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Prediction of Marital Satisfaction Based on Emotional Intelligence in Postmenopausal Women
( Mohammad Heidari ),( Sara Shahbazi ),( Mansour Ghafourifard ),( Rahim Ali Sheikhi ) 대한폐경학회 2017 대한폐경학회지 Vol.23 No.3
Objectives: This study was coperinducted with the aim of prediction of marital satisfaction based on emotional intelligence for postmenopausal women. Methods: This cross-sectional study was the descriptive-correlation and with a sample size of 134 people to predict marital satisfaction based on emotional intelligence for postmenopausal women was conducted in the Borujen city. The subjects were selected by convenience sampling. Data collection tools included an emotional intelligence questionnaire (Bar-on) and Enrich marital satisfaction questionnaire. Results: The results of this study showed a significant positive relationship between marital satisfaction and emotional intelligence (P < 0.05, r = 0.25). Also, regression analysis showed that emotional intelligence (β = 0.31) can predict positively and significantly marital satisfaction. Conclusions: Due to the positive relationship between emotional intelligence and marital satisfaction, adequacy of emotional intelligence is improved as important structural in marital satisfaction. So it seems that can with measuring emotional intelligence in reinforced marital satisfaction during menopause, done appropriate action. (J Menopausal Med 2017;23:196-201)
Design FPGA-Based CL-Minimum Control Unit
Farzin Piltan,Omid Avatefipour,Samira Soltani,Omid Mahmoudi,Mahmoud Reza Safaei Nasrabad,Mehdi Eram,Zahra Esmaeili,Sara Heidari,Kamran Heidari,Mohammad Mahidi Ebrahimi 보안공학연구지원센터 2016 International Journal of Hybrid Information Techno Vol.9 No.1
Most of controllers need real time mobility operation so one of the most important devices which can be used to solve this challenge is Field Programmable Gate Array (FPGA). FPGA can be used to design a controller in a single chip Integrated Circuit (IC). To have higher implementation speed with good performance cMinimum Control Unit (MCU) is implemented on Spartan 3E FPGA using Xilinx software. Design a 4 bits Field Programmable Gate Array (FPGA)- based carry lookahead MCU is the main challenging works. MCU is control unit to control of data transfer between input and output and process the input data. In this research, MCU is used to control the 4 bits, Arithmetic Logic Unit (ALU). Combinational logic characterized by its propagation delay and contamination delay. To reduce the delay hardware description language (HDL) type of programming is very important. To reduce the route delay and logic delay, type of HDL design is very important. In this research, we used lookahead design, which reduce about 10% delay in comparison with ripple carry.