Abstract:
A system and method consistent with the present disclosure includes collecting a plurality of information associated with components sold by a plurality of vendors. In response from a requester requesting component recommendations from a system and method consistent with the present disclosure, retrieving the collected component information of the components relevant to the request. Finally, communicating the retrieved component information as component recommendations to the requester.
Abstract:
A method, apparatus, and system for a solar-driven chemical reactor are disclosed, including a solar thermal receiver aligned to absorb concentrated solar energy. Some embodiments include a solar driven chemical reactor that has multiple reactor tubes. Some embodiments include one of 1) one or more apertures open to an atmosphere of the Earth or 2) one or more windows, to pass the concentrated solar energy into the solar thermal receiver. This energy impinges on the multiple reactor tubes and cavity walls of the receiver and transfer energy by solar radiation absorption and heat radiation, convection, and conduction. In this way, the energy causes reacting particles to drive the endothermic chemical reaction flowing in the reactor tubes. The design of the multiple reactor tubes and solar thermal receiver can be adapted per a solar flux profile to take advantage of variations in the concentrations of solar flux in the profile.
Abstract:
In one embodiment, there is disclosed a surgical instrument for the dissection of bone or other tissue, the surgical instrument including a tool having a shaft with a dissection area disposed adjacent a distal end and a coupling area disposed adjacent a proximal end; a coupling assembly configured for coupling to a power output of a motor to said coupling area of said tool; and an angled attachment tube positionable along at least a portion of said shaft and substantially supporting a portion of said shaft disposed adjacent said dissection area.
Abstract:
Methods and systems for enhanced advertising display and consumer purchase requests in an interactive environment are disclosed. According to one embodiment, a computer-implemented method, comprises providing wrap code to a first entity connected to an electronic commerce network. A gadget is provided to the first entity. A request for content from a second entity connected to the electronic commerce network is received when the second entity activates the gadget. The content is transmitted to the second entity.
Abstract:
In a preferred embodiment, a can dispenser, including: a housing with a base unit and one or more stacking units removably disposed on the base unit, the base unit and the one or more stacking units defining together a plurality of vertical, arcuate, can-containing channels therein; edges of the vertical, arcuate, can-containing channels in the base unit extending to less than diameters of cans in the vertical, arcuate, can-containing channels so that the cans can be removed therefrom; and edges of the vertical, arcuate, can-containing channels in the one or more stacking units extending past diameters of cans in the vertical, arcuate, can-containing channels to hold the cans in place therein.
Abstract:
The present invention discloses an irrigation system comprising a plurality of valve stations that are operatively coupled with a controller operative to control the operation of the plurality of valve stations. The valve stations are grouped into a plurality of valve station groups, each group comprising at least two valve stations. The at least two valve stations are operatively coupled in parallel with a hotwire to a respective output port of the controller; and the at least two valve stations respective of the plurality of valve station groups are operatively coupled in parallel with a common wire to a corresponding input port of the controller. The controller is operative to change the operational mode of a selected one of the valve stations.
Abstract:
A method for molding a chalcogenide glass lens includes providing a mold. A preformed lens of chalcogenide glass is placed within the mold. The lens has a top surface and a bottom surface. An amount of chalcogenide glass is deposited within the mold and on the top surface of the preformed lens. The mold is heated, such that the chalcogenide glass on the top surface of the preformed lens softens, melts, and bonds to the top surface of the preformed lens. A lens surface is formed in the melted chalcogenide glass to form a molded lens which is bonded to the top surface of the preformed lens. The molded lens and preformed lens assembly is then removed from the mold.