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Fig 1.

Schematic diagram of Jeffrey fluid between two squeezed plates embedded in a porous medium with transverse magnetic field.

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Fig 1 Expand

Table 1.

Numerical values of −f′′(1), −θ′(1) and −ϕ′(1) for S when λ1 → ∞, Da → ∞, De = 10−10, Rd = Ha = γ = Du = Sr = 0, δ = 0.1 and R = Sc = Pr = Ec = 1.

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Table 1 Expand

Fig 2.

Impact of S on f′(η).

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Fig 2 Expand

Fig 3.

Impact of λ1 on f′(η).

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Fig 3 Expand

Fig 4.

Impact of Ha on f′(η).

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Fig 4 Expand

Fig 5.

Impact of Da on f′(η).

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Fig 5 Expand

Fig 6.

Impact of De on f′(η).

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Fig 6 Expand

Fig 7.

Impact of Pr on θ(η).

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Fig 7 Expand

Fig 8.

Impact of Ec on θ(η).

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Fig 8 Expand

Fig 9.

Impact of Rd on θ(η).

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Fig 9 Expand

Fig 10.

Impact of γ on θ(η).

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Fig 10 Expand

Fig 11.

Impact of Du on θ(η).

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Fig 11 Expand

Fig 12.

Impact of Sr on θ(η).

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Fig 12 Expand

Fig 13.

Impact of Du on ϕ(η).

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Fig 13 Expand

Fig 14.

Impact of Sr on ϕ(η).

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Fig 14 Expand

Fig 15.

Impact of Sc on ϕ(η).

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Fig 15 Expand

Fig 16.

Impact of R on ϕ(η).

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Fig 16 Expand

Table 2.

Numerical results of −(1 + 1/λ1)f′′(1) for S, De, Da, λ1 and Ha when Du = δ = Rd = Ec = Sr = 0.1, γ = 0.01, S = 1 and Pr = R = Sc = 1.5.

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Table 2 Expand

Table 3.

Numerical results of for Rd, Pr, γ, Ec and Du when Sr = Ha = 0.1, De = 0.01, Da = S = δ = 1 and R = λ1 = Sc = 1.5.

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Table 3 Expand

Table 4.

Numerical outputs of ϕ′(1) for Sc, Sr and R as De = γ = 0.01, Rd = Ec = Du = Ha = 0.1, δ = S = Da = 1 and Pr = λ1 = 1.5.

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Table 4 Expand