Abstract:
The present disclosure generally relates to managing a user account. In some embodiments, managing a user account includes managing remote data storage associated with a user account. In some embodiments, managing a user account includes managing deletion of data from remote data storage associated with a user account. In some embodiments, managing a user account includes managing a balance transfer of a user account.
Abstract:
In some embodiments, an electronic device presents settings user interfaces associated with cellular identifiers. In some embodiments, a first electronic device accesses a first cellular identifier regardless of the first electronic device's connection to a second electronic device and accesses a second cellular identifier when the first electronic device is connected to the second electronic device. In some embodiments, an electronic device presents visual indications of cellular identifiers in relation to communication functions. In some embodiments, an electronic device presents visual indications of the status of cellular identifiers active on the electronic device. In some embodiments, an electronic device presents alerts associated with one or more cellular identifiers that have been removed from the electronic device.
Abstract:
The present disclosure generally relates to techniques for managing a remote authorization to proceed with an action, such as creating a secure network connection. In some examples, a requesting device receives selection of one or more options. The requesting device transmits a request to proceed with an action to an authenticating device. The authenticating device concurrently displays an indication of the request to proceed with the action, information about the selected one or more options, and an indication of the requesting device. The authenticating device receives authorization to proceed with the action and transmits a response to the requesting device regarding the request to proceed with the action.
Abstract:
The present disclosure generally relates to browsing and searching content on an electronic device. An electronic device displays a first user interface including a search affordance and receives an input corresponding to selection of the search affordance. In response, the device displays a plurality of category affordances, including a first category affordance associated with a first category and a second category affordance associated with a second category. The device further receives an input corresponding to selection of the first category affordance and, in response, displays a representation of one or more information items that correspond to the first category and replaces at least a subset of the category affordances with a plurality of subcategory affordances that correspond to the first category. The plurality of subcategory affordances includes a first subcategory affordance associated with a first subcategory and a second subcategory affordance associated with a second subcategory.
Abstract:
The present disclosure relates to making payments with a mobile device. In one example process, the mobile device receives and stores information for one or more payment accounts on the mobile device. The mobile device is used to make payments using the payment accounts. In some examples, authorization to proceed with a payment is performed before each purchase made by the user. The authorization process can include receiving a verification of the user, such as a fingerprint scan or passcode. In some examples, a payment account is selected from among available payment accounts. In some examples, an indication is displayed of a digital item associated with a purchased item. In some examples, a payment transaction is initiated with participants of an ongoing communication. In some examples, an application of a retailer is invoked based on the availability of the application. In some examples, a purchase recommendation is provided.
Abstract:
A user controls an external electronic device with a finger-ring-mounted touchscreen that includes a computer processor, wireless transceiver, and rechargeable power source; the ring is worn on a first finger receives an input from a second finger, selects one of a plurality of touch events associated with the input, and wirelessly transmits a command associated with the touch event to the external electronic device.
Abstract:
A method for providing navigation instructions on a device is described. As the device traverses a navigated route according to a first mode of transportation, the method displays a first turn-by-turn navigation presentation defined for the first mode. Based on data gathered by the device, the method determines that the device is navigating the route according to a second mode of transportation. The method automatically displays a second, different turn-by-turn navigation presentation defined for the second mode.
Abstract:
Some embodiments provide a method for an application executing on a mobile device. The method renders an animated navigation presentation for output to an external display screen not part of the mobile device. The navigation presentation includes an animated map showing at least a portion of a route to a destination. The method simultaneously displays information regarding a maneuver along the route on a display screen of the mobile device without displaying a same animated map on the mobile device. In some embodiments, the displayed information regarding the maneuver comprises a graphical instruction and a text instruction for a next maneuver along the route.
Abstract:
A mobile computing device can be used to locate a vehicle parking location in weak location signal scenarios (e.g., weak, unreliable, or unavailable GPS or other location technology). In particular, the mobile device can determine when a vehicle in which the mobile device is located has entered into a parked state. GPS or other primary location technology may be unavailable at the time the mobile device entered into a parked state (e.g., inside a parking structure). The location of the mobile device at a time corresponding to when the vehicle is identified as being parked can be determined using the first location technology as supplemented with sensor data of the mobile device. After the location of the mobile device at a time corresponding to when the vehicle is identified as being parked is determined, the determined location can be associated with an identifier for the current parking location.