Abstract:
A system including a first transportable element having a first work space; and a second transportable element having a second work space, wherein the first and second work spaces each contain a portion of an equipment, wherein all of the equipment is contained in the first and second work spaces, and wherein the first and second work spaces are alignable with one another at a worksite such that the equipment can perform an assembly operation at the worksite, the assembly operation including performance of at least one step performed in the first work space and at least one step performed in the second work space.
Abstract:
The present application relates to virus control in a network. An illustrative embodiment provides a network including a plurality of processing devices and at least one virus control server configured to quarantine a selected processing device from the network by assigning the selected processing device to a unique quarantine sub-network upon the occurrence of a first quarantine event such that all network traffic to and from the selected device must pass through the virus control server.
Abstract:
The disclosure relates to method and apparatus for geolocation determination. In one embodiment, the disclosure relates to a method for detecting an erroneous satellite measurement by a receiver, including the steps of (a) determining an approximate location of the receiver; (b) for each of a plurality of satellites from which the receiver receives a signal: (i) determining a range difference between an expected range between the receiver and the satellite and a measured range between the receiver and the satellite; (ii) determining a median value of the range differences; (iii) determining an offset value between the range difference and the median value; (iv) comparing the offset value with a predetermined threshold to thereby detect an erroneous satellite measurement.
Abstract:
The disclosure relates to method and apparatus for geolocation determination. In one embodiment, the disclosure relates to a method for detecting an erroneous satellite measurement by a receiver, including the steps of (a) determining an approximate location of the receiver; (b) for each of a plurality of satellites from which the receiver receives a signal: (i) determining a range difference between an expected range between the receiver and the satellite and a measured range between the receiver and the satellite; (ii) determining a median value of the range differences; (iii) determining an offset value between the range difference and the median value; (iv) comparing the offset value with a predetermined threshold to thereby detect an erroneous satellite measurement.
Abstract:
A calixarene dimer of the general formula (I-G), comprising a first calixarene moiety I and a second calixarene moiety G, wherein: L is [—CH2—] or [—O—CH2—O—] and is the same or different between each aryl group; R5 is H, NO2, halogen, or C1-C10 aliphatic hydrocarbyl group, C6-C20 aryl group, C6-C20 hydrocarbylaryl group, any of which is optionally substituted by one or more halo or oxo groups or interrupted by one or more oxo or amide groups, and R5 is the same or different on each aryl group; R1 comprises a carboxy group which is or is not protonated or protected; two groups out of R2, R3 and R4 are H; the one group out of R2, R3 and R4 not being H comprises at least one atom of one or more of O and S, the said at least one atom being capable of causing the calixarene to be adsorbed onto the surface of the substrate; and the one group out of R2, R3 and R4 not being H being conjugated to the second calixarene moiety G. The calixarene dimers may be incorporated into sensors. Methods of making the calixarene dimers are disclosed.
Abstract translation:通式(IG)的杯芳烃二聚体,其包含第一杯芳烃部分I和第二杯芳烃部分G,其中:L是[ - CH 2 - ] - 或[-O-CH 2 -O - ],并且在每个芳基之间相同或不同; R 5是H,NO 2,卤素或C 1 -C 10脂肪族烃基,C 1〜 C 6 -C 20芳基,C 6 -C 20烃基芳基,其中任何一个任选被一个 或更多的卤代或氧代基团或被一个或多个氧代或酰胺基团间隔,并且R 5在每个芳基上相同或不同; R 1包括被质子化或未质子化或保护的羧基; R 2,R 3,R 4和R 4中的两个基团是H; R 2,R 3和R 4不是H的一个基团包含至少一个O和S中的一个或多个的原子 所述至少一个原子能够使杯芳烃吸附在基材的表面上; R 2,R 3和R 4中的一个不是H与第二杯芳烃部分G缀合。杯芳烃二聚体 可以并入传感器。 公开了制备杯芳烃二聚体的方法。
Abstract:
An inflation apparatus is described for a labeling machine for placing labels on containers. A sealing element seals the opening of a container whereby the sealing element covers the opening without substantial insertion of the sealing element into the opening in the container. A wall in the sealing element defines an opening through the sealing element for passing an inflation gas through the sealing element and into the container. A gas supply and conduit are provided for connecting the gas supply to the opening in the sealing element. The invention is particularly suited to in-line labeling machines.
Abstract:
A metal gasket for making a fluid tight sealed joint between opposed parallel surfaces has a radially inward part and a radially outward part each formed with a peripheral groove; also at least one of the end faces of the gasket is formed with annular grooves of substantially rectangular profile in radial planes. Thereby there is provided a compressible yet resilient gasket which can satsifactorily be used to form a fluid tight joint.
Abstract:
A method and apparatus for determining the location of a device from signals provided by a plurality of satellites. A device receives a first plurality of signals comprising one signal from each of a first plurality of satellites and determines a first location of the device as a function of the first plurality of signals. The device then determines a second location thereof as a function of a second plurality of signals if the first location is not within a predetermined threshold. The second plurality of signals is a first subset of the first plurality of signals.
Abstract:
The disclosure relates to method and apparatus for geolocation determination. In one embodiment, the disclosure relates to a method for detecting an erroneous satellite measurement by a receiver, including the steps of (a) determining an approximate location of the receiver; (b) for each of a plurality of satellites from which the receiver receives a signal: (i) determining a range difference between an expected range between the receiver and the satellite and a measured range between the receiver and the satellite; (ii) determining a median value of the range differences; (iii) determining an offset value between the range difference and the median value; (iv) comparing the offset value with a predetermined threshold to thereby detect an erroneous satellite measurement.
Abstract:
A method and apparatus for determining the location of a device from signals provided by a plurality of satellites. A device receives a first plurality of signals comprising one signal from each of a first plurality of satellites and determines a first location of the device as a function of the first plurality of signals. The device then determines a second location thereof as a function of a second plurality of signals if the first location is not within a predetermined threshold. The second plurality of signals is a first subset of the first plurality of signals.