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Ask Amy Dickinson: My sister took the wedding instruction as an insult

Ask Amy: She's still mad about the rehearsal protocol. Plus: The secret they told my husband has become a wedge in our relationship.

Minnesota , United-states , Dear-amy , Ask-amy , My-dickinson , Edding , Ehearsal , Ister-039s-boyfriend , Ot-invited , Nsulted , Amily

2 recent cardiology recalls

"Discover the latest FDA recalls for medical devices, surgical devices, masks, and medication in 2024. Learn about two recent cardiology-focused recalls and the

Medtronic , Meta-keywords-fda , Ecalls , Edical-devices , Urgical-devices , Asks , Edication , Ardiology , Etinge , Ardiohelp , Mergency-drive

New Superlubricity Research Could Turbocharge Industrial Energy Efficiency

University of Leicester scientists have made significant progress in understanding superlubricity, a phenomenon that could greatly reduce energy consumption in future technologies by minimizing friction between surfaces.

Nikolai-brilliantov , Brian-westenhaus , Mathematical-sciences , University-of-leicester , Leicester-school-of-computing , Professor-nikolai-brilliantov , Molecular-dynamic , New-energy , Superlubricity , Riction , Nergy , Echnology

Unlocking the secrets of embryonic development: The role of friction forces revealed

Sea squirts, also known as ascidians, are marine organisms that undergo fascinating evolutionary changes during their development.

Austria , Technology-austria , Institute-of-science , Sea-squirts , Riction , Volutionary-changes , Scidians , Arine-organisms , Riction-forces ,

How sea squirts use friction to change and develop after fertilization

Study reveals how sea squirt oocytes harness friction within various compartments in their interior to undergo developmental changes after conception.

Carl-philipp-heisenberg , Sea-squirts , Riction , Ertilization , Nstitute-of-science-and-technology-austria ,

Breakthrough in tribology: Making extremely thin lubricating films predictable

Many tribological systems are operated at their load limits for reasons of efficiency. Lubrication gaps are becoming narrower and lubricating films must withstand greater loads. For the reliable d ...

Osborne-reynolds , Daniele-savio , Andrea-codrignani , Kerstin-falk , Stefan-peeters , Gianpietro-moras , Franziska-stief , Michael-moseler , Lars-pastewka , Microtribology-center , Karlsruhe-institute-of-technology

Ask Amy Dickinson: He resurrected this wedding drama to use against me

Ask Amy: I want to set things right with my husband's cousin before we run out of time.

California , United-states , Dear-amy , Ask-amy , My-dickinson , Dvice , Amily , Edding , Ementia , Ying , Ousin

'Dying to Ask' podcast: How to handle work drama

Sick of work drama? You can diffuse most conflicts with three simple steps.

Richard-birke , Boss , O-workers , Onflict , Eirdre-fitzpatrick , Isagreement , Ispute , Rama , Mployee , Riction , Odcast

"Tribocatalysis Induced Carbon-Based Tribofilms—An Emerging Tribologica" by Khai K. Huynh, Sang T. Pham et al.

To comply with the high demand for efficient and sustainable lubrications, carbon-based tribofilms and/or nanomaterials have emerged as a potential solution that can resolve the current major shortcomings of phosphorus- and sulphur-rich tribofilms and protective coatings. Although their employment is still in the early stages of realization and research, these tribofilms receive significant interest due to their capability to continuously and in situ repair/replenish themselves during sliding, which has been an ultimate goal of all moving mechanical systems. Structurally, these tribofilms are complex and predominantly amorphous or disordered with/without graphitic domains (e.g., graphene/graphite, onion-like carbon, etc.). Chemically, the compositions of these tribofilms vary significantly with environments, conditions, and material precursors. Yet, the structural properties of carbon-based tribofilms remain largely ambiguous, which precludes a full understanding of the mechanisms underlying the formation and lubrication performance. This review will summarize the current state-of-art research about the in situ carbon-based tribofilms that have been published since the pioneering works. Particularly, this work will highlight the recent approaches to generate these tribofilms, their associated lubrication performance, current understanding of the formation mechanics, common analytical approaches for these tribofilms, and the compatibility of these tribofilms with other additives. Together, the overall outlooks will be drawn, demonstrating the knowledge gaps and proposing further investigation tactics to tackle these emerging issues.

Carbon-based-tribofilms , Riction , Ustainable-lubrications , Ribocatalysis , Ear ,