>
Covert Pentagon Propagandists Are Tracking Anti-War Americans, Skirting The Law
'We Hacked the FBI:' Hackers Say They Have Data on All FBI Employees
Why Your Magnesium Isn't Working (3 Nighttime Mistakes)
Your Robotic Vacuum Is Watching You -- Could It Someday Testify Against You in Court?
Tesla Model 3 killer charges from 10 to 97% in just 9 minutes
World-first unpowered DNA computer sets speed record
I Power 5 Buildings Off-Grid. Here's How
The US government is pushing hard to get a working nuclear fission reactor into space by late 2028
SpaceX Starmind AI in Space Radiator
China Will Dominate Global Nuclear Energy Through 2035, Analyst Says
These Absolutely Wild-Looking EVs Are Saudi Arabia's First Homegrown Cars
BEYOND THE MOON: NASA plans a nuclear-powered fleet to push DEEPER into space
Big Oil Backs Mazama's $135 Million Bet On Superhot Geothermal

The new slabs are impressively strong, and use only a third of the concrete required in conventional slabs.
A team at the University of Stuttgart created what it's calling UniversalTimberSlab over 18 months, and demonstrated it to the public in June. The researchers built a 29.5 x 16.4-ft (9 x 5-m) point-supported timber-concrete composite flat slab, with the slabs measuring just 14.2 in (36 cm) in height – about the same as a reinforced concrete slab of equivalent load and span.
Under a load of 20 tons in addition to its own weight, the platform showed minimal deformation and vibration in relation to its span. That indicates it should perform acceptably for the people using it day in and day out.
Plus, since it measures 12-27.5 in (30-70 cm) less in structural height than conventional post-and-beam timber floor slab systems, this type of slab makes it possible to fit more stories in a building with the same floor-to-ceiling height.
Developed using innovative digital design and manufacturing methods, the UniversalTimberSlab system achieves high structural performance through optimized fiber orientation.
The researchers' patent-pending segmentation method allows for all kinds of floor slab geometries, including complex and irregular ones, to be divided into glued-laminated timber segments that can be prefabricated at low cost.
The fibers in the floor slab are arranged to follow the force flow to optimize the system's load-bearing capacity. The structural system, meanwhile, is based on point supports, which means the building loads are transferred through columns that can be spaced relatively far apart.
As a result, you also don't need load-bearing partition walls. That allows for flexibility in floor planning, whether you're talking retail and dining spaces, offices, or homes.
The benefits of this system don't end there: thanks to the use of wood and a lot less concrete, most of the material in UniversalTimberSlabs can be sustainably sourced, produced, and reused or recycled well beyond a single application.
According to the team, this can contribute greatly to reducing the carbon footprint of construction projects, as reinforced concrete floor slabs alone account for roughly 40% of the embodied carbon emissions from buildings. Cutting that down by two-thirds could certainly make a decent dent.
These timber floor structures negate the need for downstand beams (which project below the underside of the floor slab and support it). That allows for building services like HVAC, electrical, and plumbing, to be conveniently routed beneath the slab. Partition walls can also be positioned easily after the fact.