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ההשפעה והשענוע בנאום הפוליטי של שמעון פרס עיון פרגמטי בדוגמאות נבחרות מנאומיו Effect and Persuasion in the Political Discourse of Shimon Peres A Pragmatic Study in Selected form of His Addresses
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במחקר הזה ניתחנו מספר נאומים של שמעון פרס, אנחנו התמקדנו בהשפעה והשכנוע אצל שמעון פרס ואיך הוא יכול להעביר את המסרים של נאומיו בסגנון פרגמטי כדי להגיע ללבו של הציבור.

 גם כן, התמקדנו בסגנון הפוליטי שהוא חושב כי התחום הזה צריך להיות ברור מול הציבור וגם כן מול דעת הקהל הבינלאומי מתוך השימוש במונחים בעלי השפעה ושכנוע להגיע למטרות המבוקשות.

 במלים אחרות, שמעון פרס, לעתים, מתמקד בשפה מליצית ויעמוד הרבה מול העתיד, בשאלה הזאת הוא רוצה לומר צריך עלינו לקשר בין העבר לבין ההווה, למען העתיד. המימד הפרגמטי הזה הוא משחק במלים מטרתו להגיע למצב חדש שייך ומשרת את המטרות הישראליות במזרח התיכון.

 בתחום הזה פרס השתמש ברב מקורות היסטוריים ודתיים בנאומיו להבהיר את ההיסטוריה של עם ישראל וזכותו בחיים, אבל הרעיון הזה הוא להלהיב את ריגושי הקהל, וגם כן השמירה על ישראל מול האוייבים לפי דעתו.

 

Abstract

      The present research tackles the effect and persuasion in the political discourse of Shimon Peres. It analyzes pragmatically some of his political addresses.

     The research elaborates a historical background of Pragmatics, its rise and its relation to the analysis of the political discourse, too. It discusses methods of effect and persuasion, how they may be employed to convey messages to a certain recipient audience; govern its emotions and attract it to side with the orator as well.

     The pragmatic dimension of the addresses of Shimon Peres, his style of manipulating words and employing them in a suitable way to convey messages to the addressees in order to persuade it with the idea of the address have also been elaborated

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Publication Date
Thu Jul 20 2023
Journal Name
Ibn Al-haitham Journal For Pure And Applied Sciences
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In the current century, nanotechnology has gained great interest due to its ability to modify the size of metals to the nanoscale, which dramatically changes the physical, chemical, and biological characteristics of metals relative to their bulk counterparts. The approaches used to create nanoparticles (NPs) are physical, و chemical and وbiological. The shortcomings in physical and chemical synthesis approaches, such as the generation of toxic by-products, and energy consume as they require high temperature, pressure, power and lethal chemicals, contributed to an increased interest in biological synthesis by plants. Scientists have created a new filed called as "green nanotechnology" by fusing the idea of sustainability with nanotechno

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Wed Dec 01 2021
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Fiber-to-the-Home (FTTH) has long been recognized as a technology that provides future proof bandwidth [1], but has generally been too expensive to implement on a wide scale. However, reductions in the cost of electro-optic components and improvements in the handling of fiber optics now make FTTH a cost effective solution in many situations. The transition to FTTH in the access network is also a benefit for both consumers and service providers because it opens up the near limitless capacity of the core long-haul network to the local user. In this paper individual passive optical components, transceivers, and fibers has been put together to form a complete FTTH network. Then the implementation of the under construction Baghdad/Al

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Publication Date
Sun Jun 21 2020
Journal Name
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Thu Apr 28 2022
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Publication Date
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In today's world, most business, regardless of size, believe that access to Internet is imperative if they are going to complete effectively. Yet connecting a private computer (or a network) to the Internet can expose critical or confidential data to malicious attack from anywhere in the world since unprotected connections to the Internet (or any network topology) leaves the user computer vulnerable to hacker attacks and other Internet threats. Therefore, to provide high degree of protection to the network and network's user, Firewall need to be used.

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Publication Date
Sun Apr 30 2017
Journal Name
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Study structure and optical properties of Ag2Se, Ag2Se0.8Te0.2 and Ag2Se0.8S0.2 thin films
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