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The launch of the RT6 was announced at the company’s Apollo Day, held in Wuhan, in Hubei province.

The vehicle, which is made by strategic partner Jiangling Motors, was first unveiled in 2022 but is now finally ready to be put into service. Around 1,000 are expected to be deployed in Wuhan alone by the end of 2024.

The all-electric model measures 15.7 feet long – very similar to a Tesla Model 3 – and comes with a spacious cabin for four passengers.

While investigating how string theory can be used to explain certain physical phenomena, scientists at the Indian Institute of Science (IISc) have stumbled upon on a new series representation for the irrational number π. It provides an easier way to extract π from calculations involved in deciphering processes like the quantum scattering of high-energy particles.

The so-called Casimir force or Casimir effect is a quantum mechanical phenomenon resulting from fluctuations in the electromagnetic field between two conducting or dielectric surfaces that are a short distance apart. Studies have shown that this force can be either be attractive or repulsive, depending on the dielectric and magnetic properties of the materials used in experiments.

Researchers at University of Tsukuba have developed an ultrafast time-resolved scanning electron microscopy instrument by integrating a scanning electron microscope with a femtosecond laser. This innovative system facilitates the observation of the instantaneous states of various materials. Their paper is published in the journal ACS Photonics.

Researchers at the Weizmann Institute of Science discovered a new type of vortex formed by photon interactions, which could advance quantum computing.

Vortex Phenomena

Vortices are a widespread natural phenomenon, observable in the swirling formations of galaxies, tornadoes, and hurricanes, as well as in simpler settings like a stirring cup of tea or the water spiraling down a bathtub drain. Typically, vortices arise when a rapidly moving substance such as air or water meets a slower-moving area, creating a circular motion around a fixed axis. Essentially, vortices serve to reconcile the differences in flow speeds between adjoining regions.

Over the past decade, immune checkpoint inhibitors (ICI) have revolutionized the cancer treatment area. These drugs block the interaction between proteins known as immune checkpoints and immune cells within our bodies. At times, immune checkpoints play a vital role in immune regulation, preventing unnecessary responses. However, tumors can upregulate proteins, thus evading an immune response, and in a tumor setting, this response is indeed necessary. ICIs interfere with checkpoint pathways and allow active immunity against cancer.

In 2011, the United States Foor and Drug Administration (FDA) approved the first ICI, ipilimumab, a CTLA-4 blocker, for treating advanced melanoma. Subsequently, ICIs targeting PD1 (pembrolizumab and nivolumab) and PDL1 (atezolizumab and durvalumab) received approval for treating various malignancies. Many clinical trials test the efficacy of novel ICIs in different settings.

A recent study published in Science Immunology unveiled a promising new avenue for cancer immunotherapy and ICIs. The study evaluated a drug targeting an immune checkpoint molecule called VISTA (V-domain immunoglobulin suppressor of T cell activation), shedding light on its potential as an effective immunotherapy target.