Part D When the robot makes a turn, it would be useful to have an operation to perform on d to represent this turn. This is because after making a turm, he new value of d will depend on the old value of d. Complete the table for the new values of d if the robot is turning left or right. Then determine an expression in terms of d that will give the new position if the robot turns left and another expression if the robot turns right. Type these xpressions in the last row of the table. BIV X x Font Szes - A E E IEI

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Robot Navigation
Self-navigating robots are very useful in the real world. Reducing the risk of human error by having a computer do tasks can increase the safety of
transportation: Airplanes have systems that automate takeoffs and landings. Some cars can parallel park themselves. Cargo ships have autopilots.
Mazes offer a challenge that can be directly translated to these situations.
In this task, you are developing navigation software for a company that makes robotic systems that can direct themselves. As a first-level test of the
robot you are developing, you will have it navigate a maze.
North
West
East
South
Part D
When the robot makes a turn, it would be useful to have an operation to perform on d to represent this turn. This is because after making a turn,
the new value of d will depend on the old value of d. Complete the table for the new values of dif the robot is turning left or right. Then determine
an expression in terms of d that will give the new position if the robot turns left and another expression if the robot turns right. Type these
expressions in the last row of the table.
x x, Font Sizes
-A.
Initial d Left Turn Right Turn
Characters used: 58/ 15000
Part E
Given the answer for part D, write an expression that will tell you the direction the robot is going if, in the course of its journey, it turns left 21
times and turns right 22 times. Does the order the robot makes the turns in matter for the purpose of knowing the direction it is finally facing?
Transcribed Image Text:9:48 Expert Q&A Done Robot Navigation Self-navigating robots are very useful in the real world. Reducing the risk of human error by having a computer do tasks can increase the safety of transportation: Airplanes have systems that automate takeoffs and landings. Some cars can parallel park themselves. Cargo ships have autopilots. Mazes offer a challenge that can be directly translated to these situations. In this task, you are developing navigation software for a company that makes robotic systems that can direct themselves. As a first-level test of the robot you are developing, you will have it navigate a maze. North West East South Part D When the robot makes a turn, it would be useful to have an operation to perform on d to represent this turn. This is because after making a turn, the new value of d will depend on the old value of d. Complete the table for the new values of dif the robot is turning left or right. Then determine an expression in terms of d that will give the new position if the robot turns left and another expression if the robot turns right. Type these expressions in the last row of the table. x x, Font Sizes -A. Initial d Left Turn Right Turn Characters used: 58/ 15000 Part E Given the answer for part D, write an expression that will tell you the direction the robot is going if, in the course of its journey, it turns left 21 times and turns right 22 times. Does the order the robot makes the turns in matter for the purpose of knowing the direction it is finally facing?
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