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The team was thrilled with this discovery and saw the potential for creating durable patterns on the glass surface that could produce electricity when illuminated. This is a significant breakthrough because the technique does not require any additional materials, and all that is needed is tellurite glass and a femtosecond laser to create an active photoconductive material.

“Tellurium being semiconducting, based on this finding we wondered if it would be possible to write durable patterns on the tellurite glass surface that could reliably induce electricity when exposed to light, and the answer is yes,” explains Yves Bellouard who runs EPFL’s Galatea Laboratory.

Mainly this is about vertical farming.


In this eye-opening video, we explore the complex Environmental Impacts of an Aging Cure, delving into how extending Human Lifespan and pursuing Longevity could reshape our planet. We investigate the potential for increased Population Growth, the challenges of Sustainability, and the implications for Resource Consumption. Our analysis covers the Ecological Footprint of a world where aging is a thing of the past, addressing both the ethical dilemmas and the potential for Biomedical Advances in Age-Related Research. As concerns about Overpopulation and the need for Renewable Resources come to the forefront, we examine Eco-friendly Technologies and their role in supporting an age-extended society. Join us in this critical discussion about the intersection of Environmental Ethics and the quest for Age Extension.

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