Curriculum Design and Instruction To Teach
The Fundamentals Of Telecommunications:
Image Communications:
Author: Charles Hayes:
Telecommunication is the transmission
of signals over a distance for the purpose
of communication. In modern times, this
process typically involves the sending of
electromagnetic waves by electronic
transmitters but, in earlier years, it may
have involved the use of smoke signals,
drums or semaphore. Today, telecommunication
is widespread and devices that assist the
process, such as the television, radio and
telephone, are common in many parts of the
world. There are also many networks that
connect these devices, including computer
networks, public telephone networks, radio
networks and television networks. Computer
communication across the Internet is one of
many examples of telecommunication.
Telecommunication systems are generally
designed by telecommunication engineers.
Telecommunication is an important part of
the world economy; the telecommunication
industry's revenue has been placed at just
under 3% of the gross world product.
Special Features Include:
Phases For Conducting a Needs Assessment:
Curriculum Design Supplement:
|a|. Subject-Questions-Answers:
Curriculum Design Plan:
Curriculum Design Goals:
Curriculum Design Objectives:
Instructional Goals:
Instructional Objectives:
Instructional Activities:
Instructional Evaluation Techniques:
Lesson Plans:
Standard Vocabulary:
Key Words/Phrases:
Learning Objectives:
A Limited Glimpse:
Topics Include:
* Introduction:
@. Image Communications:
A. Background and Objectives:
B. Appreciation of Video Transmission:
1. Additional Definitions:
C. Composite Signal:
D. Critical Video Parameters:
1. General:
2. Transmission Standard Level:
3. Other Parameters:
E. Video Transmission Standards (Criteria for
Broadcasters):
1. Color Transmission:
2. Standardized Transmission Parameters
(Point-to-Point TV):
F. Methods of Program Channel Transmission:
G. Transmission of Video over LOS Microwave:
1. Bandwidth of the Baseband and
Baseband Response:
2. Preemphsis:
3. Differential Gain:
4. Differential Phase:
5. Signal-to-Noise Ratio (10 kHz to 5 MHz):
6. Continuity Pilot:
H. TV Transmission by Satellite Relay:
I. Digital Television:
1. Introduction:
2. Basic Digital Television:
3. Bit Rate Reduction and Compression
Techniques:
4. Overview of the MPEG-2 Compression
Technique:
I. Conference Television:
1. Introduction:
2. pX64 Codec:
J. Brief Overview of Frame Transport for
Video Conferencing:
1. Basic Principle:
* STATE OF THE ART CURRICULUM DESIGN:
* NEW:
* ILLUSTRATIONS:
* DIAGRAMS:
* BIBLIOGRAPHICAL REFERENCES & INDEX:
* PAPERBACK:
* TRANSPARENT FRONT PAGE:
* BLACK-WHITE-RED OR BLUE BACK PAGE COVER:
* BINDED WIRE-0: BLACK-WHITE-RED OR BLUE:
* 100 WHITE PAGES: 8x11"
* ALLOW 10 TO 14 DAYS TO RECEIVE ITEM: