• Tidak ada hasil yang ditemukan

List of Figures

N/A
N/A
Protected

Academic year: 2024

Membagikan "List of Figures"

Copied!
8
0
0

Teks penuh

(1)

Write your title here

M. Sc. Thesis Proposal

Submitted in Partial Fulfilment of the Requirements For the Degree of

Master of Science In

Computer Science & Engineering Umm Al-Qura University

By:

Write your name here Student No: 4xxxxxxx

Supervisor Name:

Dr. Write your supervisor name here

October 3, 2018 I

(2)

Table of Contents

List of Tables

...III List of Figures...IV Abstract... V

1. Introduction...- 1 -

2. Problem Statement...- 1 -

3. Literature Survey...- 2 -

4. Expected Research Contributions...- 2 -

5. Research Approaches and Methodologies...- 2 -

6. Research Plan...- 2 -

References...- 3 -

II

(3)

List of Tables

Table 1: M. Sc. core courses: An example of a table...- 1 -

III

(4)

List of Figures

Figure 1: UQU logo: An example of a figure...- 1 -

IV

(5)

Abstract

Write your abstract here

V

(6)

1. Introduction

Write your introduction here

An example of a journal paper citation is given in [1]

An example of a book citation is given in [2]

An example of a conference paper citation is given in [3]

Figure 1 gives an example of how to insert Figures

Figure 1: UQU logo: An example of a figure.

Table 1 gives an example of how to insert tables

Table 1: M. Sc. core courses: An example of a table Course ID Course Name Credit Hours

1400501 Operating Systems 3

1400502 Design & Analysis of Algorithms 3

1400503 Computer Architecture 3

Below is an example of a subsection

1.1 Example of a subsection

Write your subsection here

(7)

2. Problem Statement

Describe your research problem here

3. Literature Survey

Write your literature survey here

4. Expected Research Contributions

Write your contributions here

5. Research Approaches and Methodologies

Write your research approaches and methodologies here

6. Research Plan

Describe your plan and time schedule here

(8)

References

[1] A. A. Morgan, H. Elmiligi, M. W. El-Kharashi, and F. Gebali, “A unified multi- objective mapping and architecture customization of networks-on-chip,” IET Computers and Digital Techniques, vol. 7, no. 6, pp. 282–293, Nov. 2013.

[2] F. Gebali, Computer Communications networks: Analysis and Design, 3rd ed.

Northstar Digital Design, inc., 2005.

[3] A. A. Morgan, H. Elmiligi, M. W. El-Kharashi, and F. Gebali, “Multi-objective optimization for networks-on-chip architectures using genetic algorithms,” in Proceedings of the 2010 IEEE International Symposium on Circuits and Systems (ISCAS'10), Paris, France, May 30–June 2, 2010, pp. 3725–3728.

Referensi

Dokumen terkait

The model used in this study incorporated perceived uniqueness of complete image and perceived uniqueness of tourist attraction and activity into destination image and attractiveness,

is through indicator of perception where is about evaluation of students, evaluation mean they feeling agreed about used with teaching practice in microteaching because they feel their

It is well known that individual states compete against one another, offering large packages of incentives to firms who open within their borders – a process popularly known as the

In an ideal future for Mississippi, school choice can enable students to attend higher-performing public schools nearby that are outside of their district through open enrollment while

2.3 GLMM Specification for an NRI Design Model specification The GLMM specification with a full random structure for an NRI design can be written as logit[Pyji[k]=1|s0j,s1j,wi[k]]

3.7 Control Current Variation for Controlled Response of the Rotor-Shaft System at 2400 rpm, with a Base Excitation due to Pitching Motion of an Amplitude 0.3 rad and a Frequency 185

"Electron-electron interaction effects on the optical excitations of semiconducting single-walled carbon nanotubes." Physical Review Letters 9315... Fermi velocity vF is approximated

9 1.4 Dependence of scattering distribution a and scattering coefficient b on the imaginary part of the refractive index...10 1.5 Dependence of scattering distribution a and scattering