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D - KP Group I a Series of SLRTE I LLC (0002139598) (Filer)
Filed: 2026-06-09 AccNo: 0002139598-26-000001 Size: 7 KB Item 3C: Investment Company Act Section 3(c) Item 3C.1: Section 3(c)(1)
Viscous spectral energy coupling across scales in generalised Newtonian fluids
Announce Type: new Abstract: We investigate the spectral energy dynamics of turbulent flows with variable viscosity using direct numerical simulation of homogeneous isotropic turbulence of generalised Newtonian fluids described by the Carreau constitutive model, covering both shear-thinning and shear-thickening regimes. The spectral evolution equations for the variable viscosity Navier-Stokes system show that the viscous term becomes nonlinear and gives rise to a convolution product in...
Dieback disease killing mango trees is spreading in the NT
Mango twig tip dieback spreading in the NT as more trees get bulldozed Wed 3 Jun 2026 at 6:31am In short: A fungal disease called mango twig tip dieback is spreading across orchards in the Darwin region of the NT. The chief executive of Australian Mangoes says the disease has become a "serious issue" for the industry.
Physics-Driven Semantic Scattering Structure Understanding of Aircraft Target in SAR Images
arXiv:2606.06847v1 Announce Type: cross Abstract: Synthetic aperture radar (SAR) has become indispensable for target interpretation owing to its all-day and all-weather observation capability. In SAR target interpretation, electromagnetic scattering information provides a physically grounded cue beyond visual texture and has been widely exploited for target interpretation. However, existing methods remain dominated by local scattering center representations.
Future Power Rankings: How all 68 Power 4 college football teams stack up
Projecting a college football program's future is harder than ever. Rosters and fortunes change dramatically and championship pathways are more open than ever. The assets that make a program great in 2026 might not be there in 2027.
A century of sun records reveals clues to its 11-year rhythm
More than a century of observations from India’s historic Kodaikanal Solar Observatory, operated by the Indian Institute of Astrophysics (IIA), Bengaluru, has helped scientists uncover new clues about how the Sun’s surface responds to its 11-year activity cycle. The findings, based on an analysis of 34,000 images collected since 1907, could improve understanding of the processes that drive solar activity and eventually aid efforts to predict changes that affect the space environment around...