Abstract:
Embodiments described herein provide for gas detectors and methods for their preparation and use. Some embodiments provide for a gas detection film including an insulating base layer, a conducting layer including a plurality of conductive clusters having a known degree of percolation below a percolation threshold; and a non-conductive reactant layer between the insulating base layer and the conducting layer. Some embodiments described in this document also provide for methods of making a gas detection film, methods of detecting a detectable gas, and kit for detecting a detectable gas. In some embodiments, the detectable gas may include mercury vapor, water vapor, formaldehyde or a combination thereof.
Abstract:
Technologies are generally described for generating electrical power from piezoelectric power. Example devices/systems described herein may use one or more of a piezoelectric device, a plurality of solid particles, and/or a container. In various examples, an electrical power generator apparatus is described, where the apparatus may be configured to provide an electrical signal upon application of a mechanical stress to the piezoelectric device. Some example apparatus may also be configured to contain the plurality of solid particles in the container, which may be coupled to at least a portion of a surface of the piezoelectric device. When a mechanical force is exerted on the plurality of solid particles, the plurality of solid particles may be effective to receive at least a portion of the mechanical force and responsively apply the mechanical stress to the piezoelectric device.
Abstract:
A method performed under control of a storage manager may include identifying a subject of an image; determining a resolution value for the image based, at least in part, on the identified subject; and modifying a resolution of the image in accordance with the determined resolution value.
Abstract:
Technologies are generally described for gathering survey response data from consumers by recovering taggants at disposal. Taggants may be incorporated into an on-product survey response label or into a portion of an item by a manufacturer. Prior to disposal, a consumer may remove one or more taggant incorporated survey response labels to indicate a survey response selection. Removal of the labels may also remove the associated taggants. Upon arrival at a disposal entity, the remaining taggants may be separated from the survey response label or item, machine-read, and/or quantified to generate survey response data. The quantified data may then be sent to another entity, such as the manufacturer, a seller, a marketing company, or similar entity.
Abstract:
Technologies are generally described for low-power nonvolatile memory cells configured with select gates. A nonvolatile memory cell may have a transistor body, a select gate and a floating gate both coupled to the body, and a control gate coupled to the floating gate. Charge stored on the floating gate may indicate the data stored on the memory cell, and the control gate may be configured to adjust the charge stored on the floating gate. The select gate may be used to adjust the state of the transistor body to facilitate the adjustment of charge on the floating gate, and may also be used to render the memory cell unresponsive to the control gate.
Abstract:
Technologies are described herein to manage the replacement of routing rules. Some example technologies may receive a request to replace one or more active rules in a routing device with one or more stored rules. Each of the active rules and the stored rules may specify a routing rule that specifies how to route packets within a network. The active rules may be routing rules that are actively being used by the routing device. The stored rules may be routing rules that are not currently in use by the routing device. A determination may be made as to whether a number of active rule replacements for the routing device exceeds a threshold. In response to determining that the number of the active rule replacements exceeds the threshold, the request to replace the one or more active rules in the routing device may be denied.
Abstract:
Feedstocks for additive manufacturing are provided. The feedstock may include a matrix material, and one or more capsules disposed in the matrix material, wherein the one or more capsules are configured to be removable from a surface portion when the matrix material is solidified to form one or more cavities in the surface portion. Methods of depositing the feedstocks and objects formed from the feedstocks are also provided.
Abstract:
A pressure detection tablet is disclosed. The tablet is a capsule including a dye encapsulated within an inner coating, in which the inner coating is configured to rupture at a pressure equal to or greater than a pressure threshold. The tablet further includes an outer coating surrounding the capsule, in which the outer coating is configured to provide delivery of the capsule to a targeted site. The dye may be a non-metabolized, water soluble dye, such that a ruptured capsule releases the dye which can be visually detected in the urine. In some embodiments, the disclosure provides a method of making the tablet, using the tablet to detect peak pressure in the colon and reducing the risk of developing a colonic disorder.
Abstract:
Systems and methods of dynamically presenting a website. The system includes a storage medium and a server. The storage medium includes data adapted for presentation on a first website. The server includes computer executable instructions configured to receive initial preference data and build a preference profile based on the initial preference data. The server also includes computer executable instructions configured to retrieve select first data from the storage medium based on the preference profile, structure a presentation of the first website based on the select first data; and provide targeted queries or prompts based on the first data.
Abstract:
The methods, devices, and/or compositions described herein can be used to reduce variations, such as spatial and temporal variations, in luminance intensity. Luminance variation is reduced by varying some aspect of transmittance with respect to the intensity of light.