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1. Microsoft to Add AI Button to PC Keyboards

Microsoft announced that it will add an AI button to Windows keyboards, which will activate its AI Copilot service. The first devices with the new button will be available this month. The AI button will be located to the right of the spacebar, making it the first major change to the Windows keyboard layout since the addition of the Windows/Start key in 1994.

Commentary:

Microsoft's addition of an AI button is a significant move for the company in the AI space. It is likely to help Microsoft improve its competitive position in the market and also contribute to the wider adoption of AI technology.

2. First Functional Graphene Semiconductor Developed

Researchers from Georgia Tech and Tianjin University have created the first functional graphene semiconductor. The study was published in the journal Nature. The team found that when grown properly, their epitaxial graphene bonds chemically to silicon carbide and begins to exhibit semiconductor properties. Measurements showed that their graphene semiconductor has a mobility that is 10 times that of silicon.

Commentary:

The successful development of graphene semiconductors is likely to have a profound impact on the semiconductor industry, potentially leading to a new wave of technological innovation.

3. Intel Sets up New AI Company

Intel announced that it is partnering with an investment firm to launch a new AI company called Articul8 AI. The company will focus on providing generative AI services to enterprise customers. Intel used its own supercomputers and combined open-source and internal technologies to develop a generative AI system that can identify text and images.

Commentary:

Intel's launch of a new AI company shows its commitment to the AI space and is likely to help the company improve its competitive position in the industry.

4. New Molecule Synthesized for Organic Semiconductors

Researchers from Ulsan National Institute of Science and Technology in South Korea have successfully synthesized and characterized a new molecule called BNBN anthracene. The molecule has the potential for a wide range of applications in the field of organic semiconductors. Organic semiconductors play a critical role in improving the mobility and optical properties of electrons in carbon-based organic electronic devices.

Commentary:

This is a significant breakthrough in the field of organic semiconductors and is likely to contribute to the development of organic electronic devices.

5. Stanford Researchers Develop Low-Cost Robot

A team of three researchers at Stanford University have developed a new mobile robot called Mobile ALOHA. The robot can perform a variety of complex tasks through imitation learning. The robot was shown in a video performing tasks such as cooking, washing dishes, and vacuuming. The robot costs just $32,000 and its software and hardware are all open source.

Commentary:

Stanford's development of a low-cost robot is likely to lower the barrier to entry for robotics technology and contribute to its wider adoption in a variety of fields.

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Editor: Alexander