Abstract:
The method for manipulating a cursor is performed at a portable multifunction device with one or more processors, memory, and a touch screen display. Initially, content of an electronic document is displayed on the display, where a cursor is displayed within the electronic document. Two substantially simultaneous touch inputs are then detected on the touch screen display, and preferably anywhere on the touch screen display. In response to detecting the two substantially simultaneous touch inputs, a portion of the content in the document closest to the cursor is selected, and the portion of the content is displayed as selected content.
Abstract:
The method for manipulating a cursor is performed at a portable multifunction device with one or more processors, memory, and a touch screen display. Initially, content of an electronic document is displayed on the display, where a cursor is displayed within the electronic document. Two substantially simultaneous touch inputs are then detected on the touch screen display, and preferably anywhere on the touch screen display. In response to detecting the two substantially simultaneous touch inputs, a portion of the content in the document closest to the cursor is selected, and the portion of the content is displayed as selected content.
Abstract:
A host device (e.g., mobile device) and a wearable device can cooperate to provide location-specific information to a user. For example, a host device can maintain a store of location-specific information records. When the host device detects that its current location corresponds to a relevant location for one of the records, the host device can send the record (or a portion thereof) to a paired wearable device. The wearable device can present information content from the record to a human user and/or to a machine such as a scanner or wireless communication terminal.
Abstract:
An electronic device displays a user interface that includes one or more user interface elements. The device detects a contact on a touch-sensitive surface. The device detects a first increase in a characteristic intensity of the contact. In response to detecting the first increase, the device adjusts a property of a first user interface element from a first value to a second value. After adjusting the property, the device detects a decrease in the characteristic intensity of the contact. In response to detecting the decrease, in accordance with a determination that the first increase met intensity criteria, the device maintains the property above the first value. After detecting the decrease, the device detects a second increase in the characteristic intensity of the contact. In response to detecting the second increase, the device adjusts the property to a third value that is greater than the second value.
Abstract:
An electronic device presents a first portion of structured content on a display. The structured content includes a plurality of sections and the first portion includes content from a first section of the plurality of sections. The device detects a contact on the touch-sensitive surface, detects an increase in a characteristic intensity of the contact, and detects a movement of the contact. In response to detecting the increase in the characteristic intensity of the contact and the movement of the contact: in accordance with a determination that the characteristic intensity of the contact increases above an intensity threshold, the device translates the structured content to display a start of a second section; and in accordance with a determination that the characteristic intensity of the contact does not increase above the intensity threshold, the device translates the structured content in accordance with a magnitude of the movement of the contact.
Abstract:
The method for manipulating a cursor is performed at a portable multifunction device with one or more processors, memory, and a touch screen display. Initially, content of an electronic document is displayed on the display, where a cursor is displayed within the electronic document. Two substantially simultaneous touch inputs are then detected on the touch screen display, and preferably anywhere on the touch screen display. In response to detecting the two substantially simultaneous touch inputs, a portion of the content in the document closest to the cursor is selected, and the portion of the content is displayed as selected content.
Abstract:
The method for manipulating a cursor is performed at a portable multifunction device with one or more processors, memory, and a touch screen display. Initially, content of an electronic document is displayed on the display, where a cursor is displayed within the electronic document. Two substantially simultaneous touch inputs are then detected on the touch screen display, and preferably anywhere on the touch screen display. In response to detecting the two substantially simultaneous touch inputs, a portion of the content in the document closest to the cursor is selected, and the portion of the content is displayed as selected content.
Abstract:
In accordance with some embodiments, a method is performed at an electronic device. The device displays a first user interface including a background with a first appearance and foreground objects. While displaying the first user interface, the device detects a first input while a first focus selector is at a location in the first user interface that corresponds to the background of the first user interface. In response, if the contact has a characteristic intensity above a first intensity threshold, the device dynamically changes the background without changing the foreground objects, wherein the dynamic change in the background is based on the characteristic intensity of the contact. While dynamically changing the background, detecting termination of the first input; and, in response, the device reverts the background back to the first appearance of the background.
Abstract:
A device can receive live video of a real-world, physical environment on a touch sensitive surface. One or more objects can be identified in the live video. An information layer can be generated related to the objects. In some implementations, the information layer can include annotations made by a user through the touch sensitive surface. The information layer and live video can be combined in a display of the device. Data can be received from one or more onboard sensors indicating that the device is in motion. The sensor data can be used to synchronize the live video and the information layer as the perspective of video camera view changes due to the motion. The live video and information layer can be shared with other devices over a communication link.