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    • 2. 发明申请
    • CONTINUALLY SPIRALING CEREAL BOWL
    • 连续螺旋谷
    • US20110141842A1
    • 2011-06-16
    • US12636728
    • 2009-12-12
    • Michael L. Roberts
    • Michael L. Roberts
    • B01F13/00
    • A47G19/02A47G2400/062
    • A particular continuous downward spiraling cereal bowl is disclosed which allows for exceptional control over a mixing process by keeping dry substances separated from liquids until mixed in user defined portions and timeframes. The disclosure comprises a slightly asymmetrically round bowl consisting of two contiguous areas with an inner surface that continually slopes downward between the two areas and an S-shaped guide rail between these two areas. The shape of the guide rail is curved in order to hold cereal in the upper part of the spiral at a level above the fill line of liquid held in the lower portion of the spiral. In the preferred embodiment, the bowl further comprises a thumb groove underneath the inner surface of the dry area which may serve as an embedded handle.
    • 公开了特定的连续向下旋转的谷物碗,其允许通过将干燥物质与液体分离直到混合在用户限定的部分和时间框架内而混合过程的异常控制。 本公开内容包括由两个连续区域组成的略微不对称的圆形碗,其中内表面在两个区域之间连续地向下倾斜,在这两个区域之间形成S形导轨。 导轨的形状是弯曲的,以便将谷物保持在螺旋形的上部,位于保持在螺旋下部的液体的填充线的上方。 在优选实施例中,碗还包括可以用作嵌入式手柄的干燥区域的内表面下方的拇指槽。
    • 3. 发明申请
    • Parallelized, Incremental Garbage Collector
    • 并联,增量垃圾收集器
    • US20110004641A1
    • 2011-01-06
    • US12497427
    • 2009-07-02
    • Michael L. Roberts
    • Michael L. Roberts
    • G06F12/00G06F9/46
    • G06F12/0269
    • A method for garbage collection in which resources used by data objects in a computer program that are not accessed in the future are reclaimed, the method consists of the following steps of 1. Providing a tracing garbage collector which is both parallelized and incremental; 2. Integrating the collector with the computer program to create the mutator; 3. Instructing the mutator to scan and collect resources used by data objects in a computer program that are not accessed in the future simultaneously on all threads in small amounts; and 4. Interleaving the mutator scanning and collection with unrelated processing by the computer program such that all of the threads in the application are never stopped simultaneously for any portion of the collection cycle.
    • 一种垃圾回收方法,其中回收未被访问的计算机程序中的数据对象使用的资源,该方法包括以下步骤:1.提供并行和增量的跟踪垃圾收集器; 将收集器与计算机程序集成以创建变异器; 3.指示变异器扫描和收集计算机程序中的数据对象所使用的资源,这些资源在未来将在所有线程上少量未被访问; 和4.通过计算机程序以不相关的处理方式交织显影剂扫描和收集,使得应用程序中的所有线程在收集循环的任何部分都不会同时停止。
    • 4. 发明授权
    • System and method for creating a new data structure in memory populated
with data from an existing data structure
    • 用于通过现有数据结构中的数据创建内存中的新数据结构的系统和方法
    • US5999938A
    • 1999-12-07
    • US791597
    • 1997-01-31
    • William J. BlissJerry R. Hughson, Jr.Lois E. BauerSuryanarayanan RamanMichael L. RobertsEric HorvitzErich S. Finkelstein
    • William J. BlissJerry R. Hughson, Jr.Lois E. BauerSuryanarayanan RamanMichael L. RobertsEric HorvitzErich S. Finkelstein
    • G06F9/44G06F17/30
    • G06F9/44Y10S707/99943Y10S707/99945
    • A system and method for creating a new destination data structure in memory populated with data from fields of an existing source data structure. A representation of the source is selected, dragged over, and dropped onto an icon representing a program module. The source and the program module are each associated with a type of data structure. If these types of data structures are different, then the destination is created in memory of the type associated with the program module. Once the destination is created, the data within the source is transformed to populate predetermined fields of the destination. One way of populating the destination is by determining which field in the destination corresponds to a given field in the source. Data from a given field of the source is loaded into the corresponding field of the destination. This is performed for each of the fields in the source, thus transferring the data into the destination from the source without having to manually re-enter or perform successive copy and paste operations on the data in the fields of the destination. Another way of populating the destination is by formatting data from each of the printable fields of the source into a predetermined rich text format to yield a formatted version of the source as if the source were being printed in one of the fields of the destination. The formatted data is then loaded into the field of the destination.
    • 一种用于使用来自现有源数据结构的字段的数据填充的内存中创建新的目的地数据结构的系统和方法。 源的表示被选择,拖动并放在表示程序模块的图标上。 源和程序模块都与一种数据结构相关联。 如果这些类型的数据结构不同,则在与程序模块相关联的类型的存储器中创建目的地。 创建目的地后,将转换源中的数据以填充目标的预定字段。 填充目的地的一种方法是通过确定目的地中的哪个字段对应于源中的给定字段。 来自源的给定字段的数据被加载到目的地的相应字段中。 这对源中的每个字段执行,从而将数据从源传输到目的地,而无需手动重新输入或对目的地的字段中的数据执行连续的复制和粘贴操作。 填充目的地的另一种方式是将来自源的每个可打印字段的数据格式化为预定的富文本格式,以产生源的格式化版本,就好像源正在目的地的一个字段中打印一样。 然后将格式化的数据加载到目的地的字段中。
    • 6. 发明授权
    • Prefabricated watertight structural system
    • US4403980A
    • 1983-09-13
    • US624587
    • 1975-10-22
    • Harold G. SimpsonMichael L. Roberts
    • Harold G. SimpsonMichael L. Roberts
    • E04B7/10E04D3/35E04D3/36E04D3/363E04D3/38E04D13/04E04D3/362E04D1/28
    • E04D3/363E04B7/105E04D3/352E04D3/358E04D3/3601E04D3/38E04D2013/0436
    • A prefabricated panel system which can be erected to form a watertight surface such as the roof or walls of buildings is described. The panels are structurally sufficient to bridge between spaced support beams. Each panel includes a rectangular sheet metal support subpanel having corrugations extending between and bridging the support members. A surface panel assembly comprising a Hypalon membrane intimately bonded to a thin, flat metal sheet by an epoxy adhesive is mounted on the corrugated subpanel by a foamed insulating layer. The corrugated metal panel extends beyond the foam and the surface panel assembly to form a corrugated lip. Hypalon fastener halves are disposed along each edge of the Hypalon sheet on flexible flaps for extending over the joint between adjacent panels and mating with similar fastener halves along edges of adjacent panels to form a watertight mechanical interconnection between the Hypalon membrane on adjacent panels. The top sheet is connected to the corrugated panel along the edges of the panel which extend across the support members to apply a tension force from the opposite edges of the corrugated panel to the opposite edges of the top metal sheet while permitting free two-dimensional motion between the two metal sheets as a result of greater thermal activity of one sheet than the other. The edges of the lower metal sheet are rolled to provide additional strength and extend beyond the edges of the top metal sheet. A foam joint filler is positioned over one rolled edge, and a flexible foam sealing strip is placed along the top of the other rolled edge and across the corrugated lip to form a vapor barrier when the panels are installed. In the assembled system, a plurality of panels are placed in edge-to-edge relationship such that each panel bridges the support members. Self-tapping fasteners then penetrate the joint filler and overlapped rolled edges of adjacent panels to fasten the opposite edges of the panels to the support members. The fastener halves are engaged to provide a continuous waterproof membrane extending across the joint between adjacent panels. Finally the joints at the intersection of four corners, which has a special configuration resulting from the relationship between the ends of mating fastener halves, are sealed to complete the waterproof membrane.
    • 7. 发明授权
    • Safety rail system
    • 安全轨系统
    • US08632056B1
    • 2014-01-21
    • US13303757
    • 2011-11-23
    • Michael L. RobertsJennifer Fritsch
    • Michael L. RobertsJennifer Fritsch
    • E04H17/14
    • E04G21/3219
    • A modular, temporary safety railing system that provides fall restraint protection during masonry wall construction projects includes a plurality of anchoring sleeves which are embedded in wet grout within a hollow cavity of a masonry block onto which posts and rail sections are assembled. The embedded pins receive and secure respective vertical posts via interconnecting locking pins comprising spring pin fasteners. A plurality of top and intermediate rail sections are attached to the vertical posts using connecting hardware designed to adjustable position said rail sections at an offset distance allowing additional courses of block to be added to the wall without interference from said railing system. As construction continues, the vertical posts are detached from the embedded sleeves and reused with newly installed sleeves.
    • 在砖石墙施工项目中提供防坠落保护的模块化临时安全栏杆系统包括多个锚固套筒,其嵌入在砖石块的中空腔内的湿式灌浆中,桩和轨道部分组装在该空心腔中。 嵌入式销通过包括弹簧销紧固件的互连锁定销接收并固定相应的垂直柱。 多个顶部和中间轨道部分使用连接硬件连接到垂直柱上,所述连接硬件被设计成可以在偏移距离处对所述轨道部分进行可调节位置,允许在壁上添加附加的路线,而不会受到所述栏杆系统的干扰。 随着施工的进行,垂直柱与嵌入式套管分离,并重新使用新安装的套筒。
    • 10. 发明授权
    • Spiraling bowl
    • 螺旋碗
    • US08337073B2
    • 2012-12-25
    • US12636728
    • 2009-12-12
    • Michael L. Roberts
    • Michael L. Roberts
    • A47G19/02
    • A47G19/02A47G2400/062
    • A particular continuous downward spiraling cereal bowl is disclosed which allows for exceptional control over a mixing process by keeping dry substances separated from liquids until mixed in user defined portions and timeframes. The disclosure comprises a slightly asymmetrically round bowl consisting of two contiguous areas with an inner surface that continually slopes downward between the two areas and an S-shaped guide rail between these two areas. The shape of the guide rail is curved in order to hold cereal in the upper part of the spiral at a level above the fill line of liquid held in the lower portion of the spiral. In the preferred embodiment, the bowl further comprises a thumb groove underneath the inner surface of the dry area which may serve as an embedded handle.
    • 公开了特定的连续向下旋转的谷物碗,其允许通过将干燥物质与液体分离直到混合在用户限定的部分和时间框架内而混合过程的异常控制。 本公开内容包括由两个连续区域组成的略微不对称的圆形碗,其中内表面在两个区域之间连续地向下倾斜,在这两个区域之间形成S形导轨。 导轨的形状是弯曲的,以便将谷物保持在螺旋形的上部,位于保持在螺旋下部的液体的填充线的上方。 在优选实施例中,碗还包括可以用作嵌入式手柄的干燥区域的内表面下方的拇指槽。