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Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects
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V. Veliu Et Al. , "Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects," Magnetochemistry , vol.10, no.6, 2024

Veliu, V. Et Al. 2024. Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects. Magnetochemistry , vol.10, no.6 .

Veliu, V., Yalçın, O., Özüm, S., & ERDEM, R., (2024). Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects. Magnetochemistry , vol.10, no.6.

Veliu, Valon Et Al. "Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects," Magnetochemistry , vol.10, no.6, 2024

Veliu, Valon Et Al. "Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects." Magnetochemistry , vol.10, no.6, 2024

Veliu, V. Et Al. (2024) . "Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects." Magnetochemistry , vol.10, no.6.

@article{article, author={Valon Veliu Et Al. }, title={Nonequivalent Antiferromagnetically Coupled Sublattices Induce Two-Step Spin-Crossover Transitions: Equilibrium and Nonequilibrium Aspects}, journal={Magnetochemistry}, year=2024}