Abstract:
Methods, systems, and media for presenting mobile content corresponding to media content are provided. In some implementations, a method for providing information relating to media content is provided, the method comprising: determining a channel that is providing the television program; causing images relating to the television program to be presented, wherein the images are selected based on the channel and a time parameter; receiving a user selection of an image; identifying an entity within the selected image using one or more image recognition techniques; generating a search query based at least in part on the identified entity; obtaining search results responsive to the generated search query; and causing at least one of the search results to be presented to the mobile device in response to receiving the user selection of the image.
Abstract:
A scanner detection model is created by a detection system to determine whether a laser scanner is present so the user is notified of the potential inability to accurately read a machine-readable identifier on a user device. A user operating the user device accesses an electronic record and a machine-readable identifier that comprises information identifying the electronic record is displayed on the user device. A scanner detection module detects display of the machine-readable identifier and turns on a camera resident on the user device. The camera captures and analyzes images. The scanner detection module identifies whether the scanner is a laser scanner based on an analysis of the images and the scanner detection model created by the detection system. If the scanner is a laser scanner, a message is displayed on the user device indicating that the machine-readable identifier is to be entered or inputted, instead of scanned.
Abstract:
A geofence management system obtains location data for points of interest. The geofence management system determines, at the option of the user, the location of a user mobile computing device relative to specific points of interest and alerts the user when the user nears the points of interest. The geofence management system, however, determines relationships among the identified points of interest, and associates or “clusters” the points of interest together based on the determined relationships. Rather than establishing separate geofences for multiple points of interest, and then alerting the user each time the user's mobile device enters each geofence boundary, the geofence management system establishes a single geofence boundary for the associated points of interest. When the user's mobile device enters the clustered geofence boundary, the geofence management system notifies the user device to alert the user of the entrance event. The user then receives the clustered, geofence-based alert.
Abstract:
The disclosed technology includes switching between a normal or standard-lens UI and a panoramic or wide-angle photography UI responsive to a zoom gesture. In one implementation, a user gesture corresponding to a “zoom-out” command, when received at a mobile computing device associated with a minimum zoom state, may trigger a switch from a standard lens photo capture UI to a wide-angle photography UI. In another implementation, a user gesture corresponding to a “zoom-in” command, when received at a mobile computing device associated with a nominal wide-angle state, may trigger a switch from a wide-angle photography UI to a standard lens photo capture UI.
Abstract:
A computing device is described that requests, at a first time and from a data provider, packaged complication data associated with a complication that comprises a graphical notification element on a display device. The computing device receives the packaged complication data that includes a plurality of complication data updates and timing data that defines a respective length of time that each complication data update is to be displayed. The computing device, responsive to receiving the packaged complication data, outputs, for display, a graphical user interface including current time information and the complication including a graphical indication of a first complication data update. The computing device determines a second time at which to output a graphical indication of a second complication data update for display. The computing device replaces, at the second time, the graphical indication of the first complication data update with that of the second complication data update.
Abstract:
The disclosed technology includes switching between a normal or standard-lens UI and a panoramic or wide-angle photography UI responsive to a zoom gesture. In one implementation, a user gesture corresponding to a “zoom-out” command, when received at a mobile computing device associated with a minimum zoom state, may trigger a switch from a standard lens photo capture UI to a wide-angle photography UI. In another implementation, a user gesture corresponding to a “zoom-in” command, when received at a mobile computing device associated with a nominal wide-angle state, may trigger a switch from a wide-angle photography UI to a standard lens photo capture UI.
Abstract:
Receiving point of interest zones and alerts on user devices comprises communicating, by a user computing device to a remote computing device, a request for point of interest data corresponding to points of interest within a proximity of the user device; presenting the received point of interest data; identifying a particular point of interest; and outputting an alert regarding the particular point of interest. Receiving point of interest zones on user devices comprises communicating a request for point of interest data; receiving the point of interest data from the remote network device wherein a size of the point of interest zone is determined based on a density of points of interest in the proximity of the user, and wherein the shape of the point of interest zone is expanded in a direction of travel and contracted in the opposite direction; and presenting the received point of interest data.
Abstract:
Methods, systems, and media for presenting mobile content corresponding to media content are provided. In some implementations, a method for providing information relating to media content is provided, the method comprising: determining a channel that is providing the television program; causing images relating to the television program to be presented, wherein the images are selected based on the channel and a time parameter; receiving a user selection of an image; identifying an entity within the selected image using one or more image recognition techniques; generating a search query based at least in part on the identified entity; obtaining search results responsive to the generated search query; and causing at least one of the search results to be presented to the mobile device in response to receiving the user selection of the image.
Abstract:
The disclosed technology includes switching between a normal or standard-lens UI and a panoramic or wide-angle photography UI responsive to a zoom gesture. In one implementation, a user gesture corresponding to a “zoom-out” command, when received at a mobile computing device associated with a minimum zoom state, may trigger a switch from a standard lens photo capture UI to a wide-angle photography UI. In another implementation, a user gesture corresponding to a “zoom-in” command, when received at a mobile computing device associated with a nominal wide-angle state, may trigger a switch from a wide-angle photography UI to a standard lens photo capture UI.
Abstract:
Receiving point of interest zones and alerts on user devices comprises communicating, by a user computing device to a remote computing device, a request for point of interest data corresponding to points of interest within a proximity of the user device; presenting the received point of interest data; identifying a particular point of interest; and outputting an alert regarding the particular point of interest. Receiving point of interest zones on user devices comprises communicating a request for point of interest data; receiving the point of interest data from the remote network device wherein a size of the point of interest zone is determined based on a density of points of interest in the proximity of the user, and wherein the shape of the point of interest zone is expanded in a direction of travel and contracted in the opposite direction; and presenting the received point of interest data.