์ฃผ์š” ์ฝ˜ํ…์ธ ๋กœ ๊ฑด๋„ˆ๋›ฐ๊ธฐ

๊ท€ํ•˜์˜ ๋ธŒ๋ผ์šฐ์ €๊ฐ€ ์™„๋ฒฝํ•˜๊ฒŒ ์ง€์›๋˜์ง€ ์•Š์Šต๋‹ˆ๋‹ค. ์˜ต์…˜์ด ์žˆ๋Š” ๊ฒฝ์šฐ ์ตœ์‹  ๋ฒ„์ „์œผ๋กœ ์—…๊ทธ๋ ˆ์ด๋“œํ•˜๊ฑฐ๋‚˜ Mozilla Firefox, Microsoft Edge, Google Chrome ๋˜๋Š” Safari 14 ์ด์ƒ์„ ์‚ฌ์šฉํ•˜์„ธ์š”. ๊ฐ€๋Šฅํ•˜์ง€ ์•Š๊ฑฐ๋‚˜ ์ง€์›์ด ํ•„์š”ํ•œ ๊ฒฝ์šฐ ํ”ผ๋“œ๋ฐฑ์„ ๋ณด๋‚ด์ฃผ์„ธ์š”.

์ด ์ƒˆ๋กœ์šด ๊ฒฝํ—˜์— ๋Œ€ํ•œ ๊ท€ํ•˜์˜ ์˜๊ฒฌ์— ๊ฐ์‚ฌ๋“œ๋ฆฝ๋‹ˆ๋‹ค.์˜๊ฒฌ์„ ๋ง์”€ํ•ด ์ฃผ์„ธ์š”

Elsevier
์—˜์Šค๋น„์–ด์™€ ํ•จ๊ป˜ ์ถœํŒ

ํ”„๋กœํ•„

Naomi Oppenheimer

Naomi Oppenheimer

Tel Aviv University, Israel

Dr. Naomi Oppenheimer is interested in complex fluids, statistical mechanics, soft matter, and biology-inspired physical systems. She uses theoretical analytical tools, numerical simulations, and a dash of experiments.

Research achievements include: predicting the effect of protein concentration on membrane viscosity, understanding why crumpled paper is shapeable, and studying the hydroelastic effect of a particle surfing its own wave in a thin elastic sheet.

Future directions include: studying heterogeneous materials in biology and for next-generation functional materials. For example: self-organization properties of active rotating particles in a 2D fluid, the effective properties of complex fluids with spatially varying viscosity, morphogenesis and pattern formation in biological systems.

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