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    Black larder beetle, incinerator beetle, Dermestes ater DeGeer (Insecta: Coleoptera: Dermestidae) by Nurmastini S. Bujang, Phillip E. Kaufman

    Published 2010-09-01
    “…EENY480, a 6-page illustrated fact sheet by Nurmastini S. Bujang and Phillip E. Kaufman, is part of the Featured Creatures collection. …”
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  3. 483

    Black larder beetle, incinerator beetle, Dermestes ater DeGeer (Insecta: Coleoptera: Dermestidae) by Nurmastini S. Bujang, Phillip E. Kaufman

    Published 2010-09-01
    “…EENY480, a 6-page illustrated fact sheet by Nurmastini S. Bujang and Phillip E. Kaufman, is part of the Featured Creatures collection. …”
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    Article
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    ĐỊNH LƯỢNG ĐỒNG THỜI AMLODIPIN VÀ ATORVASTATIN TRONG THUỐC ĐA THÀNH PHẦN BẰNG PHƯƠNG PHÁP QUANG PHỔ UV-VIS KẾT HỢP VỚI PHÂN TÍCH ĐA BIẾN by Duy Luu Nguyen, Nguyen Thi Thanh Tram, Pham Phu Quoc, Nguyễn Hùng Nhật Duy, Nguyễn Đình Luyện, Trần Thúc Bình

    Published 2024-09-01
    “…Phân tích ANOVA so sánh sự khác biệt giữa giá trị trung bình của các phương pháp với phương pháp HPLC không có sự khác biệt có ý nghĩa thống kê. Áp dụng định lượng đồng thời AML, ATO trong viên nén ZOAMCO-A cho kết quả hàm lượng AML và ATO so với hàm lượng ghi trên nhãn nằm trong khoảng 90-110% phù hợp với quy định của Dược điển Việt Nam V. …”
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    Research Progress and Prospect of Extreme Water Increase by Storm Surge in Estuaries — A Case Study of Guangdong-Hong Kong-Macao Greater Bay Area by LIU Yuexuan, LI Huijing, LI Lanbin, LIU Xiaojian

    Published 2023-01-01
    “…Significant increases in water and extreme tide levels caused by typhoon storm surges are the primary threat to flood safety in estuarine areas,and are also the main cause of major natural disaster losses in the Guangdong-Hong Kong-Macao Greater Bay Area in recent years.This paper reveals the evolution patterns of water increase in storm surges over the years and introduces corresponding research methods.Meanwhile,it systematically reviews research achievements on the formation mechanism of extreme tide levels in storm surges from both foreign and domestic perspectives.Combined calculation models of extreme tide levels formed by astronomical tides and storm surges in China and abroad are also summarized,with a focus on achievements in dynamic mechanisms during extreme water increase in storm surges.Additionally,a two-dimensional nested mathematical model of storm surges in the South China Sea and the Pearl River Estuary is built,and the most unfavorable typhoon intensity and path are designed.The maximum water increase distribution in the Guangdong-Hong Kong-Macao Greater Bay Area is preliminarily simulated and obtained.Finally,it is urgent to put forward a set of safe,concise,and applicable formula for calculating the extreme tide levels of storm surges as soon as possible based on the understanding of the physical mechanism of the interaction between astronomical tides and storm surges.…”
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