Illinois
Illinois man charged after Rochester sting catches phone scammer with $50K in cash
ROCHESTER, Minn. (FOX 9) – A man from Illinois is facing felony charges after police say he took part in a scheme that convinced a Rochester resident to hand over thousands of dollars in cash and nearly fell for a gold bar handoff.
Rochester phone scam
What we know:
According to a criminal complaint filed in Olmsted County District Court, police say the victim was contacted by phone and told he was under investigation for a crime. The caller convinced him to deliver $30,000 in cash to a man he met in person on June 17, 2026.
The victim was then pressured to arrange a second delivery — this time, 10 one-ounce gold bars — on June 23, 2026. Detectives worked with the victim to set up a controlled delivery using fake gold bars and a GPS tracker.
Charges state that the plan was for the victim to meet whoever arrived to pick up the package, while officers watched nearby. Surveillance officers saw a white SUV with Illinois plates circling the parking lot at 2711 Commerce Drive NW in Rochester.
The complaint states a man, later identified as Kiranbhai Kanubhai Vasava, got out, met the victim, gave the password and took the package. Officers followed the car as it left the scene. Detectives stop suspects and recover cash
Why you should care:
Police stopped the SUV near Eyota and searched it, finding $50,000 in cash, several cell phones, bank checks with Vasava’s name, and packaging materials similar to those used for the fake gold bars. The package with the GPS tracker and fake gold was missing, but officers later found the GPS device torn apart on the side of the highway.
The second man in the car, Hemendrasinh Pravinsinh Dabhi, told police he got a call from India about a package but claimed he knew nothing about it, saying, “he just drives.” Vasava also denied knowing what was happening.
Kiranbhai Vasava linked to Wisconsin case
The backstory:
The complaint states detectives linked Vasava to another similar case in Stevens Point, Wisconsin, where a bank customer was convinced to hand over $50,000 in cash to a driver in a white Honda SUV. Video from that incident showed Vasava receiving the package.
Police say this type of swindle involves convincing victims they are under investigation and must pay money or hand over valuables to clear their name. Detectives say the investigation involved coordination between local police and law enforcement in Wisconsin.
The Source: Criminal charges filed in Olmsted County Court.
Illinois
Man buys winning $1.3 million jackpot ticket at suburban gas station
OSWEGO, Ill. (WLS) — A Chicago-area man claimed a $1.3 million jackpot prize during an ordinary stop at a local gas station.
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The newly-minted millionaire said he bought the ticket while stopping to buy a drink.
“‘Why not?’” the winner said. “I played a Quick Pick, and it turned out to be a lucky day.”
His ticket matched all five numbers in the Thursday, June 11 evening Lucky Day Lotto drawing. The winning numbers were 1-13-19-27-35.
The ticket was purchased at Oswego BP, located at 2791 US Highway 34.
Overjoyed, he wasted no time sharing the big news with his wife.
“She was thrilled,” he said. “It’s funny-I actually won a $45,000 prize playing this same game 15 years ago when it was called Little Lotto.”
The winner plans to use the prize money to buy a new house and secure his and his wife’s retirement.
For selling the, the Oswego BP will receive a bonus of $13,000.
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Illinois
Illinois could face new costs because of high error rate in SNAP food aid
Illinois
Beckman’s new Illinois Polymer Maker Lab commissions first instrument
The Illinois Polymer Maker Lab, Beckman’s newest core facility, will open soon in the institute’s basement. The lab will be the first-of-its-kind facility for the automated formulation and testing of polymer-based materials and will soon be open to researchers across campus and across the nation.
The lab will help researchers accelerate the development of materials and products related to paints and coatings, adhesives, personal care items, composites, and materials for 3D printing. It could also help researchers design resins for energy-efficient manufacturing and products in the food science industry. It’s funded by a Major Research Instrumentation grant from the National Science Foundation.
“The core capabilities will be pretty unique,” said Dan Krogstad, the lab’s manager and a research professor in the Department of Materials Science and Engineering. “The IPML facility at Beckman provides researchers with an incredible opportunity to accelerate the development of polymer-based formulations through the creation of rich, digital datasets using automated equipment and workflows.”
The lab joins four other Beckman core research facilities: the Biomedical Imaging Center, Microscopy Suite, Molecular Imaging Lab and Visualization Lab.
“The Illinois Polymer Maker Lab is another example of how Beckman provides cutting-edge facilities that you can’t find anywhere else,” said Beckman Director Steve Maren. “This facility will fuel materials discovery for our researchers and especially allow them to push the boundaries of knowledge through AI.”
The Anton Paar high-throughput rheometer, an HTR 7000, was the first instrument to be installed in IPML earlier this spring. It’s a robotic instrument capable of dispensing polymers and measuring their flow behavior automatically.
For example, the rheological properties tell us whether a paint will drip after being applied to a surface, how easy it is to squeeze toothpaste out of a tube or how well the materials will flow through pipes in a factory.
However, while the rheological properties are important in the development of new materials, collecting related data can require a lot of time. High-throughput systems, like IMPL’s Anton Paar HTR 7000, help overcome this limitation.
Sam Tawfick, a co-leader of the Autonomous Materials Systems group, said his Beckman research colleagues are researching how to better manufacture advanced materials through 3D printing or resins for polymers reinforced with carbon fibers
“The flow behavior of polymers is critical to assess their manufacturability,” said Tawfick, the Anderson Family Scholar and professor of mechanical science and engineering, adding that the IPML rheometer’s usefulness is in how it dispenses polymers and automatically measures their flow.
“This changes the students’ workflow in the lab by minimizing sample preparation steps and enabling the equipment to run and take measurements 24 hours a day, seven days a week. For the students, this means higher productivity and the ability to focus on interpretation of the results.”
Beyond reducing the time required, automating rheological measurements promotes machine learning by making procedures more uniform, creating organized digital datasets and increasing the amount of data that can be collected.
Tawfick believes access to the lab will have incredible implications for both expanding knowledge and offering new materials to the public.
“I personally think students will achieve more during the same timeline of a Ph.D. or postdoctoral training, connecting more dots around their discovery and tightening both the scientific understanding and the reliability of their discoveries,” he said.
In the past, it’s taken up to 20 years for a new polymer, like a high temperature resistant silicone or high strength composite, to be ready for commercial use. Material readiness is ranked on a scale (called the Technology Readiness Level, or TRL) between 0 and 9, the latter which describes a material that’s commercially established.
“It takes about 10 years to move the concept of a material from TRL 0 to TRL 3 in a lab,” Tawfick said. “IPML is targeting this stage, with the aim of shortening it from a decade to potentially weeks.”
And because the lab will be a Beckman core facility, knowledge can transfer among users thanks to the help of expert staff members and the creation of institutional knowledge, Tawfick said.
“Groups from campus and external users from the private sector will benefit from and contribute to this institutional knowledge,” he said. “This will be accomplished by gradually optimizing the workflows and the AI models used in the facility.”
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