纤维锂离子电池(FLIBS)对可穿戴电子设备供电。但是,它们的实际应用受到有限的周期和日历寿命的阻碍,这主要是由于通过封装层渗透而导致的活跃LI损失。为了应对这一挑战,将低渗透性和高灵性四氟乙二醇六烷基共聚物共聚物(FEP)管提出,以通过熔化挤出法连续封装FLIB。由于氟氨酸树脂的固有疏水性和聚合物基质的适当结晶度,FEP管表现出明显低的蒸气渗透性,水蒸气透射率(WVTR)为0.3 mg·day -day -day -day -1·Pkg - 1·PK -PK -PK -1,15倍(4. 3倍)(4.6)。 1·PKG - 1)。Leveraging the low permeability and elastic modulus of FEP tubes, FLIBs demonstrate a capacity retention of 80.05% after 180 cycles and exceptional flexibility with a capacity retention of 98.32% after 10 000 bending cycles, showcasing superior performance compared to the conventional polymer tubes (for example, the capacity of PP-FLIBs declined by 20.68% after 30周期)。这项工作提出了一种一般且有效的策略,用于连续封装FLIB,有效地延长了FLIB的循环和日历寿命,从而增强了其可穿戴电子应用的实际生存能力。
办公室:联系信息:咨询时间:课程前提条件,共同条件,共同融合和/或跨上市课程:(入学心理学(EDS)或教育心理学(PHD)计划和EPS580。课程目的:本课程概述了人类发展和行为的神经机制。审查了神经科学的核心成分,包括历史,发育,解剖学,生理学,药理学,研究,评估和治疗。心理结构包括语言,学习和记忆,情感,空间行为,注意力和意识。与大脑可塑性的作用一起检查了脑损伤和发育,神经系统和精神疾病。Course Student Learning Outcomes: Expected outcomes of this course are that you will be able to (a) demonstrate an introductory graduate-level understanding of brain development, anatomy, organization, and function (b) integrate psychological concepts with physiology and neuroscience, (c) articulate the current ethical, theoretical, and philosophical issues and the most important questions in the field of neuroscience, (d) identify the physiological components of behavior, (e)开发有关神经心理学教育,评估和治疗的学术,社区和互联网资源的工具箱。教科书和所需材料所需的文本:Kolb,B。和Wishaw,I。(2015)。人类神经心理学的基本原理(第7版)。纽约,纽约:值得。(ISBN-10:1-4292-8295-9; SBN-13:978-1-4292-8295-6)必需材料:
表达,性取向,国籍,遗传学,残疾,年龄或退伍军人身份。Rihousing努力确保所有在罗德岛生活或工作的人都能负担一个满足他们需求的健康,有吸引力的家。一个好的家为个人和家庭蓬勃发展,孩子学习和成长以及社区繁荣的基础。为了实现我们的使命:•提供竞争性和创新性的单一家庭和多家庭贷款计划。•向消费者和其他人提供相关的住房教育。•建立健康,充满活力的社区的财务发展。•向最需要的罗德岛岛民投资住房赠款和补贴。Rihousing利用其资源提供低息贷款和赠款,以帮助罗德岛人找到,出租,购买,建造和保留一个好的家。由大会于1973年创建,Rihousing是一家私人资助的公共目的公司。RIHousing requires its employees to be highly motivated and knowledgeable, have a sound understanding of the changing needs of Rhode Island's housing market, be willing to work within and toward a smoothly integrated operation, demonstrate a commitment to serve the people of Rhode Island, especially those with low and moderate incomes in need of safe and affordable homes, and possess a high level of integrity and a deep respect for all Rhode Islanders, including customers, partners and fellow employees.
cERH 2 AS 2是一个多相超导体,t c = 0.26 k。两个超导(SC)阶段SC1和SC2观察到的磁场h平行于与四方单位细胞的C轴平行于t型型单位电池的C轴,已解释为偶数和奇数SC状态,在quant-Parity SC状态下,在一个可能的rash iS sy-0 rash y rash sy-0 rash y rash中分离为µ 0。位于全球中心对称晶格的局部非中心对称环境中的CE站点的自旋轨道耦合。在温度t0≈0.4k以下的另一个有序状态(I阶段I)的存在表明H ∗过渡的替代解释:它分离了混合的SC+I(SC1)和纯SC(SC2)状态。Here, we present a detailed study of higher quality single crystals of CeRh 2 As 2 , showing much sharper signatures at T c = 0.31 K and T 0 = 0.48 K. We refine the T - H phase diagram of CeRh 2 As 2 and demonstrate that T 0 ( H ) and T c ( H ) lines meet at µ 0 H ≈ 6 T, well above H ∗ , implying no influence of Phase I on the SC phase switching.与金茨堡 - 陆理论的基本分析表明,这两个顺序之间的竞争较弱。
Effective Option for Patients with Type 2 Diabetes Marlborough, MA – January 8, 2024 – TheracosBio today announced the publication of a meta-analysis that confirms the cardiovascular safety profile of BRENZAVVY® (bexagliflozin), an FDA-approved oral sodium-glucose cotransporter 2 (SGLT2) inhibitor indicated as an adjunct to diet和运动以改善2型糖尿病成年人的血糖控制。这项研究发表在糖尿病,肥胖和代谢上,详细介绍了对9阶段2和3研究的预先指定分析的结果,用于获得Brenzavvy的FDA批准。这项研究有能力确定FDA指定的安全性幅度,并且重大不良心血管事件(MACE)的点估计值大大低于用于计划目的的1.00的值,因此批准前计划还满足了批准后安全性的要求。尽管荟萃分析没有将Brenzavvy与班级其他药物进行比较,但心血管的发现与其他SGLT抑制剂试验报告的发现是一致的。“These data clearly demonstrate that long-term use of BRENZAVVY, even in patients at high risk for future cardiovascular disease, does not increase CV risk and should give physicians confidence in the overall safety profile of BRENZAVVY,” said Mason W. Freeman, MD, Professor of Medicine at Harvard Medical School and Director of the Translational Medicine Group at Massachusetts General Hospital, who was one of the study's authors.“我们小组在MGH负责的整个Brenzavvy计划中重大不良心血管事件的危险比的点估计值类似于
手性D波超导性。手性超导体由超导顺序参数和相关拓扑保护的手性手性边缘模式设置的有限的Chern号码。然而,边缘模式产生的手性边缘电流和轨道角动量(OAM)并非受到拓扑保护,因此需要另一种更健壮的实验探测器,以促进手掌D-波超导体的实验性验证。我们最近显示了手性D-波超导体中四倍定量的无芯涡旋(CVS)的外观,由封闭的域壁组成,该壁壁上装饰了八个分数涡流,并产生了Chern数量,手柄和超管配对对称性对称对称性的烟熏枪标志Holmvall和A. M. Black-Schaffer,物理学。修订版b 108,L100506(2023)]。特别是,CV自发地破坏了轴向对称性的平行性手性和涡度,并直接出现在局部密度(LDOS)中,可通过扫描隧道光谱(STS)测量。In this paper, we first demonstrate a strong tunability of the CV size and shape directly reflected in the LDOS and then show that the LDOS signature is robust in the presence of regular Abrikosov vortices, strong confinement, system and normal-state anisotropy, different Fermi surfaces (FSs), nondegenerate order parameters, and even nonmagnetic impurities.总而言之,我们的论文将CVS视为手性D波超导性的可调且可靠的标志。
类似大脑的智力将人类引入了感知互联网(IOP)的时代,在这里,许多传感节点生成的大量数据对传输带宽和计算硬件构成了显着的挑战。最近提出的近传感器计算体系结构是一种有效的解决方案,可减少数据处理延迟和能耗。但是,具有多功能近传感器图像处理功能的创新硬件的紧迫需求。在这项工作中,开发了基于莫特的材料(二氧化钒)基于近红外的光热探测器,它们具有电极依赖性和可调的超线性光响应(指数𝜶> 33),具有超导MIA的偏置。These devices demonstrate an opto-thermo-electro-coupled phase transition, resulting in a large photocurrent on/offratio ( > 10 5 ), high responsivity ( ≈ 500 A W − 1 ), and well detectivity ( ≈ 3.9 × 10 12 Jones), all while maintaining rapid response speeds ( 𝝉 r = 2 μ s and 𝝉 d = 5 μ s) under the bias of 1 V. This发现电极依赖性的超线性响应是由通过Seebeck系数的极性确定的电子掺杂效应产生的。此外,该工作还展示了强度选择性的近传感器处理和夜视模式重组,即使有嘈杂的输入。这项工作为开发具有医疗图像预处理,灵活的电子设备和智能边缘传感的近传感器设备的方式铺平了道路。
学生将展示其职位所需的适当社交和情感技能。以下问责标准对于任何学习课程的学生都至关重要。1. 展示自我意识(例如独立性、自我意识和自我倡导。)2. 展示创造力(例如富有想象力、发明能力、发散性和足智多谋。)3. 展示解决问题的能力(例如调查员、研究人员和决策者。)4. 展示正直(例如公平、乐于助人、负责和勇敢。)5. 展示动机(例如自我激励、协作、专注和有目的性。)6. 展示沟通技巧(例如表达能力、说服力、观众意识。)7. 展示信息和媒体素养(例如研究人员、分析师。)8. 展示职业意识(例如积极主动、有事业心、与职业相关。)
原代人滋养细胞(TSC)和来自人类多能干细胞(HPSC)的TSC可以在体外对胎盘过程进行模拟。然而,HPSC与TSC的分化涉及的多能状态和因素对TSC的分化知之甚少。In this study, we demonstrate that the primed pluripotent state can generate TSCs by activating pathways such as Epidermal Growth Factor (EGF) and Wingless-related integration site (WNT), and by suppressing tumor growth factor beta (TGFβ), histone deacetylases (HDAC), and Rho-associated protein kinase (ROCK) signaling pathways, all without the addition of exogenous骨形态发生蛋白4(BMP4) - 我们称为TS条件的条件。我们使用时间单细胞RNA测序表征了此过程,以将TS条件与单独使用BMP4激活或与Wnt抑制结合使用的分化方案进行比较。TS条件始终产生一种稳定的增殖细胞类型,该类型紧密模仿了头三年的胎盘细胞增多质细胞,以内源性逆转录病毒基因的激活和缺乏羊膜表达为标志。这是在多个细胞系中观察到的,包括各种引发诱导的多能干细胞(IPSC)和胚胎干细胞(ESC)系。启动衍生的TSC可以在30多个通道中增殖,并进一步指定为多核合胞素粒细胞和跨性滋养细胞细胞。我们的研究表明,在TS条件下,引发HPSC与TSC的分化触发了TMSB4X,BMP5/7,GATA3和TFAP2A的诱导,而无需通过幼稚的
discussion. To prepare for these discussions, you need to read the case beforehand (which I will remind you to do as we go). Cases hinge critically on students having read in advance, so to get a sense of whether students have read the cases, we will typically start with some basic ‘reading check' questions about the case content. I plan for these checks to be informal, but if I get the sense that students are not reading the cases ahead of time, I reserve the right to institute more formal “case quizzes.” HOMEWORK In addition to reading the cases and coming prepared for class discussions, your primary homework in this course will be competing in the MarkStrat simulation (see below). Specifically, you and your teammates will be required to submit seven weekly “decisions” about how to manage a simulated suite of products in a competitive market, competing against your classmates. These decisions will include what products to develop and bring to market, how to advertise them, where to sell them, and what market research to procure for future periods. Decisions will typically be due on Tuesdays and we will discuss the results of them—which impact your grade—weekly in class on Wednesdays. As you will see, the simulation cannot accept late decisions by design. In addition to these seven decisions, you will be asked to complete a short (~5ish) paper assignment as a team to demonstrate your mastery of the simulation at the end of the semester. MARKSTRAT (GROUP WORK) As indicated, the central assignment in this class is a team-based simulation, MarkStrat. You will be assigned by me to teams of 4-5 students and you will need to find time to work together (either