Abstract:
In some implementations, documents can be presented on a display of a computing device based on a context of the computing device. The context can include a current time and/or current location associated with the computing device. The documents can be presented based on a time and/or location associated with the documents. Documents can be downloaded and shared between devices. Documents can be dynamically updated based on document vendor provided information and/or other network based resources. In some implementations, the various graphical interfaces described herein provide access to a variety of document types in an organized and efficient manner.
Abstract:
An electronic device with a display and a touch-sensitive surface displays a user interface of an application. The device detects a first portion of an input including a contact on the touch-sensitive surface, and then detects a second portion of the input including movement of the contact across the touch-sensitive surface. The device displays, during the movement, application views including an application view that corresponds to the user interface of the application and another application view that corresponds to a different user interface of a different application. The device then detects a third portion of the input, including a liftoff of the contact from the touch-sensitive surface. In response, the device, upon determining that application-switcher-display criteria are met, displays an application-switcher user interface, and upon determining that home-display criteria are met, the device displays a home screen user interface that includes application launch icons.
Abstract:
Electronic devices with improved methods and interfaces for messaging are disclosed, including improved ways to: acknowledge messages; edit previously sent messages; express what a user is trying to communicate; display private messages; synchronize viewing of content between users; incorporate handwritten inputs; quickly locate content in a message transcript; integrate a camera; integrate search and sharing; integrate interactive applications; integrate stickers; make payments; interact with avatars; make suggestions; navigate among interactive applications; manage interactive applications; translate foreign language text; combine messages into a group; and flag messages.
Abstract:
An electronic device with a touch-sensitive surface, a display, and one or more sensors to detect intensity of contacts: displays a plurality of user interface objects in a first user interface; detects a contact while a focus selector is at a location of a first user interface object; and, while the focus selector is at the location of the first user interface object: detects an increase in a characteristic intensity of the contact to a first intensity threshold; in response, visually obscures the plurality of user interface objects, other than the first user interface object, while maintaining display of the first user interface object; detects that the characteristic intensity of the contact continues to increase above the first intensity threshold; and, in response, dynamically increases the amount of visual obscuring of the plurality of user interface objects, other than the first user interface object.
Abstract:
At an electronic device with a touch-sensitive display, a remote camera control user interface may be displayed. In some examples, a user may provide input through a gesture at a location corresponding to the touch-sensitive display and/or through a rotation of a rotatable input mechanism to control a camera of an external device. Camera control may include control of the external device's camera features, including image capture, zoom settings, focus settings, flash settings, and timer settings, for example, and may also include access to the external device's library of previously captured images.
Abstract:
An electronic device presents a user interface including an output property that represents a first type of output. The device detects a first input associated with modifying the first type of output via a first behavior model, and changes the output property over time based on the first behavior model and updates the user interface based on the changes in the output property. While updating the user interface, the device detects a change to the user input; and changes the output property over time based on a second behavior model based on: a value of the output property determined based on the first behavior model; and a first derivative of the value of the output property with respect to time determined based on the first behavior model. The device updates the user interface based on the changes in the output property that occur based on the second behavior model.