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    • 1. 发明授权
    • Poker game using tossed balls
    • 扑克游戏使用抛掷球
    • US06568677B2
    • 2003-05-27
    • US09916899
    • 2001-07-26
    • Max Brenner
    • Max Brenner
    • A63B7100
    • A63F7/048A63F3/00157A63F5/00A63F2001/005
    • A poker game using a playing surface for placing wagers that correspond to player selected poker hands. A plurality of balls are tossed into a hopper that directs the tossed balls to a surface that has a plurality of card positions. Each of the card positions are adapted to receive and retain a tossed ball and represent the playing cards of a poker deck and a joker. The card positions indicate cards that are selected by operation of the players tossing balls into the hopper and having the tossed balls being retained in the card positions.
    • 一个扑克游戏使用一个播放表面放置对应于玩家选择的扑克牌的赌注。 多个球被投掷到料斗中,该料斗将抛掷的球引导到具有多个卡位置的表面。 每个卡片位置适于接收和保留抛掷的球,并代表扑克牌和玩家的扑克牌。 卡片位置表示通过玩家的操作将球掷入料斗中并且将抛掷的球保持在卡位置中的卡片。
    • 5. 发明授权
    • Separating process
    • 分离过程
    • US4698159A
    • 1987-10-06
    • US767253
    • 1985-08-20
    • Max Brenner
    • Max Brenner
    • B01D11/04
    • B01D11/0484
    • The feed mixture, from which a required substance is to be isolated, is introduced centrally into a chamber unit rotating about its axis and having two non-miscible phases flowing through it in countercurrent. Monitors responding to the substance are disposed at the two ends of the chamber unit and continuously detect the concentration of the substance and signal the measurements to a control system. By way of various valves and pumps this system controls the flow ratio of the two phases in such a manner that the concentration of the substance at one end of the unit, with respect to the corresponding concentration at the other end of the unit, remains within very low predetermined limits (e.g. 1%), so that practically the entire substance can be removed as an eluate with one of the two phases at the other end of the chamber unit (FIG. 1).
    • 将要分离的所需物质的进料混合物中心引入围绕其轴线旋转的室单元,并且具有逆流流过其中的两个不可混溶相。 响应物质的监测器被设置在室单元的两端,并连续地检测物质的浓度并将测量信号发送到控制系统。 通过各种阀和泵,该系统以这样的方式控制两相的流量比,使得在该单元一端的物质的浓度相对于在该单元的另一端的相应浓度保持在 非常低的预定限度(例如1%),使得实际上整个物质可以作为在室单元的另一端的两相之一的洗脱液(图1)去除。