{"id":6502,"date":"2021-04-17T21:57:23","date_gmt":"2021-04-17T21:57:23","guid":{"rendered":"https:\/\/education.tiu.edu.iq\/physics\/?page_id=6502"},"modified":"2025-11-03T09:03:34","modified_gmt":"2025-11-03T09:03:34","slug":"projects-and-thesis","status":"publish","type":"page","link":"https:\/\/education.tiu.edu.iq\/physics\/projects-and-thesis\/","title":{"rendered":"Projects and Thesis"},"content":{"rendered":"<div class=\"fusion-fullwidth fullwidth-box fusion-builder-row-1 fusion-flex-container nonhundred-percent-fullwidth non-hundred-percent-height-scrolling\" style=\"--awb-border-radius-top-left:0px;--awb-border-radius-top-right:0px;--awb-border-radius-bottom-right:0px;--awb-border-radius-bottom-left:0px;--awb-flex-wrap:wrap;\" ><div class=\"fusion-builder-row fusion-row fusion-flex-align-items-flex-start fusion-flex-content-wrap\" style=\"max-width:1331.2px;margin-left: calc(-4% \/ 2 );margin-right: calc(-4% \/ 2 );\"><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-0 fusion_builder_column_1_1 1_1 fusion-flex-column\" style=\"--awb-bg-size:cover;--awb-width-large:100%;--awb-margin-top-large:0px;--awb-spacing-right-large:1.92%;--awb-margin-bottom-large:0px;--awb-spacing-left-large:1.92%;--awb-width-medium:100%;--awb-spacing-right-medium:1.92%;--awb-spacing-left-medium:1.92%;--awb-width-small:100%;--awb-spacing-right-small:1.92%;--awb-spacing-left-small:1.92%;\"><div class=\"fusion-column-wrapper fusion-flex-justify-content-flex-start fusion-content-layout-column\"><div class=\"fusion-text fusion-text-1\" style=\"--awb-text-color:#000102;\"><h2 class=\"\" style=\"--fontsize: 34; line-height: 1.47;\" data-fontsize=\"34\" data-lineheight=\"49.98px\">Physics Education Department Projects<\/h2>\n<ul>\n<li style=\"text-align: left;\">\n<p><strong>Title of Project: <\/strong><span style=\"font-size: 16px;\">Investigating The Physical Properties and <\/span><span style=\"background-color: var(--awb-bg-color-hover); color: var(--awb-text-color); font-family: var(--awb-text-font-family); font-size: var(--awb-font-size); font-weight: var(--awb-text-font-weight); letter-spacing: var(--awb-letter-spacing); text-transform: var(--awb-text-transform);\">Application of Quantum Dots<\/span><\/p>\n<\/li>\n<\/ul>\n<ul>\n<li>\n<p><strong>PREPARED BY: <\/strong>Chiaxan<span style=\"font-size: 16px;\"> Adnan Haji<\/span><\/p>\n<\/li>\n<li>\n<p><strong>SUPERVISED BY: <\/strong><span style=\"font-size: 16px;\">Prof. Dr. Azeez A. Barzinjy<\/span><\/p>\n<\/li>\n<li><strong>ABSTRACT<\/strong><br \/>Nanomaterials refer to materials with dimensions ranging between 1 and 100<br \/>nanometers. They have transformed numerous research domains owing to their<br \/>distinctive optical, electronic, and other characteristics. Among these nanostructured<br \/>materials. the materials that range from 2 to 10 nanometers are known as quantum<br \/>dots. Quantum dots are notable due to their high surface area-to-volume ratio, surface<br \/>plasmon resonance, and quantum confinement effects. The term &#8220;quantum dot&#8221; stems<br \/>from their extremely diminutive size, resembling a single point or dot, hence termed as<br \/>zero-dimensional material. Usually, a few dozen to a few thousand atoms make up a<br \/>quantum dots. Consequently, they hold significant promise for a wide array of<br \/>applications across various fields. This study is structured into three sections. Firstly, it<br \/>covers the fundamental principles of quantum dots. The subsequent section delves into<br \/>diverse synthesis methods for quantum dots, encompassing techniques such as<br \/>hydrothermal, sol-gel, coprecipitation, laser ablation, biogenic, microwave-assisted, and<br \/>sonochemical. In the last section, many uses for quantum dots are discussed, including<br \/>photocatalysis, solar energy, light-emitting diodes, sensors, water photo-splitting,<br \/>targeted medication delivery, cancer treatment, and more. It is foreseeable that quantum<br \/>dots will soon establish themselves as transformative particle, heralding remarkable<br \/>advancements in the years ahead.<br \/><strong>Keywords:<\/strong> Nanomaterials, Nanotechnology, Quantum dots, Quantum confinement,<br \/>Quantum dot synthesis, quantum dot applications.<\/li>\n<\/ul>\n<p>&nbsp;<\/p>\n<p><strong>&nbsp; &nbsp; &nbsp; &nbsp;Title of Project: <\/strong>Classification and Application of self-Healing materials: A Review<\/p>\n<ul>\n<li><strong>PREPARED BY: <\/strong>Rayan Mohammed Fatah, Zainab Adil Hussen<\/li>\n<li><strong>SUPERVISED BY: <\/strong>Sivar Aziz Baiz<\/li>\n<\/ul>\n<p>&nbsp;<\/p>\n<ul>\n<li><strong>ABSTRACT<\/strong><br \/>Self-healing materials have attracted a lot of attention recently because they offer<br \/>the potential to increase product dependability and safety while also extending product<br \/>lifespans and reducing replacement costs. The development of self-healing materials has<br \/>revolutionized material science and engineering by providing answers for durability and<br \/>structural integrity. Self-healing alloys stand out among these as great choices for a variety<br \/>of applications. Systems that can heal themselves can be made from a variety of polymers,<br \/>ceramics, and metallic materials. This page examines the various aspects of self-healing<br \/>alloys, including their kinds, compositions, workings, and uses. We start by giving a brief<br \/>overview of self-healing materials and stressing their importance in reducing structural<br \/>damage and lengthening material life. Next, we classify self-healing alloys according to<br \/>their composition (from metal matrix composites to shape memory alloys), and we talk<br \/>about their special qualities and their uses.<br \/>Keywords: smart materials, self-healing alloys, and self-healing effect.<\/li>\n<\/ul>\n<\/div><\/div><\/div><\/div><\/div>\n","protected":false},"excerpt":{"rendered":"","protected":false},"author":40,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-6502","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.2 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Projects and Thesis - Physics Education Department<\/title>\n<meta name=\"description\" content=\"Projects and Thesis,INVESTIGATION OF THERMAL CHARACTERISTICS OF CARBON NANOTUBES MEASUREMENT AND DEPENDENCE..\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/education.tiu.edu.iq\/physics\/projects-and-thesis\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Projects and Thesis - 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