低资源环境中的高血压和糖尿病。全球卫生行动 2018;11 (1): 1517930。4. Yuen L、Wong V。妊娠期糖尿病:不同族群面临的挑战。世界糖尿病杂志 2015;6:1024-1032。5. Wan C、Teede H、Nankervis A、Aroni R。妊娠期糖尿病饮食管理的种族差异:一项比较华裔移民和澳大利亚女性的混合方法研究。营养科学院饮食杂志 2020;120:86-102。6. Carolan-Olah M、Steele C、Krenzin G。为多族裔妊娠期糖尿病女性开发和初步测试妊娠期糖尿病信息网站。BMC 妊娠分娩 2015; 15 : 145。7. Varnfield M、Redd C、Stoney R 等人。M ♡ THer,一种支持妊娠期糖尿病女性的移动医疗系统:可行性和可接受性研究。糖尿病技术治疗 2021;23 (5):358–366。8. 科特。2022 年引领变革的 8 个步骤 [2022 年 8 月 16 日访问]。网址为:https://www.kotterinc.com/metho dology/8-steps/。9. Joseph F、Hyett J、Schluter P 等人。新的澳大利亚出生体重百分位数。MJA 2020;213 (2):79–85。10. 悉尼大学。妇女和婴儿研究:每周都很重要,2022 年;[2022 年 8 月 16 日访问]。网址:https://everyweekcounts.com.au。11. Cao J、Xu W、Liu Y 等。母亲年龄趋势以及高龄与不良妊娠结局的关系:2010-2017 年中国武汉市基于人群的登记研究。公共卫生 2022;206:8-14。
目标:与其他能源相比,通过向该地区的居民实施新服务,可以增加大都市地区的最终使用。时间范围:2030年野心的背景:智利大都市地区是该国一半居民的故乡(约820万),占国家温室气体(GHG)排放量的19.2%。根据最新的可用数字(2018年)排放的21,867 kt二氧化碳主要对应于政府,商业和住宅建筑(32%)中发电和热源的陆地运输(41%)和燃料燃烧。Currently, each residential electricity customer in the Metropolitan Region consumes 197 kWh per month on average (according to CNE Open Energy figures) and the per capita consumption of liquefied gas is 23.48 kg/month, which highlights the space that exists to electrify the consumption of the second energy source, thus reducing both GHG emissions and intra-domiciliary pollution, which has beneficial effects on other aspects of people's lives (主要是减少呼吸系统疾病的发生)。有机会向城市中的新用途开放电能,以减少排放,同时提供直接通过电动性和用电动空调设备更换燃木炉灶来使居民生活质量的服务。这涉及增加区域公共交通舰队中电动巴士的份额(目前为26%);增加电动汽车的充电基础设施(目前为81
我们已尽一切努力使本目录的内容尽可能准确。出版商不能保证其提供的所有信息的正确性,也不保证完全没有错误或遗漏或存在无意的包含;因此,我们对此不承担任何责任。如果您的列表中有误,我们希望您联系 Metropolitan Publishing Co., Inc.,以便进行更正。“此处包含的列表由 Metropolitan Publishing Co. Inc. 从我们覆盖范围内各电话公司 2013 年版权汇编中转录而成,未经这些电话公司的同意,不得以任何形式全部或部分复制。本电话簿用于在白页列表覆盖的地区流通和分发。本书的全部内容均为 Metropolitan Publishing Co., Inc. 的独家财产,未经 Metropolitan Publishing Co., Inc. 书面同意,任何个人或公司现在或将来均不得为了推广目录或其他商业活动而全部或部分地使用或复制本书。
成为合作伙伴关系的平台是我们在基金会所做的工作的核心,因此我们继续与UCT,SAMRC,Dis-Chem Foundation,Momentum Metropolitan,Road Metropolitan,Road Castion Fund以及Bill and Melinda Gates Foundation(BMGF)等合作伙伴互动。我们与这些合作伙伴的可见治理的实力激发了与其他实体的兴趣,以与健康基金会互动。我们的新合作伙伴中有Saveseven(Stellenbosch大学附属),国际牙科研究协会(IADR)(UWC附属)和急诊医学开普敦(EMCT)(UCT隶属)。自上次年度股东大会以来,我可以报告以下要点:
在基于SESAM的模式模式锁定的半导体激光Yu-Hsin Hsu Hsu(国家Yang-Ming Chiao Tung University)的谐波模式锁定中,谐波模式锁定的动态演变谐波模式锁定的动态演变 and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)谐波模式锁定的动态演变 and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)
南加州都会水务区 (Metropolitan) 的核心使命是为南加州提供清洁、可靠的水源。不断变化的气候条件、多变的降水模式、水源供应、消费者需求的变化以及海平面上升将改变都会水务区提供服务的方式以及其运营区域供水系统的方式。都会水务区认识到气候变化对水源供应的潜在影响,并致力于环境管理以保护这一宝贵资源。减少温室气体 (GHG) 排放是保护加州和该地区免受气候变化影响的重要一步。减少都会水务区运营产生的温室气体排放有助于实现加州的总体温室气体减排目标。本气候行动计划 (CAP) 设定了减少都会水务区运营产生的温室气体排放的目标,包括向其 26 个成员水务机构输送、储存、处理和输送水。此外,本 CAP 补充了都会水务区现有的长期规划工作,包括综合水资源计划、能源可持续性计划和资本投资计划。通过实施本 CAP,大都会将加强对环境可持续性的承诺,提高其运营的弹性,并战略性地实现温室气体减排目标。有关本 CAP 的目的以及大都会的历史和现有运营的更多详细信息,请参阅第 1.0 节“目的、概述”和“环境历史和领导力”。
根据 1976 年《大都会土地规划法》及其后续所有修正案,芒德市必须完成并更新综合规划。《大都会土地规划法》 (MLPA) 解决了双城大都会区内地方政府单位的相互依赖问题,并要求采用协调的规划和方案。在制定规划时,规划机构必须与其他市政府机构、邻近社区、学区和县合作,以确保协调的区域规划。MLPA 还要求大都会委员会为大都会区制定全面的发展指南。
• Office of State Planning Coordination • Metropolitan Wilmington Urban League • Delaware Hispanic Commission • La Esperanza • First State Community Action Agency • Latin American Community Center • League of Women Voters • Interfaith Power and Light • Healthy Communities Delaware • Boys and Girls Club of Delaware • Route 9 Coalition • NAACP Delaware • Delaware Concerned Residents for