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BWXT to Sell Medical Business to Nordic Capital for Up to $800 Million

BWXT to Sell Medical Business to Nordic Capital for Up to $800 Million

On August 3, BWX Technologies, Inc. announced that it has reached a definitive agreement to sell its medical business to healthcare investment company Nordic Capital. The transaction is valued at up to $800 million and includes BWXT Medical and the stable medical isotope business of Kinectrics. BWXT stated that the divestiture will help the company concentrate resources and capital to drive growth in its core nuclear national security business and commercial nuclear power market operations. The company believes these areas are its long-term strategic priorities. Under Nordic Capital's ownership, the medical business is expected to further expand its scale, enhance capabilities, and strengthen its position in the radiopharmaceutical field...

2026-08-04

Curium and Lantheus Reach Definitive Merger Agreement to Build a Global Integrated Radiopharmaceutical Theranostics Platform

Curium and Lantheus Reach Definitive Merger Agreement to Build a Global Integrated Radiopharmaceutical Theranostics Platform

On August 3, global radiopharmaceutical company Curium announced that it has entered into a definitive merger agreement with Lantheus Holdings, Inc. Under the agreement, Curium US Holdings LLC will merge with Lantheus through its wholly owned subsidiary, with a total consideration of up to $114.50 per share and a total transaction value of approximately $8 billion. Under the terms of the agreement, Curium US will acquire all outstanding shares of Lantheus at $102.50 per share in cash upon closing of the transaction. In addition, Lantheus shareholders will receive non-transferable contingent value rights, entitling them to up to $12.00 per share in additional cash payments if certain commercial milestones for Lantheus-related products are achieved by 2030...

2026-08-04

T-Robotics to Participate in South Korea's Radioactive Waste Management Robot Demonstration Project

T-Robotics to Participate in South Korea's Radioactive Waste Management Robot Demonstration Project

T-Robotics, a South Korean industrial humanoid robot and autonomous mobile robot (AMR) company, announced on August 4 that it has signed a memorandum of understanding to advance the 2026 large-scale integrated robot demonstration project. The MOU was jointly signed by T-Robotics, the Korea Radioactive Waste Agency (KORAD), Klobot, and the Gyeongbuk ICT Convergence Industry Promotion Association. The parties plan to jointly pursue a government demonstration project targeting high-risk radioactive waste safety management scenarios, exploring the collaborative application of multiple types of robots in radioactive waste disposal facilities. Under the agreement, the participating organizations will establish...

2026-08-04

Valar Atomics Completes $1 Billion Equity Financing, Sequoia Capital Partner Joins Board

Valar Atomics Completes $1 Billion Equity Financing, Sequoia Capital Partner Joins Board

Nuclear energy startup Valar Atomics confirmed on August 3 that it has completed a $1 billion equity financing round led by Sequoia Capital. Company founder and CEO Isaiah Taylor stated that Sequoia Capital partner Shaun Maguire has joined the company's board of directors. In addition to the equity financing, Valar Atomics also secured a $200 million credit facility from Erebor and other banks. Valar Atomics did not disclose its post-financing valuation. Reports indicate the company is valued at approximately $6 billion. Valar Atomics primarily...

2026-08-04

Carbon isotope analysis reveals: Canadian Arctic seabed sediments can sequester part of permafrost organic carbon

Carbon isotope analysis reveals: Canadian Arctic seabed sediments can sequester part of permafrost organic carbon

News dated August 3, 2026: Researchers from the Alfred Wegener Institute and the Center for Marine Environmental Sciences at the University of Bremen conducted a study on permafrost coasts near Herschel Island (Qikiqtaruk) in Canada, finding that not all terrestrial organic carbon released by Arctic permafrost thaw and coastal erosion enters the atmosphere—a significant portion is instead stored in seabed sediments. The findings have been published in the journal *Nature Geoscience*. Arctic terrestrial permafrost ecosystems store approximately 130 billion tons of carbon from organic sources such as plant debris, while marine and river delta sediments contain an additional 40 billion tons. As Arctic warming accelerates...

2026-08-04

Lead isotope analysis of Roman sling bullets points to two supply routes in the Alpine conquest campaign

Lead isotope analysis of Roman sling bullets points to two supply routes in the Alpine conquest campaign

A lead isotope study of Roman lead sling bullets suggests that the Roman army's conquest of the Alps under Augustus may not have proceeded along a single continuous route, but rather involved different units or different supply systems. The objects studied come mainly from the Crap Ses site in the Surseiva valley of the canton of Graubünden, Switzerland, as well as from Brigantium and Tasgetium near Lake Constance further north. Over the past 25 years, archaeologists have discovered marching camps, battlefields, observation posts, small fort remains, as well as swords, shields, hobnails, coins, and nearly 500 lead sling bullets near Crap Ses. Many of these bullets bear inscriptions of the Third Legion...

2026-08-04

Ontario Power Generation (OPG) Advances New Nuclear Power Planning at Nanticoke Site, Allocates CAD 500,000 for Local Consultation

Ontario Power Generation (OPG) Advances New Nuclear Power Planning at Nanticoke Site, Allocates CAD 500,000 for Local Consultation

Ontario Power Generation (OPG) is planning new energy facilities at the site of the former coal-fired plant in Nanticoke, allocating CAD 500,000 for communication and planning with Haldimand County. The 900-acre site is being evaluated for future power generation possibilities, including small modular reactors (SMRs) or a standard nuclear power plant. This move aligns with Ontario's generational energy plan, aimed at meeting electricity demand projected to grow by 90% by 2050. The Nanticoke Generating Station was once the largest coal-fired power plant in North America, operating from 1972 to 2013 and safely decommissioned in 2019. OPG President and CEO Nicolle Butcher stated that the company understands the...

2026-08-04

American Fusion Inc Appoints Nuclear Diagnostics Expert as Strategic Advisor in Preparation for Texatron Testing

American Fusion Inc Appoints Nuclear Diagnostics Expert as Strategic Advisor in Preparation for Texatron Testing

American Fusion Inc announced on August 3 that it has appointed Dr. Noah D'Amico as a strategic advisor to the company. The company stated that this move will strengthen its scientific, engineering, and advanced diagnostics team configuration, and support the next phase of its Texatron Fusion Engine testing program at Texas Tech University. After joining American Fusion Inc, Dr. D'Amico will continue his roles at Texas Tech University and BlankSlate Innovation, serving as Chief Operating Officer of BlankSlate Innov...

2026-08-04

USDA Plans $25 Million Investment in Sterile Fly Release Facility in Arizona

USDA Plans $25 Million Investment in Sterile Fly Release Facility in Arizona

The U.S. Department of Agriculture will invest $25 million to build a new sterile fly release facility in Arizona, strengthening efforts to control New World screwworm and reduce the risk of it invading American livestock herds. Agriculture Secretary Brooke Rollins announced the plan during a visit to the Douglas Port of Entry in Arizona. According to the department, releasing sterile flies is a key method for suppressing and ultimately eradicating New World screwworm populations. The proposed Arizona facility will enhance USDA's sterile fly release capacity and complement existing facilities and operations in Texas, Mexico, and Panama, further strengthening emergency response capabilities along the U.S. southwest border. The U.S...

2026-08-04

Czech Republic Leads EU Project to Assess Application of Commercial-Grade Items in VVER Nuclear Power Plants

Czech Republic Leads EU Project to Assess Application of Commercial-Grade Items in VVER Nuclear Power Plants

The Czech State Office for Nuclear Safety (SÚJB) has launched a two-year EU project focused on assessment methodologies for the application of high-quality commercial-grade items in nuclear power plants equipped with VVER reactors. The project aims to establish a unified, expert-judgment-based evaluation process that provides methodological support for nuclear facilities when introducing relevant items, while ensuring that nuclear safety requirements are not compromised. As the nuclear power supply chain landscape evolves, certain plant-specific components may face the need to be replaced by commercial-grade products. In response, regulatory authorities need to establish clear rules to review the suitability, quality assurance, and safety implications of substitute items. The project will focus on evaluating...

2026-08-04

First H-mode plasma with ELMs achieved on WEST

First H-mode plasma with ELMs achieved on WEST

Recently, the C13 experimental campaign on the French tungsten tokamak WEST achieved a major breakthrough, successfully producing H-mode plasmas with Edge Localized Modes (ELMs). This is a key step in preparing for plasma scenarios relevant to the International Thermonuclear Experimental Reactor (ITER) and future fusion power plants. Over the past nearly three months, scientists, engineers, and technicians from the French Alternative Energies and Atomic Energy Commission (CEA) at Cadarache, together with international collaborators, conducted the C13 experimental campaign. This campaign aimed to address a series of key scientific and technical challenges in magnetic confinement fusion, covering the behavior of plasma-facing components and advanced plasma scenarios. The experiments focused on...

2026-08-04

New Progress in Ion Dynamics Regulation in Nanofluidic Memristors by the Institute of Modern Physics, Chinese Academy of Sciences

New Progress in Ion Dynamics Regulation in Nanofluidic Memristors by the Institute of Modern Physics, Chinese Academy of Sciences

Water-based nanofluidic ionic devices offer unique advantages in frontier fields such as brain-computer interfaces and biocompatible computing. Recently, the research team from the State Key Laboratory of Heavy Ion Science and Technology at the Institute of Modern Physics, Chinese Academy of Sciences, in collaboration with Lanzhou University, Hebei University of Geosciences, and other partners, successfully achieved stable ionic memristive effects in single-ion-track nanochannels. Through precise regulation, they realized programmable transitions between memristive and synaptic functions, providing a new technological pathway for the development of next-generation low-power neuromorphic computing hardware. The related results were published in the journal *Small* on July 22. Relying on the Heavy Ion Research Facility in Lanzhou (HIRFL), the researchers...

2026-08-04

Researchers at the Institute of Modern Physics, Chinese Academy of Sciences, reveal the dual-directional role of shell effects in multinucleon transfer reactions

Researchers at the Institute of Modern Physics, Chinese Academy of Sciences, reveal the dual-directional role of shell effects in multinucleon transfer reactions

Recently, the research team from the State Key Laboratory of Heavy Ion Science and Technology at the Institute of Modern Physics, Chinese Academy of Sciences, together with collaborators, revealed the dual-directional mechanism of shell effects in multinucleon transfer reactions and proposed optimized reaction systems. This study provides new insights for the efficient synthesis of neutron-rich nuclides in the laboratory. The results were published in Physics Letters B. The synthesis and study of neutron-rich nuclides near the neutron magic number 126 are of special scientific significance, as the properties of these nuclides are directly related to how heavy elements such as gold and platinum in the universe are formed. However, efficiently producing these nuclides has long been an experimental challenge. Traditional fusion-evaporation...

2026-08-04

UT-ORNL Recruits Radiopharmaceutical Scientist to Advance Integrated Cancer Diagnosis and Treatment

UT-ORNL Recruits Radiopharmaceutical Scientist to Advance Integrated Cancer Diagnosis and Treatment

The University of Tennessee and Oak Ridge National Laboratory jointly announced that Dr. Carolyn Anderson has been appointed to the UT-ORNL Governor's Chair in Nuclear Medicine: Radiopharmaceutical Therapy. Anderson officially assumed the position on August 1, serving concurrently as a professor in the Department of Nuclear Engineering at the University of Tennessee, Knoxville, and as a researcher in the Isotope Science and Enrichment Directorate at Oak Ridge National Laboratory. She is an internationally renowned pioneer in the field of radiopharmaceutical science, having worked at institutions such as the University of Washington, the University of Pittsburgh, and the University of Missouri. Dr. Anderson's research focuses on developing compounds that can identify cancer earlier, assess treatment efficacy, and deliver radiation directly to tumors...

2026-08-04

Germany Achieves First Capture of Argon Nuclei at 30% Speed of Light with Electron Cooling

Germany Achieves First Capture of Argon Nuclei at 30% Speed of Light with Electron Cooling

On August 3, researchers at the GSI Helmholtz Centre for Heavy Ion Research in Germany successfully decelerated and captured fully ionized argon ions (^36Ar^18+) for the first time using the HITRAP highly charged ion trap facility. These ions, having lost all their electron shells, can be regarded as bare nuclei, with an initial velocity of approximately 30% of the speed of light. The research findings have been published in the journal Physical Review X. The interior of the radiofrequency resonator that slows down the ions is where highly charged ions are typically produced via particle accelerators and formed under strong electric fields and high-energy conditions. Since these ions are generated at extremely high velocities, they must first be stopped, captured, and cooled before precision physics measurements can be conducted. The research team stated that this experiment achieved, for the first time, the entire process from producing highly charged ions to storing them in a special trap for at least 11 seconds.

2026-08-04