Abstract:
The present technology provides an illustrative apparatus for recycling electric arc furnace (EAF) dust and method of use related to the same. The apparatus has a heat controlling region coupled to a separation volume and includes at least one magnet and a cooling region. The heating controlling region operates at a temperature sufficient to transform at least some of the EAF dust into a mixture of gaseous zinc and one or more additional metals. The magnet separates the iron-rich material from the mixture of gaseous zinc and one or more additional metals and the cooling region condenses the gaseous zinc.
Abstract:
A memory request initiates access to a memory location in the memory. The memory location is evaluated to determine whether the memory location is located within a first portion of the memory or within a second portion of the memory. In response to determining that the memory location is located within the first portion and that the memory request is a read request, the memory location located within the first portion is accessed. In response to determining that the memory request is a write request and the memory location is located within the first portion, the memory location located within the first portion and a duplicate of the memory location is accessed. When the memory location is located within the second portion, the memory location located within the second portion using a redundant array of independent disks (RAID) memory mechanism, in response to the memory request being the write request.
Abstract:
Technologies are generally described for detecting transcoding and adjusting visual content for optimal display on user devices. A content provider may transmit a sample of a visual content to a user device over a service provider network, and may monitor the quality of the sample that the user device receives. The service provider may apply transcoding to the sample during the transmission causing the quality of the sample to be degraded. The content provider may receive a sample as rendered from the user device and may compare the sample as rendered to the visual content to identify a transcoding applied by the service provider network. The content provider may the transcoding to the visual content and may transmit visual content that is transcoded for optimal display over the service provider network to the user device.
Abstract:
Technologies related to sponsor access to incentivized customer account goals are generally described. In some examples, a customer account may include incentivized customer account goals, also referred to herein as “incentivized goals”. Each incentivized goal may include a customer reserve amount controlled by a customer and a sponsor incentive amount. The sponsor incentive amount may be adjusted based on the customer reserve amount according to a sponsor incentive formula or rule. Sponsors may be given limited sponsor level access to financial account information pertaining to their sponsored incentivized goals. A clearinghouse may connect or associate multiple sponsors with multiple customers, including customers with customer accounts at multiple financial institutions.
Abstract:
Technologies are generally described for a system and process effective to coat a substance with graphene. A system may include a first container including graphene oxide and water and a second container including a reducing agent and the substance. A third container may be operative relationship with the first container and the second container. A processor may be in communication with the first, second and third containers. The processor may be configured to control the third container to receive the graphene oxide and water from the first container and to control the third container to receive the reducing agent and the substance from the second container. The processor may be configured to control the third container to mix the graphene oxide, water, reducing agent, and substance under sufficient reaction conditions to produce sufficient graphene to coat the substance with graphene to produce a graphene coated substance.
Abstract:
Disclosed herein are display devices including a flexible electronic display layer that is configured to emit an image. The flexible electronic display layer can, for example, be configured to releasably couple with a flexible supporting layer to increase stiffness of the flexible electronic display layer. Methods of making and using the display devices are also disclosed.
Abstract:
Technologies are generally described to communicatively couple an optical fiber to an optical element using a polymer layer. An optical fiber may be coupled to an optical element, such as an optical waveguide or another optical fiber, using a layer of rewritable photorefractive polymer positioned between the optical fiber and the optical element. Light from a light source may be applied to the optical fiber to initiate a transient photorefractive effect in the polymer layer facilitating corrections of misalignment. A path of high refractive index may be formed in the polymer layer, where the path of high refractive index communicatively couples the optical fiber to the optical element reducing alignment concerns and increasing alignment tolerances of optical elements. In some examples, the path of high refractive index may be re-established by rewriting the polymer layer through another application of light from the light source if the communicative coupling is disrupted.
Abstract:
Optical modulators, one or more components of various optical modulators, and methods of forming optical modulators and/or one or more components are disclosed. A substrate may be provided and a precursor material may be applied to the substrate with a micro-contact printing stamp. The precursor material may be cured on the substrate and the waveguide may be formed into a micro-ring resonator. The micro-contact printing stamp may be configured to create a waveguide on the substrate.
Abstract:
Technologies are generally described for systems, methods and devices effective to remove information from a network such as the Internet. In some examples, a device may include a memory including instructions and a processor configured in communication with the memory. The processor may be configured effective to receive user information relating to a user and search the network using the user information. In response to the search, the processor may find additional information relating to the user stored in the network. The processor may receive a first request to remove particular information from the network. The particular information may be part of the additional information and the particular information may be removable by a second user. The processor may send a second request to remove the particular information from the network.