Connect with us

Published

on

Moto G53 5G has been launched in China on Thursday as the latest smartphone from the Lenovo-owned brand. The new Moto G-series phone comes with features such as a hole-punch display design, 120Hz refresh rate display, and dual rear cameras headlined by a 50-megapixel main sensor. The Moto G53 5G is powered by an octa-core Snapdragon chipset coupled with 8GB of RAM and 128GB of storage. Further, the 5G-supported device is backed by a 5,000mAh battery and supports 18W fast charging.

Moto G53 5G price, availability

Pricing for the Moto G53 5G has been set at CNY 899 (roughly Rs. 10,500) for the base 4GB + 128GB storage variant. The 8GB + 128GB storage model costs CNY 1,099 (roughly Rs. 13,000). It comes in Azure White and Xuanwu Black (translated) colour options and is currently available for purchase in China.

Details about the release of Moto G53 5G in international markets, including India, are yet to be announced by the company.

For comparison, the Moto G52 was launched in India in April this year with a price tag of Rs. 14,499 for the base 4GB + 64GB storage variant.

Moto G53 5G specifications

The dual SIM (nano) Moto G53 5G runs on Android 13 with My UI 5.0 on top and features a 6.5-inch HD+ (720×1,600 pixels) LCD display with a 120Hz refresh rate and a 20:9 aspect ratio and 240Hz touch sampling rate. Under the hood, the Motorola phone has an unspecified octa-core Snapdragon SoC, along with up to 8GB of LPDDR4X RAM. The available memory can be further expanded up to 11GB.

The Moto G53 5G comes with a dual rear camera setup that houses a 50-megapixel primary sensor along with a 2-megapixel macro shooter. Further, there is an 8-megapixel selfie camera on the front. The 5G smartphone packs 128GB of onboard storage that can be expanded up to 1TB via a microSD card.

Connectivity options on the Moto G53 5G include Wi-Fi, Bluetooth, GPS, A-GPS, GLONASS, Galileo, Beidu, a 3.5mm headphone jack and a USB Type-C port. Sensors onboard include an e-compass, ambient light sensor, gyroscope, and gravity sensor. The phone also supports a face unlock feature for biometric authentication.

The Moto G53 5G packs a 5,000mAh battery with 18W fast charging support. The handset measures 162.7×74.66×8.19mm and weighs 183 grams.


Affiliate links may be automatically generated – see our ethics statement for details.

Continue Reading

Science

Is the Wheel of Ghosts an Ancient Observatory? New Study Suggests Otherwise

Published

on

By

Is the Wheel of Ghosts an Ancient Observatory? New Study Suggests Otherwise

The ancient Rujm el-Hiri site, situated in the Golan Heights and often referred to as the “Wheel of Ghosts,” has been re-evaluated, with its long-standing identification as an astronomical observatory coming under scrutiny. Researchers have determined that geodynamic changes over millions of years have altered the site’s orientation, raising questions about its original purpose. These findings, derived from advanced geophysical and remote sensing techniques, provide a new perspective on this enigmatic archaeological structure.

Geophysical Insights Challenge Established Theories

According to the study published in Remote Sensing, geodynamic movements averaging 8–15 millimetres per year over 150 million years shifted the site’s alignment significantly. Researchers from Tel Aviv University and Ben-Gurion University, led by Dr Olga Khabarova and Prof Lev Eppelbaum, concluded that the structure’s current orientation does not match celestial patterns, contradicting earlier interpretations of its function. The entrances and radial walls, when reconstructed to their original positions, were shown to lack alignment with solstices, equinoxes, or other astronomical markers.

Advanced Techniques Reveal Archaeological Landscape

As reported by SciTech Daily, the researchers employed geomagnetic analysis and satellite technology to document the surrounding archaeological features within a 30-kilometre radius of the Sea of Galilee. Unique circular structures, some up to 90 metres in diameter, were identified alongside burial mounds and round enclosures. These findings suggest agricultural and herding purposes rather than purely ceremonial or observational roles.

A Broader Perspective on Rujm el-Hiri’s Role

Dr Michal Birkenfeld of Ben-Gurion University emphasised in his statement to SciTech Daily that this reassessment enriches understanding of ancient life in the Golan Heights. The research team noted that the study reopens debates about the site’s purpose while highlighting its integration into a broader archaeological landscape. By questioning past assumptions, the study encourages further exploration of how ancient communities interacted with their environment.

Catch the latest from the Consumer Electronics Show on Gadgets 360, at our CES 2025 hub.


Hide N Seek OTT Release Date: When and Where to Watch This Telugu Thriller Online?



Oppo Reno 13 5G Series Price in India Tipped Ahead of January 9 Launch

Continue Reading

Science

Scientists Investigate Hypernuclei To Understand Subatomic Forces and Neutron Stars

Published

on

By

Scientists Investigate Hypernuclei To Understand Subatomic Forces and Neutron Stars

A breakthrough has been reported in particle physics, focusing on hypernuclei—rare atomic systems that form through the inclusion of hyperons, particles containing at least one “strange” quark. Unlike the ordinary nuclei of atoms made of protons and neutrons, hypernuclei exhibit unique properties that may offer insights into subatomic forces and the extreme conditions present in neutron stars. Scientists aim to deepen the understanding of these fleeting structures and their implications for astrophysics and nuclear physics.

Insights from Advanced Research

According to a study published in The European Physical Journal A, researchers led by Ulf-G. Meißner from the Institute for Advanced Simulation in Jülich and the University of Bonn applied nuclear lattice effective field theory to investigate hypernuclei. This approach simplifies the study of nuclear interactions by focusing on protons, neutrons, and hyperons rather than quarks and gluons, providing a computationally feasible way to study these particles.

This study specifically examined Λ-hyperons, one of the lightest hyperons, and their interactions within hypernuclei. A lattice-based model was utilised, where particles are simulated within a discrete grid, reducing the complexity of the calculations. Forces governing the structure of hypernuclei were calculated, achieving agreement with experimental data within a 5 percent margin of accuracy. The method also allowed the study of hypernuclei with up to 16 constituents, expanding the scope of earlier models.

Implications for Neutron Stars

Hypernuclei are theorised to form in neutron stars due to the immense pressure and density in their cores. The measurable properties of neutron stars, such as mass and radius, could be influenced by the presence of hyperons. By using advanced X-ray telescopes and gravitational wave detectors, scientists hope to detect deviations from existing models, potentially confirming hyperons’ role in these environments.

Further research is required to refine models and explore pion exchanges, which may alter the forces within hypernuclei. Enhanced experimental data and precision in accelerator experiments are expected to contribute to this field in the future.

Catch the latest from the Consumer Electronics Show on Gadgets 360, at our CES 2025 hub.

Continue Reading

Science

Mathematicians Uncover Science Behind Hula Hooping and Body Dynamics

Published

on

By

Mathematicians Uncover Science Behind Hula Hooping and Body Dynamics

The mechanics of hula hooping have been analysed by researchers, uncovering how body shapes and motions influence the ability to keep a hoop spinning against gravity. Insights from the study have raised intriguing questions about body dynamics, energy efficiency, and potential engineering applications. The findings, based on experiments and mathematical modelling, offer new perspectives on an activity often overlooked in scientific research. Key revelations include the role of body curvature and slope in maintaining the hoop’s motion.

Study Details Dynamics of Hula Hooping

According to research published in the Proceedings of the National Academy of Sciences, experiments were conducted using miniature robotic models at New York University’s Applied Mathematics Laboratory. Different shapes, such as cylinders, cones, and hourglasses, were replicated at one-tenth human scale to examine their impact on hula hooping efficiency. Motorised motions were applied to these models, and high-speed cameras captured the behaviour of hoops launched onto the robotic forms.

Findings indicated that successful twirling could be achieved without significant variation based on body cross-section shapes, such as circles or ellipses. However, maintaining the hoop’s height against gravity required specific physical attributes, particularly sloping hips and a curvy waist. These characteristics provided the necessary angles for upward thrust and stability, helping to keep the hoop in motion.

Mathematical Modelling and Broader Applications

Senior researcher and associate professor Leif Ristroph explained in a press release that mathematical models were developed to explain the physical principles observed. These models offered insight into the interaction between body motion and hoop dynamics, which could be extended to applications such as energy harvesting and robotics.

The researchers highlighted that the work bridges a gap in the understanding of a popular activity, while also demonstrating its relevance to technology. Ristroph noted that these findings could lead to improvements in robotic systems used in manufacturing, as well as innovative ways to utilise energy generated by vibrations.

This research sheds light on the science behind hula hooping, offering practical applications while enhancing the understanding of human and mechanical motion.

Catch the latest from the Consumer Electronics Show on Gadgets 360, at our CES 2025 hub.

Continue Reading

Trending