Abstract:
A method of processing a memo while performing communication in a terminal includes: performing the communication; activating a touch memo input mode in response to a predetermined event occurring; displaying a touch memo on a display device in a communication state and performing a communication service, in response to receiving an input of the touch memo; and transmitting the touch memo to a communicating subscriber and maintaining the communication state after a request for transmission of the touch memo is input.
Abstract:
A method for processing a photo image in a terminal comprises displaying a photo image if photographing is requested in a preview mode, setting a touch memo area by rearranging the displayed photo image, generating an edited photo image by displaying a pen touch input in the touch memo area, and storing the edited photo image by combining with a touch memo.
Abstract:
An electronic device according to various embodiments of the present invention includes: a first housing; a second housing; at least one processor; and a flexible display, wherein a portion of the flexible display is inserted into or drawn out of the first housing according to the driving of a driving module of the electronic device, and the at least one processor may be configured to display at least one control button that can change the size of the externally exposed portion of the flexible display.
Abstract:
The present disclosure relates to a 5G or 6G communication system for supporting a higher data transmission rate. According to the present disclosure, a method performed by a terminal in a communication system comprises: receiving semi persistent scheduling (SPS) configuration information from a base station; monitoring an SPS activation signal; confirming an SPS configuration corresponding to the SPS activation signal on the basis of the SPS configuration information, based on the SPS activation signal being sensed; receiving a physical downlink shared channel (PDSCH) from the base station on the basis of the SPS configuration; descrambling a PDSCH on the basis of a group-common configured scheduling radio network temporary identifier (CS-RNTI) based on the SPS configuration being a group-common SPS configuration; and descrambling the PDSCH on the basis of a terminal-specific CS-RNTI based on the SPS configuration being a terminal-specific SPS configuration.
Abstract:
The present disclosure relates to a 5G or 6G communication system for supporting a higher data transmission rate. A method for, according to the present disclosure, may comprise the steps of: receiving, from a base station, configuration information associated with at least one first SPS; receiving, from the base station, an SPS activation signal indicating activation of a second SPS from among the at least one first SPS; identifying, on the basis of configuration information associated with the second SPS, and the SPS activation signal, whether or not, from among at least one PDSCH reception occurrence associated with the second SPS, a first PDSCH reception occurrence includes a plurality of slots; if the first PDSCH reception occurrence includes the plurality of slots, determining one of the plurality of slots as a reference slot; and determining an HARQ process ID on the basis of information regarding the determined reference slot.
Abstract:
The present invention relates to a compound for an organic optoelectronic device, represented by Chemical Formula 1; a composition for an organic optoelectronic device, including same; an organic optoelectronic device; and a display device. The description of Chemical Formula 1 is the same as that defined in the specification.
Abstract:
A semiconductor device includes a substrate, a stack, and channel structures penetrating the stack. The stack includes gate electrodes and insulating layers alternately and repeatedly stacked on the substrate, and extending in a first direction. The channel structures in a first row are spaced apart from each other in the first direction. The stack includes a first sidewall that includes first recessed portions and first protruding portions. Each of first recessed portions is defined by an adjacent pair of the first recessed portions. Each of the first recessed portions has a shape recessed toward a first region of the stack between an adjacent pair of the channel structures of the first row. Each of the first recessed portions has a width that decreases in a direction toward the first region when measured along the first direction.
Abstract:
A composition including a first compound represented by Formula 1 and a second compound represented by Formula 2: Ar1-(L1)a1-Ar2 Formula 1 Ar11-(L11)a11-Ar12 Formula 2 wherein Ar1, Ar2, Ar11, Ar12, L1, L11, a1, and a11 are the same as described in the specification.