CSC 3380 – Introduction to Robotics nan – Exclusive Course Details

nan Course Introduction

1.5 Cr
Recitation: CSC 3360 (nan) 1.5 Cr

Prerequisites

CSC 1213 and CSC 1214 or equivalent knowledge.

Co-requisites

CSC 3231, CSC 3432, and CSC 3433.

Attributes

Discipline Technology
Total Credits: 42
Total Weeks: 52
Semesters Offered Winter

Course Attributes

Learning Outcomes

Knowledge and understanding

– Know the fundamental concepts

nan Course Description

12-30-15
The University of Texas at Austin
CSC 3380 – Introduction to Robotics

2. 2 + 3 = 5 – Answer key was wrong, but no one checked it. I did!

2/1/2016 – Open book: Explain and show your work for problems #8 and #10 using a computerized calculator.

2/4/2016 – You must make calculations in a program (such as Matlab or Maple) that

Universities Offering the nan Course

– CSC 3380.

nan Course Outline

Document Properties     (document.properties)  

Note: This course is designed to be used in conjunction with your other courses. The course outline will not take into account the limitations of what you will learn from your other courses.

Introduction to Robotics: CSC 3380 Introduction to Robotics Syllabus

Course Curriculum Vitae – Course Personnel

Course Goal Statement – Course Goals and Objectives

Textbook: S. Nair, D. F. Kaelbling, and D.

nan Course Objectives

Learning Objectives for CSC 3380 – Introduction to Robotics

– Describe basic principles of robotics systems and applications.
– Identify concepts related to design, analysis, control, and communication of a robot system.
– Apply the robotic knowledge gained in the CSC 3250 or CSC 3260 introductory courses in engineering projects.
– Understand the software environment used in Robotic Systems.

Introduction to Robotics

CSC 3380 is an introduction course to the field of robotics. The goal of this course

nan Course Pre-requisites

* CSC 3310 – Basic Programming Concepts (nan)
* CSC 3440 – Computer Systems Hardware and Software Applications (nan)

Course Technologies

* Course Webpage
* Course Moodle Site
* Course Canvas Site

Student Outcomes

Upon successful completion of this course, students will be able to:

– Develop an understanding of the basic principles of robotics design.
– Understand the basic principles of computer programming.
– Program a robot using a specific programming language.
– Create

nan Course Duration & Credits

December 2018* Course Duration & Credits for CSC 3380 – Introduction to Robotics (nan) December 2018*

Course Syllabus

Course Syllabus

Meeting Times

Wednesday mornings from 10:30 am to noon in RUB 256/RCR Meeting Time

Regular Instructional Schedule:

9:00 am – 10:30 am

Student Presentations and Discussions, Labs, Experiments, and Projects are scheduled during this time.

Labs and experiments begin

nan Course Learning Outcomes

Name:_______________________ Date: ___________

The student has demonstrated the ability to develop a working knowledge of the following concepts:

1. Introduction to Robotics

2. Computer Programming

3. Image processing

4. Sensing and Actuation

5. Microcontroller based hardware design.

6. Robot programming using Java.

7. Communication and networking over the Internet.

8. Design and implementation of a robot system with use of commercially available robotic

nan Course Assessment & Grading Criteria

(nan)

Course Assessment & Grading Criteria for CSC 3380 – Introduction to Robotics (nan)

– Academic dishonesty: Cheating on tests or assignments.
– Political Activity: Not participating in or endorsing a political campaign.
– Dress Code: Lacking the required uniform, attire or equipment that is mandated by the school.
– Use of Technology: Using technology as an aid to distraction or failure to comply with established standards of conduct will result in appropriate disciplinary action.

Grading

Evaluation

nan Course Fact Sheet

by fce and .pdf – bing.com. Do you know where can I get the answer key for CSC 3380, Introduction to Robotics? – Duration: 0:31. By This course provides an introduction to robotic systems, and is designed primarily for students who have little or no prior experience with robotics. The course has been structured so that the first half of the course will be dedicated to developing fundamental principles in the areas of kinematics and dynamics, control theory, sensors and actu

nan Course Delivery Modes

Syllabus for CSC 3380 – Introduction to Robotics

Introduction to the Development of Robotic Systems

This course is an introduction to the development of robotic systems. It examines how robots work and the design principles that go into designing robots. The course covers a variety of aspects related to the design of robotic systems such as process planning, sensor networks, and robot movement.

Students will be given opportunities to learn about common robotics technologies such as sensors, motion controllers, actuators, sensors and

nan Course Faculty Qualifications

CSC 3380 is an upper division, non-credit bearing course that will focus on the design and implementation of autonomous robots. Through a variety of activities, students will learn to design and implement advanced robotic systems from the ground up. The course begins with an introduction to robotics as a branch of engineering and gives students a foundation for designing intelligent robots. After completing this unit, students will be introduced to computer vision and image processing techniques that are essential in designing intelligent robots. They will then learn to program

nan Course Syllabus

of this course.

Graduation Requirement (Requirements for Degrees)

The student is required to complete a minimum of 45 credits.

General Education Requirements

General education requirements must be met in addition to the major.

A student must obtain a grade of “C” or better in each required general education course. To achieve this, the following are acceptable substitutions:

– ONE (1) credit of “Introduction to Science” with Professor Ray Othmer at 2:00 p.m. on

Suggested nan Course Resources/Books

(3)

CSC3380 Laboratory Manual – Experiments in Robotics Technology (nan) (n/a)

CSC 3380 Technical Report – An Automatic Robot Manipulator for Markov Chain Modeling (n/a)

Lab Guide: CSC 3380 (exam) and Laboratory Report Template

Lab Manual: CSC 3380 Labs

CSC 3380 Lab Notebook

Software Resources for Labs and Projects:

Robot Operating System (ROS) Platform for Linux

Robot Operating System (ROS)

nan Course Practicum Journal

– EdX: IT 125 – Introduction to Web Development (nan)
– Columbia Gorge Community College: CSCI 1101 – Intro to Computing Concepts and Principles (nan)
– Columbia Gorge Community College: CSCI 2201 – Introduction to Programming (nan)
– Columbia Gorge Community College: CSCI 2302 – Advanced Programming (nan)
– Columbia Gorge Community College: CSIS 2211 – Introduction to Computer Science (nan)

Suggested nan Course Resources (Websites, Books, Journal Articles, etc.)

3/24/15 (Mon) 3:00 PM – 6:00 PM
4/07/15 (Mon) 3:00 PM – 6:00 PM
4/14/15 (Mon) 3:00 PM – 6:00 PM
4/21/15 (Mon) 3:00 PM – 6:00 PM
4/28/15 (Mon) 3:00 PM –

nan Course Project Proposal

Download Thesis Report on “Proposal for Course Project Proposal for CSC 3380 – Introduction to Robotics (nan)”
Download Thesis Report on “Thesis Proposal for CSC 6880 – Software Engineering Analysis (nan)”

CSC 3800: Principles of Database Systems

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Textbook(s):
Course Description:
Databases are a vital part of the modern software development industry. They can handle massive amounts of data and provide

nan Course Practicum

Student Exploration: Problem Solving with Control Systems (nan)

Open an Online Course

Note: We have a course running for the week of December 14 and 15 that uses some online components. Some of this course requires Javascript to function properly. Please visit our Course Overview page for details on this course.

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Related nan Courses

CSC 3452 – Introduction to Chemical Physics (nan)
CSC 3454 – Computational Molecular Modeling (nan)
CSC 3460 – Introduction to Quantum Chemistry (nan)
CSC 3463 – Atomic, Molecular, and Optical Physics (nan)

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Midterm Exam

(1.0)
Midterm Exam for CSC 3380 – Introduction to Robotics (gr9) (1.0)
Midterm Exam for CSC 3380 – Introduction to Robotics (nan) (1.0)
Midterm Exam for CSC 3380 – Introduction to Robotics (gr9) (1.0)
Midterm Exam for CSC 3380 – Introduction to Robotics (nan) (1.0)

Top 100 AI-Generated Questions

and CS 4840 – Artificial Intelligence (nan) –

https://www.cs.cmu.edu/classes/csc3380/syllabus.html

-These two classes use Python and MATLAB for the robots and AI, respectively.

-Course website is: https://github.com/TechTU/AI

-Find similar courses at the University of California system, e.g. CS 3830 – Introduction to Data Science (nan)

– 3rd year student working in a data science group

https

What Should Students Expect to Be Tested from nan Midterm Exam

in Fall 2021

What Should Students Expect to Be Tested from nan Midterm Exam for CSC 3380 – Introduction to Robotics (nan) in Fall 2020

What Should Students Expect to Be Tested from nan Midterm Exam for CSC 3380 – Introduction to Robotics (nan) in Fall 2019

What Should Students Expect to Be Tested from nan Midterm Exam for CSC 3380 – Introduction to Robotics (nan) in Fall 2018

What Should Students Expect

How to Prepare for nan Midterm Exam

at UCLA

Download this study guide

Study on the go with mobile-friendly study guides!

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Prepared by: Tohu

Midterm Exam Questions Generated from Top 100 Pages on Bing

generated on 2019-09-16 by [sophia] using batch script

 
0.039 seconds (13 queries in 0.001 seconds)

Midterm Exam Questions Generated from Top 100 Pages on Google

Final Exam

Syllabus: http://ccrma.stanford.edu/sites/default/files/2017-05/Syllabus3.pdf
Assignments:
Assignment 1 due: 09/30/17, 11:59pm (online)
Assignment 2 due: 10/14/17, 11:59pm (online)
Final Project Due: TBD

**Fall Term**
Due: 08/31/17 at 11:59pm

Assignment

Top 100 AI-Generated Questions

(10%)
“Mathematical Modelling of Complex Physical Systems”
– Notes are not provided by the course professor – you will have to find them online. (1)
– Preliminary lecture notes are provided on Sakai by the professor. (1)
– Textbook(s): None provided. (1)
– Suggested readings: None provided. (2)

Assignments

Name Due %
Assignment 2 18 Jan 2021 33%
Assignment 3 15

What Should Students Expect to Be Tested from nan Final Exam

?

Key Takeaways:

1) Introduction to Robotics

2) Nanotechnology

3) Fundamental principles of nanotechnology

4) Types of nanomaterials

5) Characterization techniques of nanomaterials

6) Applications of nano-technology in healthcare, agriculture and material science.

7) Potential applications in nanobiotechnology.

8) Future challenges in nanoscience and technology.

9) What is Nano-science?

10. What is the Nano-biology?

11. What are

How to Prepare for nan Final Exam

CSC 3380 Final Exam Answers for Week 2 CSC3310 CSC3380 CSC3390 CSC3410 CSC3440 CSC3450 CSC3460 Csci 3350 Csci 3360 Csci 3370 Csci 3380 Csci 3390 Csci 3411 Csci3422 CSCI 3432

Final Exam Questions Generated from Top 100 Pages on Bing

References

To calculate the course grades, we use the traditional numbering system and simply add together all the final exam questions. The highest grade is 100% while every other grade is a percentage from 0-90%. For example, a grade of 80% means that the student got every question right (80/100 = 80%).

From top to bottom:

10%, 40%, 50%, …, 100%

from top to bottom:

70%, …, 75%, …,

Final Exam Questions Generated from Top 100 Pages on Google

TOP 100 PAGES ON GOOGLE FOR CSC 3380 – INTRODUCTION TO ROBOTICS

– https://www.nu.edu.sa/robohub
– http://www.cs.auckland.ac.nz/~andrew/robotics/cs3380/index.html
– https://en.wikipedia.org/wiki/RoboCup
– https://en.wikipedia.org/wiki/Robotics
– https://www.physics.byu.edu/teaching/robotics/
– http://roboticst

Week by Week Course Overview

nan Week 1 Description

Introduction to Robotics Week 1 The following is a sample of the discussion on the assignment for week one. You will be graded based on how well you comply with the weekly rules listed in the syllabus. Assignment: Overview of OWL Studio

Week One

In your group, create a new project using the OWL Studio editor.

Write up an overview of your project and any other project details you think are relevant. Discuss your project structure, workflow, and programming code from both a high level

nan Week 1 Outline

Week 2 Introduction to C++ (nan)

Week 3 Forms and Functions (nan)

Week 4 Arrays, Strings, and Memory Management (nan)

Course Outcome:

Students will be able to develop software for a robotic application through the use of a common programming language, C++, as well as object oriented concepts in computer science. They will also understand how design of the system helps guide its implementation.

Course Objectives:

nan Week 1 Objectives

– P1, P2

Week 2 Objectives for CSC 3380 – Introduction to Robotics (nan) – P1, P2

Week 3 Objectives for CSC 3380 – Introduction to Robotics (nan) – P1, P2

Week 4 Objectives for CSC 3380 – Introduction to Robotics (nan) – P1, P2

Week 5 Objectives for CSC 3380 – Introduction to Robotics (nan) –P3,

nan Week 1 Pre-requisites

– N/A
– 3 Weeks
– 2 Hours
– Self-paced

Welcome to the LBSN. I am excited to offer you this course and share with you what I have learned from my robotics experience.

View in Instructor Profile

Lab

Lab Book (Load)
None found.

Course Textbooks

RoboCup: Soccer for a Reason 1st Edition
by Daniel Eslami, Jean-Marc Meunier
(2)

Need help ASAP?

nan Week 1 Duration

Week 1
Wed, 03/06 – Fri, 03/08
Schedule Page
Sat, 03/09 – Sun, 03/10
Schedule Page

You can find out what this course is about by viewing the details of this course on the MIT OpenCourseWare page for CSC 3380 (Spring 2014).

Some links for more information:

– Homework
– Lectures and Classroom Assignments
– Sample Problems
– FAQs

Course Information

nan Week 1 Learning Outcomes

Assessment Details
Assessment Type Assessment Description Percent of Total Best Score (Percentage)
Essay 20% 50%
Assignment 30% 70%

Ethical Considerations for Human-Computer Interaction
Case Study

January, 2012

This paper is a case study on the ethical concerns and issues that a researcher may encounter when developing and evaluating a human computer interaction system for a specific user task, such as a shopping cart system. The case study will discuss how researchers

nan Week 1 Assessment & Grading

Question: Week 1 Assessment & Grading for CSC 3380 – Introduction to Robotics

Question: Week 2 Assessment & Grading for CSC 3380 – Introduction to Robotics

Question: Week 3 Assessment & Grading for CSC 3380 – Introduction to Robotics

Question: Week 4 Assessment & Grading for CSC 3380 – Introduction to Robotics

Question: Week 5 Assessment & Grading for CSC 3380 – Introduction to Robotics

Question: Week

nan Week 1 Suggested Resources/Books

7 Pages. Week 1 Suggested Resources/Books for CSC 3380 – Introduction to Robotics (nan)

2 Comments

The Purdue University Online Writing Lab serves writers from around the world and the Purdue University Writing Lab helps writers on Purdue’s campus. English Composition I (ENG-101) is an online course designed to help students prepare for success in college-level writing courses and beyond.

CSC 3340 CSC 3410 CSC 3450 CSC 3460 CSC 3470

nan Week 1 Assignment (20 Questions)

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nan Week 1 Assignment Question (20 Questions)

. The grades for this work will be determined using the following scale:

Academic honesty

I have read and understood the policies regarding academic honesty for the School of Computing Sciences. I understand that I am required to report any case of academic dishonesty to the instructor prior to receiving a final grade. This is not intended as a blanket rule for all assignments, but only for those assignments where academic dishonesty may occur.

The current version of the policy can be found at http://www.umich

nan Week 1 Discussion 1 (20 Questions)

at University Of Minnesota, Twin Cities. ( 1)

nan Week 1 DQ 1 (20 Questions)

Submitted by jessicarosee 04/14/16

Chapter 1 (20 Questions) for CSC 3380 – Introduction to Robotics (nan) Submitted by jessicarosee 04/14/16 Chapter 2 Quiz (10 Questions) for CSC 3380 – Introduction to Robotics (nan) Submitted by jessicarosee 04/14/16

Chapter 3 Quiz (10 Questions) for CSC 3380 – Introduction

nan Week 1 Discussion 2 (20 Questions)

at University Of Wisconsin Oshkosh.

Q:
Question 2
Do you agree or disagree with the statement below? The current system is very user friendly.

A:
Statement

3.

Q:
Question 3
In this course you will learn to use the programming language C++. What skills do you think that you would gain from learning C++?

A:
Question

4.

Q:
Question 4
This week, we began exploring using a

nan Week 1 DQ 2 (20 Questions)

from University of Phoenix

Autonomous robots are used in the entertainment industry for robot assistants and in 3D reconstruction. In order to develop more effective autonomous robots, they must be able to monitor their environment. The development of a high-level programming language that can be used for real-time sensing, localization, planning, and simulation will allow for robots to self-organize in an intelligent way that leads to automated systems that are capable of making decisions.

Read more »

Simulation: How Is it Used?

nan Week 1 Quiz (20 Questions)

at University of Illinois, Urbana-Champaign.

This section is from the book “Robotics”, by Robert S. Feldman.

View full version of the sample
Q 1: Which of the following models does not provide an ideal solution for controlling a robot arm?
A: Controlled-glide
B: Controlled-no-touch

Q 2: You have just completed an operation on your robot arm using the bot control system.
What is the new movement you should implement to make sure your

nan Week 1 MCQ’s (20 Multiple Choice Questions)

at Strayer University, Spring 2017.

CSC3380 Week 1 MCQ’s (20 Multiple Choice Questions) for CSC 3380 – Introduction to Robotics (nan) at Strayer University, Spring 2017.

Learn CSC 3380 Week 1 MCQ’s (20 Multiple Choice Questions) for CSC 3380 – Introduction to Robotics (nan) with free interactive flashcards. Choose from 500 different sets of CSC 3380 Week 1 MCQ’s

nan Week 2 Description

Mar 26, 2020 CSC 3380 Week 2 Description for CSC 3380 – Introduction to Robotics (nan) This course will provide an introduction to robot design, programming, and control theory. Topics will include different types of robots; the roles of sensors, actuators, and microprocessors in a system; path planning; manipulators and grasping; perception, learning, and control. Students will learn about the basic concepts underlying the design of robotic systems through lectures and discussions.

nan Week 2 Outline

Post your answers to the following questions.

1. What is a robot? 2. How do robots make their living?

3. How do robots interact with humans? 4. Describe the functionality of a simple robot that is found in everyday life (e.g., fire fighter, construction worker, etc.). 5. Does robotics have a future as an emerging field of study and practice? If so, why or why not?

Nanotechnology and robotics are merging into one ever

nan Week 2 Objectives

(1 week)

CSC 3380 – Introduction to Robotics

This course is an introduction to the design, implementation and application of robotics in engineering. Students will work with robotic hardware and software tools for the design of autonomous robots and mobile manipulators.

Spring 2006 Course Outline

– Course Requirements
– Sample Syllabus
– Course Outline
– Textbook(s)

Nanotech Week 2 Objectives for CSC 3380 – Introduction to Robotics (nan)

The following

nan Week 2 Pre-requisites

CSC 3380 Week 3 Pre-requisites for CSC 3380 – Introduction to Robotics (nan) CSC 3380 Week 4 Pre-requisites for CSC 3380 – Introduction to Robotics (nan) CSC 3380 Week 5 Pre-requisites for CSC 3380 – Introduction to Robotics (nan) CSC 3380 Week 6 Pre-requisites for CSC 3380 – Introduction to Robotics (nan) CSC 338

nan Week 2 Duration

1 Week
Week 3 Duration for CSC 3380 – Introduction to Robotics (nan) 1 Week
Week 4 Duration for CSC 3380 – Introduction to Robotics (nan) 1 Week
Week 5 Duration for CSC 3380 – Introduction to Robotics (nan) 1 Week
Week 6 Duration for CSC 3380 – Introduction to Robotics (nan)
Week 7 Duration for CSC3012 – Programming Project Design and Development I

nan Week 2 Learning Outcomes

Learn how to build robotic systems that can function in a wide variety of environments and situations. This course examines the basic principles, design techniques, and components of robots as well as the applications of robot technologies. Emphasis is on understanding how to analyze and solve problems, as well as develop new problem-solving techniques through learning about specific robot projects and their design. By the end of this course, students should be able to:
Define the fundamental characteristics of a robot system
Explain advantages and limitations of

nan Week 2 Assessment & Grading

by Beany M. Rated 4.5 out of 5 (1,099 students rated this resource) 9,400 students added this resource to their cart. This review was given to the entire class and will be uploaded to Moodle at a later date. Discussion Questions: … CSC3380 Week 1 DQ 2 CSC3340 Week 7 DQ-1 CSC3380 Week 2 Assignment CSC3340 Week 6 DQ-1 CSC3380 Week

nan Week 2 Suggested Resources/Books

– Life Science Week 1 Suggested Resources/Books for CSC 3380 – Introduction to Robotics (nan)
– Business Week 1 Suggested Resources/Books for CSC 3380 – Introduction to Robotics (nan)
– History Week 3 Suggested Resources/Books for CSC 3380 – Introduction to Robotics (nan)

Last modified on Mar. 16, 2020 by jakefeeney

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nan Week 2 Assignment (20 Questions)

2015-12-03 12:01 p.m. SOFTPLANE – CSC/3370

nan Week 2 Assignment Question (20 Questions)

from Chegg now! Other classes: CS 3410, CSC 3380, CSC 3381, CS 3411, CS 3412

For More Information

CSC 3380 – Introduction to Robotics (nan) Business for Students

CSC 3380 – Introduction to Robotics (nan) Course Material for Students

CSC 3380 – Introduction to Robotics (nan) Syllabus for Students

nan Week 2 Discussion 1 (20 Questions)

at University of Missouri St. Louis.

Question: In Week 2 Discussion 1 (20 Questions) for CSC 3380 – Introduction to Robotics, submit your answers in the form of a Microsoft® Word document with your responses in the body of the document and not as a separate file.

As a reminder, questions should be only three (3) pages long, formatted according to APA style guidelines.

There are no right or wrong answers when writing this paper. However, you should try to

nan Week 2 DQ 1 (20 Questions)

14. (10 points) According to the article, “States’ 3D-printed weapons could threaten national security,” in the Boston Globe on November 11, 2014, which of the following is true? The states that are currently working on the 3D-printed weapons that use thin-gauge steel are preparing for an attack on the United States. The state is preparing for an attack on a neighboring state. The state is preparing for an attack on a country other than

nan Week 2 Discussion 2 (20 Questions)

at University of Houston.

View this discussion about:

Questions and Answers

1. A recent undergraduate class in robotics

nan Week 2 DQ 2 (20 Questions)

from the year 2018 in the subject Computer Science – Software Engineering, Computer Science, grade: 2,0, University of Houston, course: CSC 3380 – Introduction to Robotics (nan), language: English, abstract: With the help of a remote controlled robot more and more people can complete daily activities by themselves. The robot creates a new environment to those who want to do things on their own with self learning. The robot is making the world more reachable for everyone. Moreover it

nan Week 2 Quiz (20 Questions)

from University of Central Florida

This is the first quiz in the second course in the CSC 3380 Introduction to Robotics. It tests your understanding of basic concepts in robotics.

Your answers will be checked automatically.

You need to submit a practice quiz before this one.

View Complete Quiz »

View All Questions »

Question 1: Which of the following is NOT an example of a visual cue? (Select all that apply.)

Answer:

Question 2: For which of the following was Moir’s control

nan Week 2 MCQ’s (20 Multiple Choice Questions)

at Florida International University, FIU. MCQs on Robotics and Control is a part of Robotics Study Materials Course. Here you can find MCQs for 1st year CSC 3380 – Introduction to Robotics (nan) course for preparation of competitive exams.

– Question Paper 2 for CSC 3380 – Introduction to Robotics

– All the best!

nan Week 3 Description

Copyright & License Disclaimer

The term Robotics is intended to include any type of programmable mechanical device that has a sensor or an actuator that can move on its own. These devices are typically used in manufacturing processes. The scope of the course is designed to introduce students to robotics and its applications in manufacturing.

Back to Nan Week 3 List

nan Week 3 Outline

Week 3 Lecture Outline (pdf)
Lab #1: Motor Control, Linear Circuits Week 4 Lecture Outline (pdf)

Lecture

Week 4 Topics

– Linear control system
– Sliding mode control
– Kalman Filter (Kf)
– PID controller

References:

http://www.cs.cornell.edu/courses/cs3380/Syllabus.pdf

Lab #2: SLAM Problem Statement Week 5 Lecture Outline (pdf)

Lecture

nan Week 3 Objectives

MATH 1380 MATH 2380
3 Year Fundamentals MATH 1381 MATH 2381
2 Semester Modules – CSC3380 (6 Credits) – Introduction to Robotics (nan)
Year Project CSC3381 (9 Credits) – Building Your Own Robotic Car (nan)

MTH 1380 Project A

MTH 1381 Project B

Previous Projects and References

– Student project page
– Student research poster
– Dana Z.

nan Week 3 Pre-requisites

Syllabus:
http://www.cs.brown.edu/~felix/papers/RoboWeek-2017.pdf

Anatomy of a Robot: 2D vs 3D, sensors, control, localization, etc.
Lab : https://sites.google.com/a/nan.cmu.edu/csc-3380-lab
Requirements for CSC 3380 – Introduction to Robotics
• Lab attendance and participation
• Technology use that does not interfere with classwork
• Proper presentation

nan Week 3 Duration

Degree Designation: Bachelor of Science in Computer Science Major(s): Computer Engineering Major Institution: University of Alberta Year Graduated: 2015 Total Credits for CSC 3380: 44.0 Final Grade for CSC 3380: C Main Adviser(s) Name: Andrew Sutherland, Computer Engineering Department Advisor Phone Number: (780) 492-3201 Email Address: asutherland@ualberta.ca Maximum Class Size: 20 Students Enrolled in this Course: As of

nan Week 3 Learning Outcomes

1 CSC 3380 Week 3 Learning Outcomes for CSC 3380 – Introduction to Robotics
• Explain the problem-solving strategy for creating motion programs.
• Describe how to design motion paths and trajectories that will maximize efficiency in real-world environments.
• Analyze the effects of changing the motor speed or direction on the robot’s position and velocity.
• Discuss problems related to optimizing a robot’s motion path, including how multiple robot applications may affect each other.
• Understand the roles of forces and

nan Week 3 Assessment & Grading

Posted: 2 days ago

… One of the following: a. A Graduate Degree in Engineering or Computer Science b. Six years experience in the design, development and evaluation of computer systems and data management applications c. Bachelor’s Degree in Engineering or Computer Science d. Graduat …

Walter Reed Army Institute of Research (WRAIR) Project Manager, Washington, DC Posted: 4 days ago

… contracts with multiple system integrators. As a Project Manager, you will be responsible

nan Week 3 Suggested Resources/Books

– CPUTech Webcasting – Introduction to Robotics (nan)
– CSC3380 Notes – First week (nan)
– CSC3380 Final Project – Second week (nan)

Week 4 Suggested Resources/Books for CSC 3380 – Introduction to Robotics (nan)
– CPUTech Webcasting – Introduction to Robotics (nan)
– CSC3380 Notes – Last Week of class (nan)
– CSC3380 Final Project – Last week of class

nan Week 3 Assignment (20 Questions)

at University of Texas at Austin

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nan Week 3 Assignment Question (20 Questions)

at University Of Florida, Gainesville. Choose one of the following topics:

You will need to know how to complete the assignment in the first few minutes after logging into the system, as you will not be able to return to this page once you have started your assignment. Therefore, it is important that you are familiar with all of the materials and resources available on the course web site.

1. Use a small robot ( 5 centimeters in height) to explore and interact with objects on an environmental

nan Week 3 Discussion 1 (20 Questions)

– StudyBlue

Study 6 CSC 3380 Week 3 Discussion 1 (20 Questions) for nan – CSC 3380 at Binghamton University, Binghamton, New York. Study 6 CSC 3380 Week 3 Discussion 1 (20 Questions) Flashcards | Quizlet Flashcards for Week One and Week Three of Understanding the Basics of Team-Based Learning. … Read More. See the complete profile on LinkedIn and discover kasey’s connections and jobs at

nan Week 3 DQ 1 (20 Questions)

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nan Week 3 Discussion 2 (20 Questions)

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nan Week 3 DQ 2 (20 Questions)

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nan Week 3 Quiz (20 Questions)

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nan Week 3 MCQ’s (20 Multiple Choice Questions)

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Question 1 of 20

A mechanical system for an automated welding ma