Abstract:
In some embodiments, an electronic device presents a user interface for controlling the playback of content items. In some embodiments, the user interface includes a plurality of selectable options for controlling playback of a respective content item overlaid on the content item. In some embodiments, an electronic device presents a user interface for browsing and switching between content items available for playback.
Abstract:
In some embodiments, an electronic device presents representations of items of content available for playback on the electronic device. In some embodiments, an electronic device presents selectable options for playing an item of content in accordance with the manners in which the item of content is available to be played on the electronic device. In some embodiments, an electronic device presents representations of episodes in a series of episodic content. In some embodiments, an electronic device presents an enhanced preview of content. In some embodiments, an electronic device presents a control panel. In some embodiments, an electronic device switches the active user profile of a device. In some embodiments, an electronic device enters into a picture-in-picture mode.
Abstract:
In some embodiments, an electronic device presents media items from different media applications in a unified media browsing application. In some embodiments, an electronic device facilitates browsing of media from different media applications based on category of media (e.g., movies, television shows, etc.). In some embodiments, an electronic device facilitates setup of a unified media browsing application that presents media items from different media applications in a unified media browsing user interface. In some embodiments, an electronic device displays multiple episodes of a collection of episodic content (e.g., a television series) in a user interface for the collection of episodic content. In some embodiments, an electronic device displays representations of, and provides access to, live-event media items accessible on the electronic device.
Abstract:
Systems and methods are provided that allow steps to be counted in multiple pedometer modes. For example, a pedometer application on an electronic device can count steps in an ambient mode of operation and a session mode of operation. By maintaining separate counters for each pedometer mode and continuously monitoring the desired mode of operation, the pedometer application can accurately count the number of steps during a certain time period. In response to detecting a change in the desired mode, the pedometer application can seamlessly switch to the corresponding mode counter. In some embodiments, the pedometer application can display graphical representations of historical step information for one or more pedometer modes.
Abstract:
Methods, systems, computer-readable media, and apparatuses for providing enhanced user interfaces and functionalities for internet radio applications are presented. In some embodiments, a computer system may provide a user interface that includes one or more regions configured to control playback of an internet radio station. The computer system then may determine, based on music purchase history associated with a user account, whether a selected song associated with the internet radio station has been previously purchased. In response to determining that the selected song has not been previously purchased, the computer system may display a user-selectable control that enables the selected song to be purchased. On the other hand, in response to determining that the selected song has been previously purchased, the computer system may display a user-selectable control that enables the selected song to be downloaded.
Abstract:
An embodiment includes a method to increase the efficiency of security checkpoint operations. A security checkpoint kiosk serves as a Relying Party System (RPS). The RPS establishes a secure local connection between the RPS and a User Mobile-Identification-Credential Device (UMD). The RPS sends a user information request to the UMD, via the secure local connection, seeking release of user information associated with a Mobile Identification Credential (MIC). The RPS obtains authentication of the user information received in response to the user information request. The RPS retrieves user travel information based on the user information. The RPS determines that the user travel information matches the user information. When the user travel information matches the user information, the RPS approves the user to proceed past the security checkpoint kiosk.
Abstract:
Systems and methods are provided that allow steps to be counted in multiple pedometer modes. For example, a pedometer application on an electronic device can count steps in an ambient mode of operation and a session mode of operation. By maintaining separate counters for each pedometer mode and continuously monitoring the desired mode of operation, the pedometer application can accurately count the number of steps during a certain time period. In response to detecting a change in the desired mode, the pedometer application can seamlessly switch to the corresponding mode counter. In some embodiments, the pedometer application can display graphical representations of historical step information for one or more pedometer modes.
Abstract:
Systems and methods are provided that allow steps to be counted in multiple pedometer modes. For example, a pedometer application on an electronic device can count steps in an ambient mode of operation and a session mode of operation. By maintaining separate counters for each pedometer mode and continuously monitoring the desired mode of operation, the pedometer application can accurately count the number of steps during a certain time period. In response to detecting a change in the desired mode, the pedometer application can seamlessly switch to the corresponding mode counter. In some embodiments, the pedometer application can display graphical representations of historical step information for one or more pedometer modes.
Abstract:
Systems, methods, and devices are provided to sense unauthorized use of a vehicle. For example, an electronic device may include sensors to detect an operational parameter of a bicycle and communications circuitry to couple the electronic device to a second electronic device associated with user of the bicycle according to authorization information. Control circuitry may determine when the bicycle is in operation based at least in part on the detected operational parameter, identify whether the second electronic device is substantially within a communicative proximity of the electronic device when the bicycle is in operation, and generate an alert indicating unauthorized operation when the second electronic device is not identified as substantially within the communicative proximity of the electronic device.
Abstract:
An embodiment includes a method to increase the efficiency of security checkpoint operations. A security checkpoint kiosk serves as a Relying Party System (RPS). The RPS establishes a secure local connection between the RPS and a User Mobile-Identification-Credential Device (UMD). The RPS sends a user information request to the UMD, via the secure local connection, seeking release of user information associated with a Mobile Identification Credential (MIC). The RPS obtains authentication of the user information received in response to the user information request. The RPS retrieves user travel information based on the user information. The RPS determines that the user travel information matches the user information. When the user travel information matches the user information, the RPS approves the user to proceed past the security checkpoint kiosk.