Kurdish language multifunctional morphemes indicate the different functional morphological, syntactical, and semantic tasks of the morphemes. The present study discusses the multifunctional task of the Morpheme Le in Kurdish Language. The Morpheme Le has marginally been included in other studies, yet up to the present times, there has not been a research inclusively dedicated to thoroughly discuss and clarify its multifunctional aspects. The present study is divided into two chapters: Chapter one discusses the theoretical aspect of chapter two that is entirely concerned with the practical aspect of the morpheme Le. The first part of chapter one sheds light on the morphological aspect of the morpheme while part two discusses the concept of multifunction in Kurdish language including its concepts, types and characteristics. Chapter two is concerned with the practical aspect of the morpheme. Part one of chapter two describes the morphemes’ morphological aspect and part two explains its syntactical aspects. The conclusion sums up the study most important findings and the number of the academic references referred. پوختەی توێژینەوەکە: توێژینەوەکە لەژێر ناونیشانی (فرەئەرکی مۆرفیمەکان لە زمانی کوردیدا، مۆرفیمی (لە) بەنموونە)یە. ئەو ئەرکانە دەخاتەڕوو کە مۆرفیمی (لە) دەیگێڕێت. ئەم کارە بۆ چەمکی فرەئەرکی لە زمانی کوردیدا تەرخانکراوە، یەکێک لە مۆرفیمە پڕئەرکەکان دەخاتەبەرباس، کە ئەویش مۆرفیمەکانی (لە)یە. مۆرفیمی (لە) لە سەرچاوەی جیاوازدا کەم و زۆر باسکراوە، بەڵام توێژینەوەیەکی تایبەتی سەربەخۆی لەسەر نەنووسراوە، نووسرابێتیش بە قووڵی نەچوونەتە بنج و بناوانی و بە تێروتەسەلی لێیان نەکۆڵیوەتەوە. لە هەندێ کاری زانستیدا باسکراوه، بەڵام کارەکە تەنها بۆ ئەو مۆرفیمە تەرخاننەکراوە، بەڵکو لە میانەی ئەو کارەدا، مۆرفیمی (لە)ش هاتۆتە بەرباسکردن. لەم توێژینەوەیەدا هەوڵدراوە، تا بکرێت باس لە هەموو لایەنەکانی مۆرفیمی (لە) بکرێت لە ڕووی وشەسازی و ڕستەسازی و تەنانەت لەڕووی واتاشەوە و ئەرکە جیاجیاکانی دیاریبکرێت. مۆرفیمی (لە) یەکێکە لە مۆرفیمە چالاکەکانی زمانی کوردی و لە زۆربەی ئاستەکانی زماندا ئەرکی پێسپێردراوە. گرنگیی ئەم توێژینەوە لەوەدایە، بە پوختی و تێروتەسەلی تیشک دەخاتەسەر ئەرکە جیاجیاکانی مۆرفیمی (لە) لەڕووی وشەسازی و ڕستەسازی ...ەوە،هتد. سنووری توێژینەوەکەش لە هەردوو ئاستی وشەسازی و ڕستەسازیدا ئەنجامدراوە، جارجاریش پەنجە بۆ لایەنی واتاییش بردراوە. لەم توێژینەوەیەدا ڕێبازی وەسفی شیکاری-ڕەخنەیی بەکارهاتووە و نموونەکان وەرگیراون و شیکردنەوەیان بۆ کراوە و لەهەر شوێنێکیش هەڵە و کەموکووڕی بەدیکرابێ، سەرنج و ڕەخنە لە بارەیانەوە تۆمارکراوە. توێژینەوەکە بۆ دوو بەش، دابەشکراوه:
In this study, the relationship between the bare soil temperature with respect to its salinity is presented, the bare soil feature is considered only by eliminating all other land features by classifying the site location by using the support vector machine algorithm, in the same time the salinity index that calculated from the spectral response from the satellite bands is calibrated using empirical salinity value calculated from field soil samples. A 2D probability density function is used to analyze the relationship between the temperature rising from the minimum temperature (from the sunrise time) due to the solar radiation duration tell the time of the satellite capturing the scene image and the calibrated salinity index is presented. T
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APDBN Rashid, International Journal of Humanities and Social Sciences/ RIMAK, 2023
Catalytic reforming of naphtha occupies an important issue in refineries for obtaining high octane gasoline and aromatic compounds, which are the basic materials of petrochemical industries. In this study, a novel of design parameters for industrial continuous catalytic reforming reactors of naphtha is proposed to increase the aromatics and hydrogen productions. Improving a rigorous mathematical model for industrial catalytic reactors of naphtha is studied here based on industrial data applying a new kinetic and deactivation model. The optimal design variables are obtained utilizing the optimization process in order to build the model with high accuracy and such design parameters are then applied to get the best configuration of this pro
... Show MoreAbstract-Servo motors are important parts of industry automation due to their several advantages such as cost and energy efficiency, simple design, and flexibility. However, the position control of the servo motor is a difficult task because of different factors of external disturbances, nonlinearities, and uncertainties. To tackle these challenges, an adaptive integral sliding mode control (AISMC) is proposed, in which a novel bidirectional adaptive law is constructed to reduce the control chattering. The proposed control has three steps to be designed. Firstly, a full-order integral sliding manifold is designed to improve the servo motor position tracking performance, in which the reaching phase is eliminated to achieve the invariance of
... Show MoreArtificial pancreas is simulated to handle Type I diabetic patients under intensive care by automatically controlling the insulin infusion rate. A Backstepping technique is used to apply the effect of PID controller to blood glucose level since there is no direct relation between insulin infusion (the manipulated variable) and glucose level in Bergman’s system model subjected to an oral glucose tolerance test by applying a meal translated into a disturbance. Backstepping technique is usually recommended to stabilize and control the states of Bergman's class of nonlinear systems. The results showed a very satisfactory behavior of glucose deviation to a sudden rise represented by the meal that increase the blood glucose
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Recently, the development of the field of biomedical engineering has led to a renewed interest in detection of several events. In this paper a new approach used to detect specific parameter and relations between three biomedical signals that used in clinical diagnosis. These include the phonocardiography (PCG), electrocardiography (ECG) and photoplethysmography (PPG) or sometimes it called the carotid pulse related to the position of electrode.
Comparisons between three cases (two normal cases and one abnormal case) are used to indicate the delay that may occurred due to the deficiency of the cardiac muscle or valve in an abnormal case.
The results shown that S1 and S2, first and second sound of the
... Show MoreThe main purpose of this work is the construction of an optical parametric amplifier (OPA) to generate a 629 nm pulsed laser. KTP nonlinear crystals were used for both parametric oscillation and amplification. A singly resonant parametric oscillator (OPO) is constructed to generate a signal of 1.54 μm and idler of 3.4 μm when the OPO system is pumped by 1.064 μm Q – switched Nd: YAG laser. The signal was then mixed with the pumping beam in OPA system to form the wanted wavelength. The obtained optical conversion efficiency was 60%.
Abstract
Robust controller design requires a proper definition of uncertainty bounds. These uncertainty bounds are commonly selected randomly and conservatively for certain stability, without regard for controller performance. This issue becomes critically important for multivariable systems with high nonlinearities, as in Active Magnetic Bearings (AMB) System. Flexibility and advanced learning abilities of intelligent techniques make them appealing for uncertainty estimation. The aim of this paper is to describe the development of robust H2/H∞ controller for AMB based on intelligent estimation of uncertainty bounds using Adaptive Neuro Fuzzy Inference System (ANFIS). Simulatio
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