Abstract:
Techniques for a displaying user interfaces screens of a calendar application include displaying different screens based on an input modality. The calendar application may respond differently to inputs from a touch-sensitive screen, inputs from a rotatable input mechanism, inputs having higher intensities, inputs having lower intensities, and so forth.
Abstract:
The present disclosure generally relates to viewing and updating application views. A device receives a user input, the input, when received initiating display of a plurality of application views of a set of application views. The device, in response to receiving the user input, displays the plurality of application views of the set of application views, wherein the set of application views includes preselected application views and an adaptive view that corresponds to a most recently opened application that is not one of the preselected application views.
Abstract:
User interface navigation on a personal electronics device based on movements of a crown is disclosed. The device can select an appropriate level of information arranged along a z-axis for display based on crown movement. The navigation can be based on an angular velocity of the crown.
Abstract:
Systems and processes for manipulating a graphical user interface are disclosed. One process can include receiving user input through a crown to rotate a virtual object. The process includes selecting a surface of the object from among the multiple surfaces of the object in response to determining that the crown rotation exceeded a speed threshold.
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:
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:
An electronic device includes a touch-sensitive display, a rotatable input mechanism, one or more processors, and memory. The electronic device displays content on the display, where the content includes a first edge and a second edge opposite the first edge. The electronic device further detects a first user input, and in response to detecting the first user input, displays an enlarged view of the content that does not include the first edge. The electronic device further detects a rotation of the rotatable input mechanism in a first rotation direction, and in response to detecting the rotation, translates the enlarged view of the content in a first translation direction on the display to display the first edge of the content.
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 techniques accessing and displaying information pertaining to past times and future times. In some embodiments, a device displays a first current-time indicator and a user interface object configured to display information corresponding to a first information source and to the current time. In some embodiments, in response to and in accordance with detecting a rotation of a rotatable input mechanism, the device displays a non-current-time indicator indicating a non-current time, and updates the first user interface object to display information corresponding to the first information source and the non-current time. In some embodiments, the device continues to display an indication of the current time.
Abstract:
An electronic device may display a first lap time representation, and may move the first lap time representation in accordance with a first amount of elapsed time. While moving the first lap time representation, the electronic device may detect a lap input. In response to the lap input, the electronic device may cease movement of the first lap time representation, display a second lap time representation, and move the second lap time representation in accordance with a second amount of elapsed time. A relative positioning of the first lap time representation and the second lap time representation may correspond to a difference between a first lap time and a second lap time. In some embodiments, the electronic device may update the timescales of lap time representation(s) in accordance with a rotational input. In some embodiments, the electronic device may update a timer duration setting in accordance with a rotational input.