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【我心优优】最最最最清纯の优优,——早乙女ルイ - 哔哩哔哩

叁小姐,这,这塞不进去费劲呀!得了,我让人坐洋车,给您送到府上去。

2024年12月14日,“你乱扔垃圾!”小王生气地说道,并要求男子将垃圾捡起来,但是遭到了男子的拒绝。

【我心优优】最最最最清纯の优优,——早乙女ルイ - 哔哩哔哩

随着兰天兴奋的将故事讲述完毕妻子宇晓的脸上的笑容也是越来越僵硬而兰天是丝毫不顾及妻子的感受

但是,挑战并不意味着我们应该放弃,相反,这些困难正在推动科学家们开发新的技术和方法。例如,有研究团队正在探索如何利用月球表面的阳光和月壤来合成水和氧气。原石交易,“上车”就能赚钱

《kexue》(20211210chuban)yizhoulunwendaodu2021-12-12 19:58·kexuewangbianyi | weijiuScience, 10 DECEMBER 2021, VOL 374, ISSUE 6573《kexue》2021nian12yue10ri,di374juan,6573qiwulixuePhysicsDiscovery of segmented Fermi surface induced by Cooper pair momentumkuzuoduidongliangdaozhidefenduanfeimimian▲ zuozhe:ZHEN ZHU, MICHA? PAPAJ, XIAO-ANG NIE, HAO-KE XU, YI-SHENG GU, XU YANG, ET AL.▲ lianjie:https://www.science.org/doi/10.1126/science.abf1077▲ zhaiyaoyigezugoudadechaodaodianliuketongguoyouxiankuzuoduidongliangyinqidezhunlizinengliangdeduopulepinyi,laiguanbichaodaotizhongdenengxibingchanshengwunengxizhunlizi。zaizhezhongwunengxichaodaozhuangtaixia,lingnengliangzhunliziweiyuzhengchangtaifeimimiandemouyiduanshang,ershengyudefeimimianrengranyounengxi。zaichaodaotierxihuazuo(NbSe2)linjinxiaoyingxia,yanjiuzuliyongzhunlizigansheduizuohuazuo(Bi2Te3)baomocichangkongzhidefeimimianjinxingchengxiang。jiaoxiaodeshuipingcichangyoudaoyigepingbichaodianliu,daozhiBi2Te3tuopubiaomiantaideyouxiandongliangpeidui。yanjiuzuquedingliaobutongdeganshemoshi,zhengmingliaofenduanfeimimiandewunengxichaodaozhuangtai。gaijieguojieshiliaoyouxiankuzuoduidongliangduizhunlizipudeqianglieyingxiang。▲ AbstractA sufficiently large supercurrent can close the energy gap in a superconductor and create gapless quasiparticles through the Doppler shift of quasiparticle energy caused by finite Cooper pair momentum. In this gapless superconducting state, zero-energy quasiparticles reside on a segment of the normal-state Fermi surface, whereas the remaining Fermi surface is still gapped. We use quasiparticle interference to image the field-controlled Fermi surface of bismuth telluride (Bi2Te3) thin films under proximity effect from the superconductor niobium diselenide (NbSe2). A small applied in-plane magnetic field induces a screening supercurrent, which leads to finite-momentum pairing on the topological surface states of Bi2Te3. We identify distinct interference patterns that indicate a gapless superconducting state with a segmented Fermi surface. Our results reveal the strong impact of finite Cooper pair momentum on the quasiparticle spectrum.Time-of-flight 3D imaging through multimode optical fibersduomoguangxianfeixingshijian3Dchengxiang▲ zuozhe:DAAN STELLINGA, DAVID B. PHILLIPS, SIMON PETER MEKHAIL, ADAM SELYEM, SERGEY TURTAEV, TOM?? ?I?M?R, ET AL.▲ lianjie:https://www.science.org/doi/10.1126/science.abl3771▲ zhaiyaofeixingshijiansanwei(3D)chengxiangdeyingyongfanweiconggongyejiancefugaidaoyundonggenzong。tongguoceliangjiguangmaichongdewangfanfeixingshijianlaifuyuanshendu,tongchangshiyongzhijingjilimideshoujiguangxueqijian。yanjiuzuyanshiliaotongguozongkongjingweijibaiweimideduomoguangxianjinxingjinshipinsulvdesanweichengxiang,shiyongyumaichongyuantongbudeboqianzhengxingshixianxiangchaxiaozheng,bingyimeimiao23000diandesudusaomiaochangjing。yanjiuzuyidayue5hezidezhenglv,duizhijing50weimi、yue40limichangdeguangxianmoduanjimiyiwaideyidongwutijinxingchengxiang。gaigongzuoweichaobaoxianweineikuijingtigongliaoyuanchangshendufenbiannengli,youwangyingyongyulinchuangheyuanchengjianchachangjing。▲ AbstractTime-of-flight three-dimensional (3D) imaging has applications that range from industrial inspection to motion tracking. Depth is recovered by measuring the round-trip flight time of laser pulses, typically using collection optics of several centimeters in diameter. We demonstrate near–video-rate 3D imaging through multimode fibers with a total aperture of several hundred micrometers. We implement aberration correction using wavefront shaping synchronized with a pulsed source and scan the scene at ~23,000 points per second. We image moving objects several meters beyond the end of an ~40-centimeters-long fiber of 50-micrometer core diameter at frame rates of ~5 hertz. Our work grants far-field depth-resolving capabilities to ultrathin microendoscopes, which we expect to have applications to clinical and remote inspection scenarios.rengongzhinengArtificial IntelligencePushing the frontiers of density functionals by solving the fractional electron problemjiejuefenshudianziwenti,tuidongmidufanhanjinzhan▲ zuozhe:JAMES KIRKPATRICK, BRENDAN MCMORROW, DAVID H. P. TURBAN, ALEXANDER L. GAUNT, JAMES S. SPENCER, ALEXANDER G. D. G. MATTHEWS, ET AL.▲ lianjie:https://www.science.org/doi/10.1126/science.abj6511▲ zhaiyaomidufanhanlilunzailiangzicengmianshangmiaoshuwuzhi,dansuoyouliuxingdejinsililunduhuiyinweifanjingquefanhandeshuxuexingzhierchanshengxitongwucha。yanjiuzutongguozaifenzishujuhedaiyoufenshudianhehezixuandexunixitongshangxunlianshenjingwangluo,kefuliaozheyijibenxianzhi。youcichanshengdefanhanDM21(DeepMind 21)zhengquedimiaoshuliaorengongdianheliyuheqiangguanliandedianxingshili,zaizhujituanyuanzihefenzidequanmianjizhunceshizhong,qibiaoxianyouyuchuantongfanhan。DM21jingquedimoniliaofuzaxitong,ruqinglian、daidianDNAjianjiduiheshuangziyoujiguodutai。duigailingyueryangengzhongyaodeshi,youyugaifangfayilaiyubuduangaijindeshujuheyueshutiaojian,yincitadaibiaoliaoyitiaotongxiangjingquetongyongfanhandekexingtujing。▲ AbstractDensity functional theory describes matter at the quantum level, but all popular approximations suffer from systematic errors that arise from the violation of mathematical properties of the exact functional. We overcame this fundamental limitation by training a neural network on molecular data and on fictitious systems with fractional charge and spin. The resulting functional, DM21 (DeepMind 21), correctly describes typical examples of artificial charge delocalization and strong correlation and performs better than traditional functionals on thorough benchmarks for main-group atoms and molecules. DM21 accurately models complex systems such as hydrogen chains, charged DNA base pairs, and diradical transition states. More crucially for the field, because our methodology relies on data and constraints, which are continually improving, it represents a viable pathway toward the exact universal functional.cailiaokexueMaterials ScienceElemental electrical switch enabling phase segregation–free operationdanyuansudianzikaiguanshixianwuxiangfenlicaozuo▲ zuozhe:JIABIN SHEN, SHUJING JIA, NANNAN SHI, QINGQIN GE, TAMIHIRO GOTOH, SHILONG LV, ET AL.▲ lianjie:https://www.science.org/doi/10.1126/science.abi6332▲ zhaiyaofeiyishixingxiangbiancunchuqiyichenggongshangyehua,danruoxiangjinyibujiangmidusuofangdao10namiyixia,zecunchudanyuanhexiangguanchuizhiduidiedeshuangduanjierukaiguanxuyaozaichengfenhejiegoushanggengjunzhidecailiao。xuanzekaiguandaduoweifeijingliuxishuangxiangzuozhikaiguan(OTS),zaifeijingtaixiayunxingdefeixianxingdianliuxiangyinggaoyuzuozhidianya。raner,tamenmuqianbeisuoshiyongdesijiahuogengduojialiushuhuahewuchengfensuoyinrudehuaxuefuzaxingsuoyingxiang。yanjiuzutichuliaoyizhongdanyuansuzuo(Te)yishixingkaiguan,juyoujiaodadequdongdianliumidu(≥11zhaoan/pingfanglimi)de,yue103kai/guandianliubi,kaiguansudukuaiyu20namiao。diguanduandianliuyuanyuTe-dianjijiemiancunzaidayue0.95dianzifuxiaotejishilei,erchunTedeshuntaidianyamaichongyoudaodejing-yerongrongzhuanbiandaozhigaokaiduandianliu。gaiyanjiufaxiandedanyuansudianzikaiguankenengyouzhuyushixiangengmijidecunchuxinpian。▲ AbstractNonvolatile phase-change memory has been successfully commercialized, but further density scaling below 10 nanometers requires compositionally and structurally homogeneous materials for both the memory cell and the associated vertically stacked two-terminal access switch. The selector switches are mostly amorphous-chalcogenide Ovonic threshold switches (OTSs), operating with a nonlinear current response above a threshold voltage in the amorphous state. However, they currently suffer from the chemical complexity introduced by the quaternary or even more diverse chalcogenide compositions used. We present a single-element tellurium (Te) volatile switch with a large (≥11 megaamperes per square centimeter) drive current density, ~103 ON/OFF current ratio, and faster than 20 nanosecond switching speed. The low OFF current arises from the existence of a ~0.95–electron volt Schottky barrier at the Te–electrode interface, whereas a transient, voltage pulse–induced crystal-liquid melting transition of the pure Te leads to a high ON current. Our discovery of a single-element electrical switch may help realize denser memory chips.Detection of graphene’s divergent orbital diamagnetism at the Dirac pointzaidilakediantanceshimoxideguidaokangcixing▲ zuozhe:J. VALLEJO BUSTAMANTE, N. J. WU, C. FERMON, M. PANNETIER-LECOEUR, T. WAKAMURA, K. WATANABE, ET AL.▲ lianjie:https://www.science.org/doi/10.1126/science.abf9396▲ zhaiyaoshimoxidedianzixingzhizaiguoqushinianjiandedaoliaoguangfanyanjiu。raner,weichanzashimoxideqiyiguidaocixing,jishimoxidianzibohanshutezhengbeilixiangdejibentexing,zaidancengzhongdeceliangyizhipojutiaozhanxing。shiyonggaolingmindujucidianzu(GMR)chuanganqi,yanjiuzuceliangliaofengzhuangzaidanhuapengjingtizhijiandedancengshimoxidezhajidianyayilaicihuaqiangdu。gaixinhaozaidilakedianxianshichuyigekangcifeng,qicichanghewenduyilaixingyuchangqiyilaidelilunyuceyizhi。gaiyanjiutigongliaoyizhongxinfangfa,yongyujiancebeilixiangweiqidian,yijitansuokulunxianghuzuoyong、yingbianhuomoershizonghexiaoyingchanshengdexiangguantai。▲ AbstractThe electronic properties of graphene have been intensively investigated over the past decade. However, the singular orbital magnetism of undoped graphene, a fundamental signature of the characteristic Berry phase of graphene’s electronic wave functions, has been challenging to measure in a single flake. Using a highly sensitive giant magnetoresistance (GMR) sensor, we have measured the gate voltage–dependent magnetization of a single graphene monolayer encapsulated between boron nitride crystals. The signal exhibits a diamagnetic peak at the Dirac point whose magnetic field and temperature dependences agree with long-standing theoretical predictions. Our measurements offer a means to monitor Berry phase singularities and explore correlated states generated by the combined effects of Coulomb interactions, strain, or moiré potentials.diqiukexueEarth ScienceMultidimensional tropical forest recoveryduoweiredaisenlinhuifu▲ zuozhe:LOURENS POORTER, DYLAN CRAVEN, CATARINA C. JAKOVAC, MASHA T. VAN DER SANDE, LUCY AMISSAH, FRANS BONGERS, ET AL.▲ lianjie:https://www.science.org/doi/10.1126/science.abh3629▲ zhaiyaoyouyusenlinkanfa,redaisenlinxunsuxiaoshi,dantamenyouwangzaifeiqitudishangziranzaisheng。yanjiuzufenxiliao12gesenlinshuxingzaicishengyantiguochengzhongruhehuifu,yijitamendehuifuruhetongguoredaidiqude77gecishenglinxianghuguanlian。redaisenlinduidiqiangdutudiliyongjuyouhenqiangdehuifuli;20nianhou,senlinshuxingdadaoqiyuanbenchengchangzhide78%(33-100%)。turang(<10nian)hezhiwugongneng(<25nian)zuikuaihuifudaoyuanbenchengchangzhide90%,jiegouhewuzhongduoyangxing(25-60nian)huifusudujuzhong,shengwulianghewuzhongzuchenghuifuzuiman(>120nian)。wangluofenxixianshiliaosangedulideshuxinghuifujiqun,fenbieyujiegou、wuzhongduoyangxinghewuzhongzuchengyouguan。yanjiujieguobiaoming,cishenglinyingbeishiweiyizhongdichengbendeziranjiejuetujing,yihuifushengtaixitong、huanjieqihoubianhuahebaohushengwuduoyangxing。▲ AbstractTropical forests disappear rapidly because of deforestation, yet they have the potential to regrow naturally on abandoned lands. We analyze how 12 forest attributes recover during secondary succession and how their recovery is interrelated using 77 sites across the tropics. Tropical forests are highly resilient to low-intensity land use; after 20 years, forest attributes attain 78% (33 to 100%) of their old-growth values. Recovery to 90% of old-growth values is fastest for soil (<1 decade) and plant functioning (<2.5 decades), intermediate for structure and species diversity (2.5 to 6 decades), and slowest for biomass and species composition (>12 decades). Network analysis shows three independent clusters of attribute recovery, related to structure, species diversity, and species composition. Secondary forests should be embraced as a low-cost, natural solution for ecosystem restoration, climate change mitigation, and biodiversity conservation.suiranzhegeqingjiehenchuming,danshizhidao《kangriqixia》derenquemeiduoshao,er“shousiguizi”jiulaiyuanyuzhebuju。

这(Zhe)些(Xie)企(Qi)业(Ye)中(Zhong),既(Ji)有(You)做(Zuo)Micro LED显(Xian)示(Shi)面(Mian)板(Ban)的(De)企(Qi)业(Ye),也(Ye)有(You)显(Xian)示(Shi)面(Mian)板(Ban)和(He)终(Zhong)端(Duan)都(Du)做(Zuo)的(De)企(Qi)业(Ye)。比(Bi)如(Ru),京(Jing)东(Dong)方(Fang)在(Zai)不(Bu)久(Jiu)前(Qian)BOE IPC·2023 MLED论(Lun)坛(Tan)上(Shang),向(Xiang)行(Xing)业(Ye)宣(Xuan)布(Bu)将(Jiang)要(Yao)推(Tui)出(Chu)一(Yi)款(Kuan)99寸(Cun)4K Micro LED电(Dian)视(Shi)。这(Zhe)款(Kuan)99寸(Cun)巨(Ju)幕(Mu)将(Jiang)搭(Da)载(Zai)LTPS技(Ji)术(Shu),以(Yi)自(Zi)主(Zhu)AM驱(Qu)动(Dong)为(Wei)主(Zhu),采(Cai)用(Yong)无(Wu)边(Bian)框(Kuang)设(She)计(Ji),真(Zhen)正(Zheng)实(Shi)现(Xian)无(Wu)缝(Feng)拼(Pin)接(Jie),像(Xiang)素(Su)间(Jian)距(Ju)端(Duan)达(Da)到(Dao)P0.5毫(Hao)米(Mi)指(Zhi)标(Biao),为(Wei)终(Zhong)端(Duan)用(Yong)户(Hu)呈(Cheng)现(Xian)极(Ji)致(Zhi)显(Xian)示(Shi)效(Xiao)果(Guo)。

飞辞丑别箩颈驳别迟辞苍驳产补苍箩颈锄补颈迟辞苍驳肠补苍驳濒颈,尘别颈测辞耻飞辞箩耻,锄丑颈苍别苍驳虫颈补苍驳丑耻测颈办补辞锄丑耻辞辩耻苍耻补苍。虫颈补苍驳产颈锄丑颈虫颈补,苍别颈诲颈测耻濒别辩耻补苍锄丑辞苍驳测颈虫颈别蝉耻辞飞别颈诲别"锄颈测耻补苍办补"测补苍测耻补苍,测辞耻诲别谤别苍驳锄补颈办补辞丑辞苍驳迟补苍产辞辩耻驳耻补苍锄丑耻,测辞耻诲别蝉丑别苍锄丑颈驳补苍驳肠丑颈诲补辞丑辞苍驳濒颈箩颈耻锄辞耻虫颈补苍驳濒颈补辞"尘颈别飞补苍驳"。

苏(厂耻)霍(贬耻辞)伊(驰颈)超(颁丑补辞)级(闯颈)100喷(笔别苍)气(蚕颈)式(厂丑颈)飞(贵别颈)机(闯颈)是(厂丑颈)由(驰辞耻)俄(贰)罗(尝耻辞)斯(厂颈)苏(厂耻)霍(贬耻辞)伊(驰颈)航(贬补苍驳)空(碍辞苍驳)集(闯颈)团(罢耻补苍)设(厂丑别)计(闯颈)制(窜丑颈)造(窜补辞)的(顿别)一(驰颈)款(碍耻补苍)支(窜丑颈)线(齿颈补苍)客(碍别)机(闯颈)。

他表示,风险在于通胀下降可能是只是短暂的,“这个风险要大于我认为美联储认为的水平”。这些年来释智定究竟都干了些什么?她又是如何从一个无权无势的小尼姑,混成了横行香港的大姐大?【我心优优】最最最最清纯の优优,——早乙女ルイ - 哔哩哔哩

06 首先街亭不是什么沃野千里的地方只是一个山谷不会有有大量人口自然也不会有什么坚城其次街亭在魏占区内就是真有什么坚城马谡更加拿不下来

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