Abstract:
Systems, techniques, and methods are presented for creating digital note cards and presenting a graphical user interface for interacting with digital note cards. For example, content from an electronic book can be displayed in a graphical user interface. Input can be received in the graphical user interface highlighting a portion of the content and creating a note, the note including user generated content. A digital note card can be created where one side of the digital note card includes the highlighted text, and the other side of the digital note card includes the note. The digital note card can be displayed in the graphical user interface.
Abstract:
This disclosure describes systems, methods, and computer program products for authoring content for digital books. In some implementations, a single graphical user interface (GUI) is presented that allows an author to design a layout for the digital book, including editing text and inserting various types of interactive elements in the text. The GUI functions as both a digital book layout design tool and a word processor to facilitate the building of a digital book. The relative page location of inserted widgets can be determined by a user-selectable anchor point placed within the text. An outline view of the digital book can be created and presented in the GUI based on a hierarchical structure determined by paragraph styles applied to the text. The GUI can provide a hybrid glossary and index page for allowing the author to create and manage a glossary and index for the digital book.
Abstract:
A method performed at a computing device with a touch-sensitive display includes: displaying a plurality of user interface objects on the display, including a currently selected first user interface object; detecting a first contact on the first user interface object; detecting movement of the first contact across the display; moving the first user interface object in accordance with the movement of the first contact; while detecting movement of the first contact across the display: detecting a first finger gesture on a second user interface object; and, in response: selecting the second user interface object; moving the second user interface object in accordance with movement of the first contact subsequent to detecting the first finger gesture; and continuing to move the first user interface object in accordance with the movement of the first contact.
Abstract:
A method includes, at a computing device with a touch-sensitive display: displaying a user interface object on the touch-sensitive display; detecting a contact on the user interface object; while continuing to detect the contact on the user interface object: detecting an M-finger gesture, distinct from the contact, in a first direction on the touch-sensitive display, where M is an integer; and, in response to detecting the M-finger gesture, translating the user interface object a predefined number of pixels in a direction in accordance with the first direction.
Abstract:
A method for resizing a currently selected user interface object includes simultaneously displaying on a touch-sensitive display the currently selected user interface object having a center, and a plurality of resizing handles for the currently selected user interface object. The method also includes detecting a first contact on a first resizing handle in the plurality of resizing handles, and detecting movement of the first contact across the touch-sensitive display. The method further includes, in response to detecting movement of the first contact, when a second contact is detected on the touch-sensitive display while detecting movement of the first contact, resizing the currently selected user interface object about the center of the currently selected user interface object.