InnovationResearchTechnology

Digital Innovation Transforms Wood Waste into Sustainable Building Materials

A groundbreaking computational approach is revolutionizing how irregular wood elements are repurposed into building materials. The method combines 3D scanning, algorithmic design, and mixed reality assembly with innovative plastic joinery techniques.

Breakthrough in Sustainable Construction

Researchers have developed an innovative computational workflow that transforms irregular wood waste into viable building components, according to reports in Scientific Reports. The method addresses the significant underutilization of unprocessed logs, forks, and branches in sustainable building design and construction, sources indicate. Traditional construction methods often discard these complex geometric elements due to reconfiguration challenges, leading to substantial material waste.

BusinessGamingTechnology

Former Ridgeline Games Staff Overlooked in Battlefield 6 Credits Despite Foundation Work, Says Studio Co-Founder

Marcus Lehto, co-creator of Halo, has publicly criticized the credit allocation in Battlefield 6, stating that former Ridgeline Games staff who built the game’s foundation were improperly acknowledged. The studio, which was shuttered earlier this year, had been developing the narrative campaign before EA’s restructuring. Lehto emphasized that game development is a team effort where every contributor deserves fair recognition.

Battlefield 6 Faces Credit Controversy

Halo co-creator Marcus Lehto has expressed significant disappointment regarding the credit treatment of former Ridgeline Games staff in the recently released Battlefield 6, according to reports. Despite what sources indicate were foundational contributions to the game, many developers from the shuttered studio were reportedly relegated to minor acknowledgment sections or omitted entirely from credits.

ResearchScienceTechnology

Breakthrough Core-Shell Nanomaterial Shows High Efficiency in Toxic Gas Capture

Scientists have engineered a core-shell nano-adsorbent demonstrating exceptional selectivity and capacity for toxic hydrogen sulfide gas removal. The innovative material achieved 94.3% adsorption efficiency under optimized conditions, according to recent findings.

Novel Nanomaterial Breakthrough in Toxic Gas Removal

Researchers have developed an advanced core-shell hybrid nanomaterial that demonstrates remarkable efficiency in selectively capturing toxic hydrogen sulfide gas, according to recent scientific reports. The MIL-101(Cr)@MIPs@H₂S adsorbent achieved an optimal adsorption capacity of 360.11 mg/g with 94.3% efficiency under carefully optimized conditions, sources indicate.

StartupsTechnologyTelecom

European Startup Secures Seed Funding for Multi-Orbit 5G Satellite Modem Development

Nxgsat, a Belgian startup founded by satellite industry veterans, has secured €1.2 million in seed funding to develop a virtual 5G modem for satellite communications. The technology aims to break down proprietary barriers in satellite networks, enabling multi-orbit compatibility. Commercial availability is reportedly planned for the second quarter of 2026.

Funding Breakthrough for Satellite Connectivity Innovation

A Belgian startup founded by satellite networking veterans has reportedly secured 1.2 million euros ($1.4 million) in seed funding to develop what sources describe as a groundbreaking virtual 5G modem for satellite communications. According to reports, Nxgsat’s technology is designed for multi-orbit compatibility across traditionally closed communications infrastructure, potentially revolutionizing how satellite networks operate.

AIBusinessTechnology

DeepSeek’s Novel OCR Approach Treats Text as Visual Data, Challenging Traditional Language Model Input Methods

DeepSeek’s latest research paper introduces a radical approach to optical character recognition, framing it as optical compression rather than traditional text processing. The methodology questions whether pixels might be superior inputs for large language models compared to conventional text tokens, potentially addressing scalability limitations in current AI systems.

Revolutionary OCR Framework Challenges AI Input Paradigms

DeepSeek has released groundbreaking research that fundamentally reimagines optical character recognition as optical compression, according to technical analysts reviewing the new paper. The approach represents text visually rather than processing individual tokens, potentially addressing significant scalability limitations in current large language models.