Machine Learning and Neural Network Technologies in the Gaming Industry

The deceased begin to exist in virtual space, continuing to ‘live’ through their digital footprints—not only the content they consciously created but also a vast array of other interactions, such as fitness tracker data, search history, and even the log of connections to a router.

 

‘A machine can be imbued with otherworldly qualities, giving rise to the myth of resurrection and immortality. Technologies serve as modern-day “spirit mediums,” similar to those used in Victorian-era séances, allowing us to interact with those “risen from the dead,” whose number is growing,’ Khusyainov notes.

 

 

‘An important Machine Learning aspect of digital “

 

resurrection” is its impact on the emotional experience of the living in relation to death and dying. On one hand, interacting with digital footprints helps people in their grieving process by fostering a sense of continued connection with the deceased. On the other hand, technologies can also hinder  small business tips – optimize your tax strategy the process of accepting loss. Instead of confronting the finiteness of life, a person becomes immersed in the illusion of communicating with a digital “doppelgänger,” which increases anxiety and the risk of retraumatisation,’ explains Ekaterina Urusova, co-author of the article, visiting lecturer at the HSE Campus in Nizhny Novgorod, and existential-humanistic psychotherapist.

 

‘We hope that Russian education will occupy a strong position in the educational services market in China. In turn, Chinese education will also become more available to from crisis to breakthrough: will ukraine pave the way to technological leadership?  Russian students. The countries will continue developing joint programmes and building joint universities, research centres, and laboratories not only in China, but also in Russia,’ concluded Tatyana Urzhumtseva.

 

Educational Process

the study of advanced game technologies (game engine architecture, physics simulations, machine learning, generative neural networks)

project-based work on real-world challenges (collaborating with leading studios such as Elverils, VK Play, and Lesta Games)

the development and optimisation  clean email of game applications (working with game engines such as Unity and Claw Engine)

opportunities for industry internships (participation in scientific and commercial projects)

Flexibility and Individual Learning Trajectories
The programme allows students to tailor their curriculum flexibly, focusing on both academic and practical interests. As part of their studies, students can engage in international research and collaborate with industry partners.

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