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    • 162. 发明申请
    • CROSS-DEVICE OPERATION USING GESTURES
    • 跨装置操作使用手势
    • US20150172360A1
    • 2015-06-18
    • US13996474
    • 2012-09-27
    • Heyuan LiuGang ChenYunlong HeBin WeiHong Li
    • Heyuan LiuGang ChenYunlong HeBin WeiHong Li
    • H04L29/08G06F3/0484G06F3/0488
    • H04L67/025G06F3/04842G06F3/0488H04L63/104H04L67/06H04W4/21H04W12/00508H04W12/08
    • Systems, storage medium, and methods associated with transfer of content are disclosed herein. In embodiments, a storage medium may have first and second instructions configured to facilitate operation across two computing devices. In embodiments, the first instructions may be configured to enable a source computing device to recognize a sourcing gesture of a user as a command to initiate a cross-device operation, and in response to recognition of the sourcing gesture, generate and transmit a sourcing message to initiate the cross-device operation. The second instructions may be configured to enable the target computing device to recognize a targeting gesture of the user that is complementary to the sourcing gesture, and in response to recognition of the targeting gesture, generate and transmit a targeting message to facilitate completion of the initiated cross-device operation. Other embodiments may be described and/or claimed.
    • 本文公开了与内容传送相关联的系统,存储介质和方法。 在实施例中,存储介质可以具有配置成便于跨两个计算设备进行操作的第一和第二指令。 在实施例中,第一指令可以被配置为使得源计算设备能够将用户的采购手势识别为用于发起跨设备操作的命令,并且响应于对采购手势的识别,生成并发送采购消息 启动跨设备操作。 第二指令可以被配置为使得目标计算设备能够识别与采购手势互补的用户的定向手势,并且响应于对定位手势的识别,生成并发送定向消息以便于完成所发起的 跨设备操作。 可以描述和/或要求保护其他实施例。
    • 168. 发明申请
    • THERMOELECTRIC SKUTTERUDITE COMPOSITIONS AND METHODS FOR PRODUCING THE SAME
    • 热电滑石组合物及其制造方法
    • US20140186209A1
    • 2014-07-03
    • US14197525
    • 2014-03-05
    • Zhifeng RenJian YangXiao YanQinyu HeGang ChenQing Hao
    • Zhifeng RenJian YangXiao YanQinyu HeGang ChenQing Hao
    • H01L35/18
    • H01L35/18
    • Compositions related to skutterudite-based thermoelectric materials are disclosed. Such compositions can result in materials that have enhanced ZT values relative to one or more bulk materials from which the compositions are derived. Thermoelectric materials such as n-type and p-type skutterudites with high thermoelectric figures-of-merit can include materials with filler atoms and/or materials formed by compacting particles (e.g., nanoparticles) into a material with a plurality of grains each having a portion having a skutterudite-based structure. Methods of forming thermoelectric skutterudites, which can include the use of hot press processes to consolidate particles, are also disclosed. The particles to be consolidated can be derived from (e.g., grinded from), skutterudite-based bulk materials, elemental materials, other non-Skutterudite-based materials, or combinations of such materials.
    • 公开了与基于方钴矿的热电材料相关的组合物。 这样的组合物可以产生相对于衍生组合物的一种或多种散装材料具有增强的ZT值的材料。 具有高热电性质的n型和p型方钴矿的热电材料可以包括具有填料原子和/或通过将颗粒(例如纳米颗粒)压实成具有多个颗粒形成的材料的材料,每个颗粒具有 部分具有基于方钴矿的结构。 还公开了形成热电方钴矿的方法,其可以包括使用热压工艺来固结颗粒。 待固结的颗粒可以衍生自(例如研磨),基于方钴矿的散装材料,元素材料,其他非方钴矿基材料或这些材料的组合。