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2019中德博士后項(xiàng)目申報(bào)啟動(dòng):亥姆霍茲聯(lián)合會(huì)的8個(gè)研究中心的71個(gè)用人崗位 已有12人參與
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全國(guó)博士后網(wǎng)站發(fā)布新的通告: 2019中德博士后項(xiàng)目申報(bào)啟動(dòng):亥姆霍茲聯(lián)合會(huì)共發(fā)布來(lái)自8個(gè)研究中心的71個(gè)用人崗位。 http://chinapostdoctor.org.cn/we ... c-b547-71fa154806f2 中德博士后項(xiàng)目自2013年開(kāi)始啟動(dòng),今年進(jìn)入第六個(gè)年頭。中德雙方聯(lián)合提供50份不低于洪堡獎(jiǎng)學(xué)金的優(yōu)厚科研資助:中方提供兩年30萬(wàn)人民幣的經(jīng)費(fèi),德方科研機(jī)構(gòu)再為每人匹配每月1500歐元個(gè)人現(xiàn)金收入。申請(qǐng)人可以是在站博士后,應(yīng)屆博士畢業(yè)生以及35歲以下在高校和科研機(jī)構(gòu)工作的青年科研人員,包括已經(jīng)在國(guó)內(nèi)做過(guò)一屆兩年博士后的出站人員。申請(qǐng)人在申請(qǐng)時(shí)可以在國(guó)內(nèi)或國(guó)外,但是必須依托一個(gè)專業(yè)領(lǐng)域相關(guān)的博士后流動(dòng)站投遞申請(qǐng)材料。待成功入選中德博士后項(xiàng)目之后,成功申請(qǐng)者需要在推薦申請(qǐng)的博士后流動(dòng)站辦理博士后入站手續(xù),然后執(zhí)行海外留學(xué)計(jì)劃,并通過(guò)博士后流動(dòng)站獲得中方的經(jīng)費(fèi)支持,在兩年項(xiàng)目結(jié)束后,也需要辦理出站手續(xù)。 亥姆霍茲聯(lián)合會(huì)是由19個(gè)德國(guó)國(guó)家實(shí)驗(yàn)室組成的德國(guó)最頂級(jí)的科研單位,中國(guó)學(xué)人構(gòu)成德國(guó)人之外最大的科學(xué)家群體。 崗位序號(hào) 中心內(nèi)部編號(hào) 博士后研究課題名稱 01 dkfz01 targeting cancer stem cells 02 fzj001 development of large-scale tungsten fiber-reinforced tungsten composites (wf/w) 03 fzj002 crystalline silicon solar cell with transparent microcrystalline silicon carbide as low temperature transparent passivated contact 04 fzj003 synaptic plasticity in sleep wake regulation and depression. 05 fzj004 measurement and analyses of temperature in the middle- and upper atmosphere using recent and upcoming satellite missions applying new spatial heterodyne interferometer technology 06 fzj005 characteristics of 3d edge transport and divertor heat flux control in magnetically confined fusion devices with island divertor configuration 07 fzj006 advanced self-passivating materials for an application in extreme environment of future renewable energy systems 08 fzj007 monitoring of aerosol composition and cloud droplet activation 09 fzj008 secondary aerosol formation by atmospheric mixing 10 fzj009 kinetic modelling of high-intensity laser particle accelerators 11 fzj010 lagrangian transport analyses of aerosols, clouds, and trace gases in the upper troposphere and lower stratosphere 12 fzj011 structure of cortical and hippocampal networksstructure of cortical and hippocampal networks 13 fzj012 time-of-flight neutron spectrometers for accelerator based neutron sources 14 gfz01 physics-informed machine learning (piml) approaches for debris flow modeling 15 gfz02 tsunami hazard assessment using sediment transport modeling and ensemble kalman filtering method 16 hzi01 regulation of hiv replication by rna structure 17 hzi02 deciphering and remoulding the biosynthesis of active and promising compounds from actinobacteria and myxobacteria 18 hzi03 new strategies and optimization of the available lead compounds against infection resistance 19 hzi04 investigation of host-microbiota interplay using high resolution ngs based approaches 20 kit01 theoretical study of history effect on flame stabilization near igni-tion limit 21 kit02 metal organic framework membranes for critical industrial gas sepa-rations 22 kit03 in-situ investigation of clusters and single atom catalysts by pair dis-tribution function analysis and 4d-scanning transmission electron microscopy 23 kit04 radio detection of cosmic rays and neutrinos of highest energies 24 kit05 transport of electrolyte through the electrodes of vanadium redox flow batteries (vrfbs) 25 kit06 liquid metal batteries for energy storage 26 kit07 printed soft electronic devices from ultra-stretchable, highly con-ductive elastomers with low silver content 27 kit08 optimal heat flux distribution on the surface of molten salt receiv-ers in solar tower power plants 28 kit09 novel quantum phases in helimagnetic transition-metal monopnictides 29 kit10 lithium/oxygen-insertion-induced structural evolution during syn-thesis of li-containing oxides for next-generation lithium-ion batteries 30 hmgu01 health effects of endotoxin (lps) from ambient outdoor air 31 hmgu02 "interaction of epigenetic changes and metabolism during climatic plant stress" 32 hmgu03 development of an electrochemistry-based artifical cytochrome system for drug modulation 33 hmgu04 modern medicinal chemistry lead optimization for the treatment of diseases like cancer and diabetes 34 hmgu05 microbial transformation of dietary fatty acids into active metabolites in the gut 35 hmgu06 machine learning methods in single cell genomics 36 hmgu07 integration of omics data for the study of diabetic cardiomyopathy 37 desy01 acoustic emissions testing in the large volume press at beamline p61b to explore dehydration-induced brittle faulting in representative earth materials 38 desy02 atlas data analysis 39 desy03 atlas detector upgrade and generic detector r&d 40 desy04 liquids in constrained geometry for nano-tribology 41 desy05 investigation on the stereocomplexation of racemic poly(lactide) during its crystallization by synchrotron x-ray scattering methods 42 desy06 a high precision silicon strip tracker for the desy testbeam 43 desy07 layer-by-layer coating of sustainable functional composites based on cellulose and noble metal nanoparticles 44 desy08 towards extreme ultraviolet frequency comb spectroscopy of highly charged ions and nuclei 45 desy09 terapascal static high-pressure experiments: submicron focusing and diffraction at high x-ray energies in the double stage diamond anvil cell (dsdac) using compound reflective lenses (crl) and phase plates 46 desy10 a tes detector system for the alps ii experiment at desy 47 desy11 synthesis and characterization of porous mesomorphic organosilica- pmos 48 desy12 deep reinforcement learning for intelligent particle accelerator control 49 desy13 cosmic rays, magnetic field, and/or turbulence 50 desy14 charge dynamics in quasi-one-dimensional materials 51 desy15 search for dark matter with the cms experiment via machine learning 52 desy16 new physics opportunities at future hep facilities 53 desy17 fast digital silicon photomultiplier 54 desy18 high granularity hadron calorimeter 55 desy19 belle ii pixel vertex detector 56 desy20 ultrafast optics and x-ray sources / high energy terahertz generation 57 gsi01 evaluation of the picosecond frontend electronics for the panda barrel dirc 58 gsi02 development of the data processing framework for the cbm 59 gsi03 readout chain for the cbm silicon tracking system (sts) 60 gsi04 sensitivity of kilonovalight curves to nuclearphysics input 61 gsi05 experiments with thermalized exotic nuclei for nuclear astrophysics 62 gsi06 fundamental physics, atomic, molecular and optical physics 63 gsi07 advanced development for reliable operation of high intensity heavy ion source and ecr ion sources 64 gsi08 commissioning of the hitrap cooling penning trap. 65 gsi09 setup and commissioning of a high intensity ebit for cryring@esr 66 fzj13 in situ obervation of metadislocation motion in complex metallic alloys 67 fzj14 in situ transmission electron microscopy of catalysts for methane dry reforming 68 fzj15 in situ transmission electron microscopy of magnetism and electrical transport in highly strained nanowires 69 fzj16 in situ transmission electron microscopy of metal-support interactions in nanoscale catalyst particles 70 fzj17 in situ transmission electron microscopy of electrical transport and magnetism in highly strained ni nanowires 71 fzj18 large-scale image processing for in situ transmission electron microscopy with high-speed high-resolution electron detectors |
博后申請(qǐng) | 海外博后 | 留學(xué) |

專家顧問(wèn) (知名作家)
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專家經(jīng)驗(yàn): +664 |
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中方直接投遞申請(qǐng)材料,無(wú)需先取得德方導(dǎo)師的評(píng)判,中方博士后站點(diǎn)是初選,然后提交給全國(guó)博士后管委會(huì)辦公室進(jìn)行審查。然后,如果材料合格,全部名單過(guò)到德國(guó)方面由德方導(dǎo)師從有限的申請(qǐng)人中確定人選。然后報(bào)送中方公布最終結(jié)果。 所以,跟留學(xué)基金會(huì)借助外方導(dǎo)師初評(píng),由外方提供邀請(qǐng)函再由中方審定不同,國(guó)博辦的中德、香江和澳門(mén)項(xiàng)目都是相反的,是中方作初評(píng),外方在中方基礎(chǔ)上做決定。 |

專家顧問(wèn) (知名作家)
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專家經(jīng)驗(yàn): +664 |
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p 這個(gè)項(xiàng)目的程序是國(guó)內(nèi)通過(guò)博士后流動(dòng)站向中國(guó)的全國(guó)博士后管理委員會(huì)辦公室遞材料,然后才把材料轉(zhuǎn)給德國(guó)人。在德國(guó)人看到官方報(bào)送過(guò)去的材料之前,是不會(huì)面試學(xué)生的,因?yàn)橹挥型ㄟ^(guò)官方報(bào)送的資助才成為有效申請(qǐng)人;這種做法恰好跟留學(xué)基金委CSC的相反。 CSC的獎(jiǎng)學(xué)金,是外方導(dǎo)師做初選,然后CSC再認(rèn)定哪些學(xué)生比較優(yōu)秀。而中德博士后項(xiàng)目,是中方推薦,然后德方最后審定。 |

銀蟲(chóng) (著名寫(xiě)手)
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請(qǐng)問(wèn)應(yīng)屆畢業(yè)生怎么依托博士后流動(dòng)站投遞材料?是必須先入職么 發(fā)自小木蟲(chóng)Android客戶端 |
專家顧問(wèn) (知名作家)
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專家經(jīng)驗(yàn): +664 |
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依托某流動(dòng)站申請(qǐng),需要站點(diǎn)的推薦。成功了之后,才辦理入站手續(xù)然后出國(guó)。獲得資助的保障,才有博士后身份,然后從流動(dòng)站按月領(lǐng)取中方工資 發(fā)自小木蟲(chóng)IOS客戶端 |

專家顧問(wèn) (知名作家)
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專家經(jīng)驗(yàn): +664 |

專家顧問(wèn) (知名作家)
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專家經(jīng)驗(yàn): +664 |
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沒(méi)有,馬普只和中科院有交換博士生30個(gè)左右名額、國(guó)內(nèi)博士生中選派,中科院出第一年的錢(qián)。是否延長(zhǎng),德國(guó)導(dǎo)師決定。 弗勞恩霍夫的中科院合作是十個(gè)交換博士生名額,仿馬普的做法。 DAAD和中科院和CSC有協(xié)議。 發(fā)自小木蟲(chóng)IOS客戶端 |

新蟲(chóng) (初入文壇)
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請(qǐng)問(wèn)遞交材料需要遞交合作導(dǎo)師的邀請(qǐng)信嗎?中方申請(qǐng)人材料給德方后是由合作導(dǎo)師組織考察和面試嗎? 發(fā)自小木蟲(chóng)Android客戶端 |

專家顧問(wèn) (知名作家)
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專家經(jīng)驗(yàn): +664 |
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請(qǐng)問(wèn)遞交材料需要遞交合作導(dǎo)師的邀請(qǐng)信嗎? --- 不需要外方導(dǎo)師的材料,中方先通過(guò)博士后流動(dòng)站作初評(píng),看申請(qǐng)人是否基本合格,然后報(bào)基金會(huì)轉(zhuǎn)德方。德方挑選并確定人選。 中方申請(qǐng)人材料給德方后是由合作導(dǎo)師組織考察和面試嗎?--- 德方的錢(qián)是出錢(qián)的教授出的,他本人或者邀請(qǐng)團(tuán)隊(duì)共同判斷是否接收申請(qǐng)。其他部門(mén)不介入德方篩選。 |

新蟲(chóng) (初入文壇)


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