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    • 6. 发明申请
    • Natural Sunscreen Composition
    • 天然防晒组合物
    • US20130243709A1
    • 2013-09-19
    • US13795305
    • 2013-03-12
    • James E. HansonCosimo Antonacci
    • James E. HansonCosimo Antonacci
    • A61K8/97A61Q17/04
    • A61K8/97A61Q17/04
    • A composition for sunscreen or sunscreen enhancer is disclosed. The composition includes UV-blocking component comprising natural extracts, natural oils or nutrients or a combination of these. The composition is capable of protecting skin from the harmful effects of UV-light and it is capable of acting as an enhancer of sunscreen actives, such as zinc oxide, titanium dioxide or other sunscreen actives, such as Avobenzone, Dioxybenzone, Ecamsule, Meradimate, Oxybenzone, Sulisobenzone, Cinoxate, Ensulizole, Homosalate, Octinoxate, Octisalate, Octocrylene PABA, Padimate O or Trolamine salicylate.
    • 公开了防晒霜或防晒增强剂的组合物。 该组合物包括包含天然提取物,天然油或营养物或它们的组合的UV阻断组分。 该组合物能够保护皮肤免受紫外线的有害影响,并且能够作为防晒活性物质的增强剂,例如氧化锌,二氧化钛或其它防晒活性物质,例如阿伏苯宗,二氧苯酮,生长素, 羟基苯酮,磺基苯酮,亚油酸,Ensulizole,均酸盐,Octinoxate,Octisalate,Octocrylene PABA,Padimate O或三水杨酸盐。
    • 9. 发明申请
    • SAVING POWER BY MANAGING THE STATE OF INACTIVE COMPUTING DEVICES
    • 通过管理不活动计算设备的状态来节省电力
    • US20120117399A1
    • 2012-05-10
    • US12939635
    • 2010-11-04
    • Hoi Y. ChanRajarshi DasJames E. HansonCanturk IsciJeffrey O. KephartDavid W. Levine
    • Hoi Y. ChanRajarshi DasJames E. HansonCanturk IsciJeffrey O. KephartDavid W. Levine
    • G06F1/00
    • G06F1/3234G06F1/3206G06F1/3209G06F1/3287G06F1/329G06F9/5094H04L67/00Y02D10/171Y02D10/22Y02D10/24
    • A system method and computer program product for managing readiness states of a plurality of computing devices. A programmed processor unit operates, upon receipt of a request, to either: provide one or more computing devices from an inactive pool to an active pool, or accept one or more active computing devices into the inactive pool. An Inactive Pool Manager proactively manages the inactive states of each computing device by: determining the desired number (and identities) of computing devices to be placed in each inactive state of readiness by solving a constraint optimization problem that describes a user-specified trade-off between expected readiness (estimated time to be able to activate computing devices when they are needed next) and conserving energy; generating a plan for changing the current set of inactive states to the desired set; and, executing the plan. Multiple alternative ways of quantifying the desired responsiveness to surges in demand are provided, and, in each case, the tradeoff between responsiveness and power savings is formulated as an objective function with constraints, and the desired number of devices in each inactive state emerges as the solution to a constraint optimization problem.
    • 一种用于管理多个计算设备的准备状态的系统方法和计算机程序产品。 编程处理器单元在接收到请求时操作:将一个或多个计算设备从非活动池提供到活动池,或接受一个或多个活动计算设备进入非活动池。 非活动池管理器通过以下方式主动管理每个计算设备的不活动状态:通过解决描述用户指定的权衡的约束优化问题来确定要置于每个无效状态的计算设备的期望数量(和身份) 在预期的准备状态(估计需要下一步需要激活计算设备的时间)并节约能源; 生成将当前的无效状态集合改变为所需集合的计划; 并执行该计划。 提供了量化需求浪涌的期望响应性的多种替代方法,并且在每种情况下,响应性和功率节省之间的折衷被形成为具有约束的目标函数,并且在每个非活动状态期间的期望数量的设备出现为 解决约束优化问题。
    • 10. 发明申请
    • METHOD FOR MINIMIZING RISKS OF CHANGE IN A PHYSICAL SYSTEM CONFIGURATION
    • 在物理系统配置中最小化风险变化的方法
    • US20090031302A1
    • 2009-01-29
    • US11782378
    • 2007-07-24
    • Mandis S. BeigiJames E. HansonParviz KermaniDinesh C. Verma
    • Mandis S. BeigiJames E. HansonParviz KermaniDinesh C. Verma
    • G06F9/455
    • G06F9/5077G06F11/261
    • Risks of change to a physical configuration are minimized. A request for a change to the physical system included in the physical configuration is detected, and all applications the physical systems that would be affected by the requested change are identified. All the applications and physical systems that would be affected by the requested change are replicated on a virtual system, including applications and the physical system to which the requested change is targeted and applications and physical systems that are dependent on the applications and the physical system to which the requested change is targeted. The requested change is applied to the virtual system. The virtual system is tested to determine whether the applied change produces desired results. If the applied change products the desired results, the requested change is applied to the physical system.
    • 物理配置发生变化的风险最小化。 检测到对物理配置中包括的物理系统的更改的请求,并且识别将被所请求的改变影响的物理系统的所有应用。 受要求更改影响的所有应用程序和物理系统都将复制在虚拟系统上,包括应用程序和所请求的更改所针对的物理系统以及依赖于应用程序和物理系统的应用程序和物理系统 所要求的更改是针对性的。 请求的更改应用于虚拟系统。 测试虚拟系统以确定应用的更改是否产生所需的结果。 如果应用的更改产生了所需的结果,则请求的更改将应用​​于物理系统。