comparemela.com

Latest Breaking News On - Joonwoo jeong - Page 1 : comparemela.com

Revealing Suppressed Terahertz Dynamics in Nanoconfined Water

Revealing Suppressed Terahertz Dynamics in Nanoconfined Water
miragenews.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from miragenews.com Daily Mail and Mail on Sunday newspapers.

Gangwon
Kangwon-do
South-korea
Kangwon
Seoul
Soult-ukpyolsi
Chungbuk
Kyongsang-bukto
Jeeyoon-jeong
Hyosim-yang
Dai-sik-kim
Gangseon-ji

Research: Terahertz Waves Influence Nanoconfined Water Dynamics

Research: Terahertz Waves Influence Nanoconfined Water Dynamics
miragenews.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from miragenews.com Daily Mail and Mail on Sunday newspapers.

Seoul
Soult-ukpyolsi
South-korea
Chungbuk
Kyongsang-bukto
Gangwon
Kangwon-do
Kangwon
Joonwoo-jeong
Hyosim-yang
Jeeyoon-jeong
Gangseon-ji

New research reveals terahertz waves' impact on dynamics of nanoconfined water molecules

New research reveals terahertz waves' impact on dynamics of nanoconfined water molecules
phys.org - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from phys.org Daily Mail and Mail on Sunday newspapers.

Jeeyoon-jeong
Dai-sik-kim
Gangseon-ji
Joonwoo-jeong
Hyosim-yang
Professor-yun-daniel-park-seoul-national-university
Professor-kyungwan-kim-chungbuk-national-university
Science-advances
Professor-hyeong-ryeol-park
Professor-jeeyoon-jeong
Professor-dai-sik-kim
Professor-noejung-park

New Study Unveils Phase Synchronization of Fluid-Fluid Interfaces as Hydrodynamically Coupled Oscillators

Date Time New Study Unveils Phase Synchronization of Fluid-Fluid Interfaces as Hydrodynamically Coupled Oscillators The phenomenon of synchronization is found in many natural and artificial systems, from firefly flashing to the synchronization of two pendulum clocks hanging from a wall. Hydrodynamic interactions also play a role in synchronized motions of coupled oscillators in fluids. Therefore, understanding the mechanism will facilitate development of applications in fluid mechanics. For example, synchronization phenomenon in two-phase flow will benefit the design of future microfluidic devices, allowing spatiotemporal control of microdroplet generation without additional integration of control elements, according to the research team. Professor Joonwoo Jeong and his research team in the Department of Physics at UNIST discovered that the system can act as a coupled oscillator, notably showing spontaneous in-phase synchronization of droplet breakup, using a characteristic oscil

South-korea
Korea
Joo-hun-kang
Hyoungsoo-kim
Minjun-kim
Joonwoo-jeong
Nature-communications
Department-of-biomedical-engineering
Postdoctoral-fellowship-program
Nature-communications-on
Science-research-program
National-research-foundation-of-korea

© 2024 Vimarsana

vimarsana © 2020. All Rights Reserved.