Abstract:
Methods and apparatuses are provided for measuring a vital signal by an electronic device. A motion of the electronic device is detected. It is determined whether an amount of the motion is less than or equal to a threshold. At least one vital signal is measured at least once if the amount of the motion is less than or equal to the threshold. A parameter of the at least one vital signal is analyzed. The parameter is converted into vital information.
Abstract:
A method of managing a plurality of applications executed on an electronic device is provided. The method includes, based on a first external input regarding at least one application from among the plurality of applications, updating mode of the at least one application from a non-work mode to a work mode, based on the first external input, updating mode of another application other than the at least one application from a work mode to a non-work mode, and displaying a work time regarding the at least one application that is determined based on at least one of information indicating a time point at which the first external input is obtained and information indicating a time point at which the mode of the at least one application is updated from the non-work mode to the work mode.
Abstract:
Disclosed is a method for an electronic device. The method may include: acquiring a galvanic skin response; generating a first parameter for a first interval and a second parameter for a second interval based on the galvanic skin response, the second interval being an interval before the first interval; determining a first threshold corresponding to the first interval based on the second parameter; and determining an activity state of the first interval based on the first threshold and the first parameter corresponding to the first interval.
Abstract:
An electronic device for enhancing accuracy upon contactless body temperature measurement is provided. The electronic device includes an image sensor for obtaining an image of an object, a temperature sensor disposed at a position adjacent to the image sensor for measuring a temperature of the obtained object, and a controller for performing control to determine the temperature of the object using a focal length of a camera module including the image sensor corresponding to a time of obtaining the image of the object and a temperature output from the temperature sensor corresponding to the time of obtaining the image of the object.