Y. P. Lee
National University of Singapore
8 Papers
49 Citations
Y. P. Lee is an academic researcher from National University of Singapore. The author has contributed to research in topics: Plasma etching & Reactive-ion etching. The author has an hindex of 6, co-authored 8 publications.
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Papers
•Journal Article
Emotional and behavioural problems in Singaporean children based on parent, teacher and child reports.
TL;DR: The prevalence rates of emotional and behavioural problems in Singaporean children based on CBCL ratings are comparable to those in the West, but the low response rate and exclusion of children with special needs limit the generalisability of the findings.
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Acoustic wave monitoring of cleaning and ablation during excimer laser interaction with copper surfaces
TL;DR: In this article, the amplitudes of acoustic waves depend on laser fluence, pulse number and surface condition of the substrate and can be used to determine the nature of laser-material interactions such as pulsed-laser-induced cleaning, surface roughening and ablation.
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Clinical Experience of StarClose Vascular Closure Device in Patients with First and Recurrent Femoral Punctures
Edgar Lik Wui Tay,Melissa Co,Bee Choo Tai,Y. P. Lee,Adrian F. Low,Yean-Teng Lim,Huay-Cheem Tan,Chi-Hang Lee +7 more
TL;DR: The clinical experience of StarClose in patients undergoing coronary interventions, including its use in patients after repeated puncture of the same femoral access site is presented, finding no major complications but a 10% failure rate and a 9.7% rate of minor complications.
18
A perturbed Lennard–Jones chain equation of state for polymer mixtures: applications to vapor–liquid and liquid–liquid equilibria
TL;DR: In this article, the perturbed Lennard-Jones chain (PLJC) equation of state (EOS) is extended to polymer mixtures, and the perturbation term is derived based on the first-order variational theory.
16
A Molecular-Based Model for Normal Fluid Mixtures: Perturbed Lennard-Jones Chain Equation of State
TL;DR: In this article, the perturbed Lennard-Jones chain (PLJC) equation of state was extended to normal fluid mixtures and the perturbation term was derived based on first-order variational theory.
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