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韩国高丽大学基本概况

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2017-09-13 14:29

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【 liuxue86.com - 教育体系 】

学校名称: 韩国高丽大学 고려대학교

所在位置:韩国,首尔市城北区安岩路145号

学费:36000 人民币

录取率:0.669

学校中文网址:https://hanguo.liuxue86.com/school/7509/

  三、教研优势

  下面小编为大家翻译了高丽大学近期的研究成果,希望对同学们对于该校的科研水平的判断提供一些依据,由于其中有过多的术语,不准确之处还请见谅。

  Prof. Hong-Gyu Park’s Team Develops Photon-triggered Nanowire Transistors

  New applications include high-resolution cameras and photonic computers

  A team led by Prof. Hong-Gyu Park of the Department of Physics under the College of Sciences developed nanowire transistors that control electronic signals using photons and efficiently amplify currents.Nanowire: A nanostructure with a diameter of the order of a nanometer and a length measuring tens of micrometers. It is used in lasers, transistors, memories, and chemical-detecting sensors. Transistor: A semiconductor device connected to an external circuit to amplify or switch electronic signals.The team’s research was published in Nature Nanotechnology on August 8. The study received funding from the Basic Research Support Program of the Ministry of Science and ICT.Title of the Article: Photon-triggered nanowire transistors.Author Information: Prof. Hong-Gyu Park (corresponding author, Korea University), post-doc researcher Jungkil Kim (first author, Korea University).Transistors, a key component of modern electronic devices, are used to amplify or switch electronic signals. While past studies have attempted to improve their efficiency by using nanosized transistors or exposing them to light, commercialization has not been achieved due to the complex processes and poor yield.By partially inserting porous silicon into silicon nanowires, the team developed nanowire transistors capable of using photons to effectively control electronic signals. The new transistors have significantly lowered the complexity of existing semiconductor design and manufacturing processes. Porous silicon: Silicon containing nanopores (one nanometer is one billionth of a meter) in its microstructure.Porous silicon has a very low current because of nanopores in its microstructure. The team made use of this poor conductivity, and discovered for the first time that current is significantly amplified when porous silicon is exposed to light. In addition, a new logic gate was created by fabricating transistors with two porous silicon segments in a single silicon nanowire. A high submicrometer-resolution photodetector system was established using thin nanowire transistors containing several porous silicon segments.Logic gate: A basic block of a digital circuit with two output states for a given input of 1 or 0. Used in computational devices of computers and controllers Photodetector: A device that detects light photons and converts them into current.Prof. Hong-Gyu Park said, “Our study shows that nanowires alone can be used to fabricate all kinds of electronic devices by focusing lasers on porous silicon after placing them in desired positions. We expect these transistors to have various applications, including ultrasensitive high-resolution cameras and photonic computers.”

  研究成果一:洪金朴教授的团队开发了光子触发的纳米线晶体管。

  新应用程序包括高分辨率相机和光子计算机

  由美国科学院物理系的洪金教授领导的一个研究小组开发了纳米线晶体管,利用光子来控制电子信号,并有效地放大电流。纳米线:一种纳米结构,直径为一纳米,长度为几十微米。它被用于激光、晶体管、记忆和化学探测传感器。晶体管:一种连接到外部电路的半导体器件,用来放大或开关电子信号。该研究小组的研究发表在8月8日的自然纳米技术上。该研究获得了科技部和ICT基础研究支持项目的资助。这篇文章的标题:光子触发的纳米线晶体管.作者信息:洪教授朴教授(对应的作者,高丽大学),博士后研究员Jungkil Kim(第一作者,高丽大学)晶体管是现代电子设备的重要组成部分,用于放大或开关电子信号。过去的研究试图通过使用纳米级的晶体管或将它们暴露在光中来提高效率,但是由于复杂的过程和低的产量,还没有实现商业化。通过将多孔硅植入硅纳米线,研究小组开发出了能够利用光子来有效控制电子信号的纳米线晶体管。新的晶体管大大降低了现有半导体设计和制造过程的复杂性。多孔硅:含有纳米孔的硅(1纳米是一米的十亿分之一米)。多孔硅在其微观结构中具有非常低的电流。该团队利用了这种低导电性,并首次发现,当多孔硅暴露在光线下时,电流会被显著放大。另外,一个新的逻辑门是通过在一个硅纳米线上制造两个多孔硅段的晶体管制造的。摘要利用含有多孔硅段的薄纳米线晶体管,建立了一种高亚微米分辨率的光探测器系统。逻辑门:一种数字电路的基本块,它有两个输出状态,用于给定输入的1或0。用于计算机和控制器的计算设备。光检测器:一种探测光光子并将其转化为电流的装置。教授说:“我们的研究表明,纳米线可以用来制造各种电子设备,把激光聚焦在多孔硅上,然后把它们放在理想的位置上。我们希望这些晶体管能有各种各样的应用,包括超灵敏的高分辨率相机和光子计算机。”

  Prof. Bae’s Team Succeeds in Nurturing Mosquito Eaters

  Elephant mosquitos help to prevent the Zika and Dengue virus diseases

  Prof. Yeon Jae Bae, Division of Environmental Science and Ecological Engineering, College of Life Sciences and Biotechnology.A local research team succeeded in nurturing an indigenous breed of mosquitos known as elephant mosquitos, which feed on other mosquito larvae.Elephant mosquitos: Known by the scientific name of Toxorhynchites christophi, the imago is about 1.5 to 2.0 cm in length. This breed is found in forests throughout Korea, and is characterized by a mouth brush that points downwards.Since last November, Prof. Yeon Jae Bae of the Division of Environmental Science and Ecological Engineering has conducted research on mosquito control, as part of a public technology development project under the Ministry of Environment and the Korea Environmental Industry & Technology Institute (KEITI). The team has been raising mosquitos at a breeding site at the Korea University Deokso Farm, located in Namyangju-si, Gyeonggi-do. In cooperation with the Korea National Arboretum (including Jongok Lim), they installed outdoor traps in discarded rubber car tires and flower pots. The results of their quantitative study showed that there was an average of two mosquitos in traps containing the larvae of elephant mosquitos, but 105 in those without.Since elephant mosquitos share habitats with mosquitos carrying the Zika and Dengue viruses, these mosquitos could be used to prevent such diseases. Elephant mosquitos consume other mosquito larvae during their larval stage, and then metamorphose into honey-sucking adults. They are human-friendly insects that serve as the natural enemy of blood-sucking mosquitos.The study, the first-ever attempt to use elephant mosquitos for mosquito control, was carried out in areas with elephant mosquito populations. Despite the challenges of breeding mosquitos in an artificial environment, the team used light-controlled facilities to induce mating and egg-laying. The breeding site, measuring 60 cm in height, length and width, was covered with a black sheet. A 15-cm window was created on the top side for the elephant mosquitos to be drawn to the light and naturally engage in mating behavior.The team was able to obtain more than 600 offspring from a single adult female over a period of 50 days in the light-controlled breeding site. The elephant mosquito larva each consumed about 26 mosquito larvae a day. During the 16-day larval stage, we can expect a single elephant mosquito larva to eliminate 416 mosquito larvae.Elephant mosquitos, which share the same habitat as the Aedes genus, are found in small puddles in tree holes, bamboo stumps, and discarded tires. They can be used to control the population of blood-sucking mosquitos and prevent the spreading of the Zika and Dengue viruses. Although such diseases have not spread in Korea via mosquitos, the proposed method of mosquito control will be useful considering the increase in overseas travel and rising average temperature.KEITI plans to evaluate the effects of the new method on the ecosystem, and to support further research for its stable integration.

  [ Terminology ]

  ○ Zika virus: Spread by the genus Aedes (Aedes aegypti, Aedes albopictus), the Zika virus disease causes mild symptoms (no symptoms for 80% of patients), but can result in microcephaly when fetuses are infected during pregnancy.

  ○ Dengue virus: Dengue virus is transmitted by the genus Aedes (Aedes aegypti, Aedes albopictus). Those infected suffer from symptoms such as high fever, headache, and muscle pain. In severe cases, the virus causes hemorrhagic fever or shock.

  ○ Biological control: A biological method of pest control that relies on natural enemies or pathogenic microorganisms. Population control is performed by directly killing pests or introducing natural enemies.

  ○ Digital Mosquito Monitoring System (DMS): The system releases carbon dioxide in order to attract mosquitos. While other insects may also be caught, the system is capable of selectively identifying mosquitos, and is also accurate in locating areas with high mosquito populations.

  研究成果二:Bae教授的团队成功培育了食蚊者

  象蚊子帮助预防寨卡病毒和登革热病毒病

  Yeon Jae Bae教授,环境科学和生态工程学院,生命科学和生物技术学院。当地的一个研究小组成功地培育了一种名为“象蚊子”的本地蚊子,这种蚊子以其他蚊子幼虫为食。象蚊子:已知的是弓虫的学名,imago的长度约为1.5到2.0厘米。这种品种在整个韩国的森林中都有,其特征是嘴刷向下。自去年11月以来,环境科学与生态工程部门的Yeon Jae Bae教授对蚊子的控制进行了研究,这是环境部和韩国环境工业与技术研究所(KEITI)的一项公共技术开发项目的一部分。该研究小组一直在高丽大学Deokso农场的一个繁殖地点饲养蚊子。在与韩国国家植物园(包括Jongok Lim)的合作中,他们在废弃的橡胶轮胎和花盆中安装了户外陷阱。他们的定量研究结果显示,在含有大象蚊子幼虫的陷阱中,平均有两种蚊子,但在没有这种蚊子的情况下,有105种蚊子。由于象蚊子与携带寨卡病毒和登革热病毒的蚊子共享栖息地,这些蚊子可以被用来预防此类疾病。在幼虫阶段,象蚊子会吃掉其他的蚊子幼虫,然后它们就变成了蜜糖的成年人。它们是人类友好的昆虫,它们是吸血蚊子的天敌。这项研究首次尝试用大象蚊子来控制蚊子,在大象蚊子种群的地区进行。尽管在人工环境中培育蚊子的挑战是存在的,但研究小组利用光控设施来诱导交配和产卵。这个繁殖地点的高度、长度和宽度是60厘米,上面覆盖着一张黑色的床单。在顶部有一个15厘米的窗户,让象蚊子被吸引到光线中,并且自然地进行交配行为。该研究小组在光控繁殖地的50天内,从一个成年雌虫那里获得了600多个后代。象蚊子幼虫每天吃掉大约26只蚊子幼虫。在16天的幼虫期,我们可以期待一只象蚊子幼虫可以消灭416只蚊子幼虫。象蚊子一样的栖息地和伊蚊属一样,在树洞、竹树桩和废弃的轮胎上发现的小水坑里。它们可以用来控制吸血蚊子的数量,防止寨卡病毒和登革热病毒的传播。虽然这种疾病在韩国没有通过蚊子传播,但是考虑到国外旅行的增加和平均温度的上升,这种蚊子控制的方法将会很有用。凯帝计划评估新方法对生态系统的影响,并支持进一步研究其稳定的整合。

  (术语)

  寨卡病毒:由伊蚊(埃及伊蚊,伊蚊)传播,寨卡病毒病会引起轻微症状(80%的患者没有症状),但当胎儿在怀孕期间感染时就会出现小头畸形症。

  登革热病毒:登革热病毒由伊蚊(埃及伊蚊,伊蚊)传播。那些感染者会出现高烧、头痛和肌肉疼痛等症状。在严重病例中,该病毒会引起出血热或休克。

  生物防治:一种依靠天敌或病原微生物的生物防治方法。人口控制是直接杀死害虫或引入天敌。

  数字蚊子监测系统(DMS):系统释放二氧化碳以吸引蚊子。虽然其他昆虫也可能被捕获,但该系统能够选择性地识别蚊子,而且在蚊子数量较高的地区也能准确定位。

  Early Detection of Cancer with Smart Phones Becomes a Reality

  Utilizing Ribosomal Protein S3 (rpS3) to Simultaneously Screen Various Types of Cancers

  The Result of Converging BT and IT Technologies.KU Medical Center and Professor Joon Kim from the College of Life Sciences & Biotechnology, in collaboration with HAEL Lab, a corporate affiliated research institute of HAEL Ltd. led by Doctor Hag Dong Kim, succeeded in developing a portable self-diagnostic kit for screening cancer. By utilizing a biomarker that is found specifically in various cancer patients, the test results can be confirmed easily through a smartphone.This medical device for screening cancer is the first of its kind to quantify rpS3 secreted from cancer cells in a single drop of blood. This not only allows patients to detect cancer early, but also allows them to follow up on their surgery and post chemotherapy monitoring. It is further expected to be utilized for evaluating any spread of cancer to other parts of the body and identifying areas of cancerization.The research team stated, “So far, clinical studies on patients with gastrointestinal cancer have shown enhanced sensitivity and specificity compared to the serologic biomarkers for cancer screening. Based on these achievements, we have been conducting clinical tests in the first half of 2017 to get approval for three domestic patents and three international patents. These patents are expected to be licensed for commercialization of the medical devices.”Doctor Hag Dong Kim said, “Through early cancer detection and prognosis prediction, we expect the development and commercialization of diagnostic screening devices to contribute to the enhancement of cancer treatments. Moreover, we also expect to further apply the relevant results in expanding our business with regard to developing functional cosmetics, and anti-inflammatory and anti-fungal agents.”Professor Joon Kim who is the CEO of HAEL Ltd., obtained his degrees in the Department of Microbiology at Seoul National University, University of California, Berkeley, and Harvard University. He is currently a professor in Korea University’s College of Life Sciences & Biotechnology and has served as the Director of the Life Sciences Department at the Korea Research Foundation which conducts national research projects.

  研究成果三:用智能手机早期发现癌症已经成为现实

  利用核糖体蛋白S3(rpS3)来同时筛查各种类型的癌症。融合了BT和IT技术的结果,。库医学中心和生命科学与生物技术学院的Joon Kim教授,与HAEL实验室的HAEL实验室合作,由哈格博士领导的公司下属的研究机构HAEL实验室,成功地开发了一种便携式自诊断工具,用于筛查癌症。通过使用一种生物标志物,可以在不同的癌症患者身上找到,通过智能手机可以很容易地得到检测结果。这种用于筛查癌症的医疗设备,是第一个将从癌细胞中分泌出的rpS3,在一滴血中进行量化的方法。这不仅能让病人及早发现癌症,而且还能让他们追踪他们的手术,并进行化疗监测。它还将被进一步用于评估癌症扩散到身体其他部位并确定癌症的范围。研究小组说:“到目前为止,对胃肠道癌症患者的临床研究显示,与癌症筛查的血清标志物相比,他们的敏感性和特异性更强。”基于这些成就,我们在2017年上半年进行了临床试验,以获得3项国内专利和3项国际专利。这些专利预计将获得医疗设备的商业化许可。”Hag Dong Kim博士说,“通过早期癌症检测和预后预测,我们预计诊断筛查设备的发展和商业化将有助于提高癌症治疗的效果。”此外,我们还希望在开发功能性化妆品、抗炎和抗真菌药物方面,进一步应用相关的研究成果。”Joon Kim是HAEL ltd.的首席执行官,他在首尔国立大学、加州大学伯克利分校和哈佛大学的微生物学部获得了学位。他目前是高丽大学生命科学与生物技术学院的教授,曾担任韩国研究基金会生命科学部主任,负责国家研究项目。

  四、校园环境

  1.概况

  The campus life of Korea university is rich and colorful, and the literature, sports and art clubs have everything.Each of the university's 12 colleges has a concert or theatrical performance organized by student groups.The dormitory is safe, comfortable, with a large space and only 10 minutes' walk from the main campus. Therefore, it is very convenient for students to eat and live.

  高丽大学的校园生活是丰富多彩的,校园内拥有文学、体育、艺术俱乐部可谓是拥有一切。每个大学的12个学院有一个音乐会或戏剧表演的学生团体组织。宿舍是安全的,舒适的,有一个大的空间,从主校园步行仅需要10分钟。因此,是非常方便的学生吃饭和生活的。

  2.全韩国最古老的图书馆

  The school library, one of the oldest and best in the country, was built in 1973 and has developed several branches, including the centerKorea university, graduate student, library, science and technology library, the library of the United Nations, the first chang, library, medical library, Asia research center, library, etc., the total collection of 900000 books, there are a lot of precious rare version;There are more than 10,000 microcollectables.Unlike other south Korean university library, the school library special collections UN publications, since its completion in 1957, the UN library contains about 25000 books and 300 kinds of journals.The school museum, the first university museum in the country, was built in 1934 with nearly 100,000 collections.

  学校图书馆建于1973,是全国最古老和最好的图书馆之一,并已发展出包括中心在内的多个分支机构。高丽大学、研究生、图书馆、科技图书馆、联合国图书馆、第一馆、图书馆、医学图书馆、亚洲图书馆、研究中心等,900000本书的总集合,有很多珍贵的版本;有超过1万多种微缩收藏品。

  不像其他的高丽大学图书馆,学校图书馆的特色馆藏联合国出版物,自建成以来1957年,联合国图书馆有大约25000本书,300种期刊。学校的博物馆,在全国第一个大学博物馆,建于1934近10万件藏品。

  3.其他服务

  Clinical Legal Education Center (Legal Clinic CLEC):Law school students providing free legal advice under the guidance of professors and lawyers

  Law School Clinical Legal Education Center;Seongbuk District Healthy Family Support Center is a family service agency commissioned by the Seongbuk district office and operating under the management of Korea University since 2006 in order to provide various family services for “creating a happy Seongbuk family”.Family crisis - Professional counseling for couples and families in conflict, group counseling, psychological testingPre-marriage classes, parenting education, Moving Father Class, family education such as family programs

  Family-friendly cultural events for developing family intimacy such as a day of family love.Local community share & care networks, such as mentoring junior high students on learning and emotional support in associations with the Korea University social volunteer group, family volunteer service center, and sharing family workloads.Various integrated family services such as supporting single-parent families.All family services are provided free of charge.

  临床法律教育中心(法律诊所CLEC):法学院学生在教授和律师的指导下提供免费的法律咨询

  法学院临床法律教育中心:Seongbuk区健康家庭支持中心是由Seongbuk地区办公室委托的一家家庭服务机构,自2006年以来在高丽大学管理下运营,为“创建一个快乐的Seongbuk家庭”提供各种家庭服务。家庭危机-对夫妻和家庭的专业咨询、冲突咨询、团体咨询、心理测试婚前课程、为人父母教育,父亲班,家庭教育,家庭教育等。家庭关系的家庭亲密文化事件比如家庭爱的一天。本地社区共享和关爱网络,例如指导初级高中生学习和情感支持,与高丽大学社会志愿者小组、家庭志愿者服务中心、分享家庭工作负荷。各种综合的家庭服务,例如单亲家庭所有的家庭服务都是免费提供的。

  五、杰出校友(源自网络,排名不分先后)

  金秀美(高丽大学言论学院,演员)

  成秉淑(演员)

  沈惠珍(高丽大学政策学院硕士,著名演员)

  李凡秀(高丽大学影像学硕士,著名演员)

  金贤珠(高丽大学、著名演员)

  李尚禹(高丽大学、著名演员)

  柳真(高丽大学西洋文学系,演员)

  金亚中(高丽大学研究生院硕士,著名演员)

  玉泽演(国际经营学研究生在读,演员,歌手,2pm成员)

  朴慧秀 (高丽大学国文文学系,演员)

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俄罗斯的高等教育,和国内是有着比较大的差异的,搞清楚差异才能更快适应。跟着出国留学网一起来了解一下俄罗斯留学特色盘点中俄留学有什么不一样?一、入学门槛相较于国内985/211类名校
2020-07-21
韩国高丽大学是一所私立学院,成立于1905年。最初名为Bosung学院,该大学于1946年获得现在的名称,该大学在近些年逐渐被国内外所认可,出国留学网为您带来以下介绍。韩文网站:w
2019-01-09
长期以来,梨花女子大学作为韩国女性教育传统与精神的象征,以培养亚洲女性精英而享誉世界,被誉为“亚洲第一名门女校”。下面和和出国留学网一起来看看这所学校吧。一、学校简介梨花女子大学(
2020-06-04
一直以来,加拿大以其高度发达的经济,高素质的文明、高质量的教育、高福利社会保障体系吸引着来自世界各地的莘莘学子前往留学,下面是出国留学网整理的加拿大留学概况,一起来看看吧。一、加拿
2020-06-04
韩国的大学中,研究生入读的学院被称为大学院,拥有自己的教学和考核体系。接下来出国留学网就为大家带来韩国大学院详细介绍怎样申请韩国大学院?一、大学院韩国的高校中,硕士和博士的授课是集
2020-03-12
韩国的庆熙大学虽说没有该国的SKY三所大学在国内那么的出名,但是它在国内还是有一定的去名气的。那么,想要申去该大学去学习的话,要满足什么样的要求才能入读呢?和出国留学网来看一下吧!
2020-04-02