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Aug 26, 2023

Chandrayaan-3 rover rolls onto moon’s surface as ecstatic India celebrates

Posted by in category: space travel

NEW DELHI, Aug 24 (Reuters) — The moon rover of India’s Chandrayaan-3 exited the spacecraft on Thursday to begin exploring the surface of the lunar south pole and conducting experiments, and was braced for new challenges, the space agency chief said.

The spacecraft landed on the unexplored south pole of the moon on Wednesday, making India the first country to achieve this feat just days after Russia’s Luna-25 failed in a similar mission.

The soft, textbook touchdown by the lander after a failed attempt in 2019 sparked widespread jubilation and celebration in the world’s most populous country. The media hailed the historic landing as India’s biggest scientific feat.

Aug 26, 2023

Scientists Tried to Re-create an Entire Human Brain in a Computer. What Happened?

Posted by in categories: computing, neuroscience

The Human Brain Project wraps up in September after a decade. It had notable achievements and a troubled past.

Aug 26, 2023

US government launches new AI cybersecurity challenge and other tech stories to read

Posted by in categories: cybercrime/malcode, government, robotics/AI

Top technology stories: US government launches new AI cybersecurity challenge; China outlines new rules for facial recognition technology; How to make AI more energy efficient.

Aug 26, 2023

A Universal Mechanism of DNA and RNA Deformation Identified

Posted by in category: biotech/medical

A research team co-led by a physicist from City University of Hong Kong accurately measured the change in a nucleic acid induced by salt, temperature change and stretching force.

Aug 26, 2023

YouTuber makes a bladeless jet engine out of a Dyson fan

Posted by in category: transportation

In this video, YouTuber Integza invents a bladeless jet engine using a Dyson fan. In fact, the fan he uses is so bladeless that it actually looks like a lamp.

Aug 26, 2023

“Truly Mind-Boggling” Breakthrough: Graphene Surprise Could Help Generate Hydrogen Cheaply and Sustainably

Posted by in categories: nanotechnology, particle physics

Researchers have discovered that graphene.

Graphene is an allotrope of carbon in the form of a single layer of atoms in a two-dimensional hexagonal lattice in which one atom forms each vertex. It is the basic structural element of other allotropes of carbon, including graphite, charcoal, carbon nanotubes, and fullerenes. In proportion to its thickness, it is about 100 times stronger than the strongest steel.

Aug 26, 2023

MIT Researchers Developed an Artificial Intelligence (AI) Technique that Enables a Robot to Develop Complex Plans for Manipulating an Object Using its Entire Hand

Posted by in category: robotics/AI

Whole-body manipulation is a strength of humans but a weakness of robots. The robot interprets each possible contact point between the box and the carrier’s fingers, arms, or torso as a separate contact event. This task becomes difficult to prepare for as soon as one considers the billions of possible contact events. Now, MIT researchers can streamline this technique, called contact-rich manipulation planning. An artificial intelligence approach called smoothing is used to reduce the number of judgments needed to find a good manipulation plan for the robot from the vast number of contact occurrences.

New developments in RL have demonstrated amazing results in manipulating through contact-rich dynamics, something that was previously challenging to achieve using model-based techniques. While these techniques were effective, it has yet to be known why they succeeded while model-based approaches failed. The overarching objective is to grasp and make sense of these factors from a model-based vantage point. Based on these understandings, scientists work to merge RL’s empirical success with the models’ generalizability and efficacy.

The hybrid nature of contact dynamics presents the greatest challenge to planning through touch from a model-based perspective. Since the ensuing dynamics are non-smooth, the Taylor approximation is no longer valid locally, and the linear model built using the gradient quickly breaks down. Since both iterative gradient-based optimization and sampling-based planning use local distance metrics, the local model’s invalidity poses serious difficulties for both. In response to these problems, numerous publications have attempted to take contact modes into account by either listing them or providing examples of them. These planners, who have a model-based understanding of the dynamic modes, often switch between continuous-state planning in the current contact mode and a discrete search for the next mode, leading to trajectories with a few-mode shifts here and there.

Aug 26, 2023

2023 Cryonics Institute AGM

Posted by in categories: cryonics, life extension

YOU’RE INVITED! — OPEN TO CI MEMBERS, NON-MEMBERS AND THE GENERAL PUBLIC2023 Cryonics Institute Annual General MeetingSUNDAY — SEPT 10, 2023AGM Location: Infinity Hall & Sidebar 16,650 E 14 Mile RoadFraser, MI 48026phone: 586–879-6157website: infinityhallsidebar.com2023 AGM DetailsSunday, September 10, 2023Event start time: 3:00 pm Eastern TimeEvent end time: 6:30 pmFacility ToursTours of the Main and new […].

Aug 26, 2023

New Quantum Computing Paradigm: Game-Changing Hardware for Faster Computation

Posted by in categories: computing, information science, quantum physics

Using natural quantum interactions allows faster, more robust computation for Grover’s algorithm and many others.

Los Alamos National Laboratory scientists have developed a groundbreaking quantum computing.

Performing computation using quantum-mechanical phenomena such as superposition and entanglement.

Aug 26, 2023

Long Considered Impossible in Physics: Nonlinear Circuit Harvests Clean Power Using Graphene

Posted by in categories: nanotechnology, particle physics

The discovery overturns more than a century of physics orthodoxy by identifying a new form of energy that can be extracted from ambient heat using graphene.

Graphene is an allotrope of carbon in the form of a single layer of atoms in a two-dimensional hexagonal lattice in which one atom forms each vertex. It is the basic structural element of other allotropes of carbon, including graphite, charcoal, carbon nanotubes, and fullerenes. In proportion to its thickness, it is about 100 times stronger than the strongest steel.