Atıf Formatları
Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

Y. Yilmaz And F. Gül, "Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation," Integration , vol.97, 2024

Yilmaz, Y. And Gül, F. 2024. Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation. Integration , vol.97 .

Yilmaz, Y., & Gül, F., (2024). Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation. Integration , vol.97.

Yilmaz, YILDIRAN, And FATİH GÜL. "Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation," Integration , vol.97, 2024

Yilmaz, YILDIRAN And Gül, FATİH. "Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation." Integration , vol.97, 2024

Yilmaz, Y. And Gül, F. (2024) . "Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation." Integration , vol.97.

@article{article, author={YILDIRAN YILMAZ And author={FATİH GÜL}, title={Neuro-inspired hardware solutions for high-performance computing: A TiO2-based nano-synaptic device approach with backpropagation}, journal={Integration}, year=2024}