 1.181]

eISSN:
2444-8656
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Life Sciences, other, Mathematics, Applied Mathematics, General Mathematics, Physics