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:
Context- specific user interfaces for use with a portable multifunction device are disclosed. The methods described herein for context-specific user interfaces provide indications of time and, optionally, a variety of additional information. Further disclosed are non-transitory computer-readable storage media, systems, and devices configured to perform the methods described herein.
Abstract:
The present disclosure relates to user interfaces for manipulating user interface objects. A device, including a display and a rotatable input mechanism, is described in relation to manipulating user interface objects. In some examples, the manipulation of the object is a scroll, zoom, or rotate of the object. In other examples, objects are selected in accordance with simulated magnetic properties.
Abstract:
The present disclosure generally describe user interfaces related to time. In accordance with embodiments, user interfaces for displaying and enabling an adjustment of a displayed time zone are described. In accordance with embodiments, user interfaces for initiating a measurement of time are described. In accordance with embodiments, user interfaces for enabling and displaying a user interface using a character are described. In accordance with embodiments, user interfaces for enabling and displaying a user interface that includes an indication of a current time are described. In accordance with embodiments, user interfaces for enabling configuration of a background for a user interface are described. In accordance with embodiments, user interfaces for enabling configuration of displayed applications on a user interface are described.
Abstract:
The present disclosure generally relates to user interfaces and techniques for managing audio exposure using a computer system (e.g., an electronic device). In accordance with some embodiments, the electronic device displays a graphical indication of a noise exposure level over a first period of time with an area of the graphical indication that is colored to represent the noise exposure level, the color of the area transitioning from a first color to a second color when the noise exposure level exceeds a first threshold. In accordance with some embodiments, the electronic device displays noise exposure levels attributable to a first output device type and a second output device type and, in response to selecting a filtering affordance, visually distinguishes a set of noise exposure levels attributable to the second output device type.
Abstract:
Methods for sharing user-configurable graphical constructs, e.g., for use with a portable multifunction device, are disclosed. The methods described herein allow for sharing user-configurable graphical constructs that contain independently configurable graphical elements and graphical assets. Further disclosed are non-transitory computer-readable storage media, systems, and devices configured to perform the methods described herein.
Abstract:
An electronic device, with a display, a touch-sensitive surface, one or more processors, and memory, displays, on a first user interface screen, an indication of a location. The device displays, on the first user interface screen, a representation of a controllable external device at the location. The device detects a first user input corresponding to selection of the controllable external device, and in response to detecting the first user input, displays a user interface object indicating a plurality of possible states of the controllable external device. While displaying the user interface object indicating the plurality of possible states of the controllable external device, the device detects a second user input corresponding to selection of a designated state of the controllable external device. In response to detecting the second user input, the device sends instructions to set the controllable external device to the designated state.
Abstract:
Methods for sharing user-configurable graphical constructs, e.g., for use with a portable multifunction device, are disclosed. The methods described herein allow for sharing user-configurable graphical constructs that contain independently configurable graphical elements and graphical assets. Further disclosed are non-transitory computer-readable storage media, systems, and devices configured to perform the methods described herein.