Статистическое моделирование. Учебное пособие - 40 стр.

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a; b σ λ n p F (ξ, η, ζ, ψ, ω)
1 1 0.5 2 (ξ
2
+ η
2
)/(1 + η)
2 0.1 1.1 sin (2 · ω
1
) · exp (ω
2
)
3 π/4 π/16 2 arctan(ξ) · (1 + ψ
2
)
1
4 0.2 0.1 ln (1 + ξ) · [ω
2
1
+ ω
2
2
]
1
5 π/2 0.5 1 (cos (ξ) + η) ·[ω
2
1
+ ω
2
2
]
1
6 1 0.1 10 0.2 ξ
2
· exp (ζ
2
)
7 2 0.5 (ξ + exp (ω
1
)) · (1 + exp (2 · ω
2
2
))
2
8 0 1 1.2 10 0.1 ξ
2
+ ζ
2
+ η
2
9 0.5 1 0.8 10 0.2 (ξ
2
+ ζ
2
+ η
2
) · (2 + tan(ζ
2
))
2
10 0.4 0.2 3 10 0.5 (cos (ξ) + η) ·(2 + tan(ζ
2
))
2
11 0.1 1 3 15 0.45 exp[(cos(ξ) + η) ·(1 + h)
1
]
12 3 4 cos (ψ) ·exp (ω
2
1
)
13 0.1 2 20 0.3 (ω
1
+ ξ) · arctan (1 + h)
1
14 1; 2 3 0.8 sin (h
3
) · (ω
1
+ ξ) · arctan (1 + h)
1
15 2; 3 1 sin
ξ + cos
1 + η

3
16 1 0.8 2.5
p
ξ
2
+ η
2
+ ω
2
1
17 0.5 1.2 0.7 9 0.4
q
ξ
2
+
p
η
2
+ ζ
2
18 0.1 0.7 3.5 sin
ξ +
p
η
2
+ ω
2
1
3
19 1 1 0.5 sin ((cos (ξ
2
) + η
2
))
20 π/4 π/32 arctan(ξ
2
) · (1 + arctan (ω
2
1
))
1