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U.S. Army delegation visits Korea’s K9 howitzer production line

2 September 2026 at 03:56
A senior U.S. Army acquisition delegation toured Hanwha Aerospace’s production facilities in Changwon, South Korea, on August 26 to review the company’s manufacturing capabilities across artillery, rocket systems and other land defense platforms. The delegation was led by Brent G. Ingraham, Assistant Secretary of the Army for Acquisition, Logistics and Technology. The visit included a […]

Spain signs K9 howitzer export contract with Hanwha

31 August 2026 at 05:30
South Korea’s Hanwha Aerospace signed a contract to export K9 self-propelled howitzers to Spain, bringing the number of countries operating the K9 to 11 worldwide. The contract was signed with Indra Sistemas, Spain’s state-linked defense electronics company, according to a regulatory filing Hanwha disclosed August 31. Hanwha did not disclose the contract’s value, unit count […]

Thunder + fiber-optic cabling used for seismic imaging

21 August 2026 at 16:26

Most of what we know about the Earth's interior comes from observing seismic waves. These travel at somewhat different speeds depending on the details of the rock they're moving throughβ€”whether it's solid or semi-molten, how much water is present, whether it's fractured or solid material, and so on. Get enough data from enough seismic events, and you can start piecing together a picture of what's present at different depths below the surface.

In many cases, we can get this data from naturally occurring events like earthquakes. In others, we intentionally create waves using things like explosives, providing the opportunity to do imaging in specific areas without needing to wait for an earthquake. Now, a team of scientists at Penn State suggests there's a potential option that sits between waiting for an earthquake and triggering your own seismic event: thunderstorms.

Some of the energy carried by thunder enters the Earth's upper crust, triggering what are termed "thunderquakes." But, for various physical reasons, the seismic signals are extremely complex, making it difficult to extract clear signals from them. The Penn State team says it has finally constructed a model that can help make sense of this complexity and used it to reconstruct the terrain under the local campus.

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