MindBook decides to diversify their portfolio and invest in the “"RoboMap" technology which is a robot that maps different types of territories. The new CEO is trying to make some drastic changes to some of the software and hardware systems in the new version of the robot. You have been hired by the opposing faction in the board to lead an investigation on how the performance of the robot is affected by the new proposed changes. a) The first system that you will test is the navigation system. The robot maps the territory by calculating distances and angles whilst moving between various locations. It then stores on its system the shortest direct path from initial location to the intended target. During the test the robot navigates around a muddy surface in the following path: 55cm [NW] and then moves 45cm [S30°W]. The robot sends back to the server the following overall shortest path: 70cm [W10°S]. Use triangle or parallelogram method to verify the precision of the robot's navigation
MindBook decides to diversify their portfolio and invest in the “"RoboMap" technology which is a robot that maps different types of territories. The new CEO is trying to make some drastic changes to some of the software and hardware systems in the new version of the robot. You have been hired by the opposing faction in the board to lead an investigation on how the performance of the robot is affected by the new proposed changes. a) The first system that you will test is the navigation system. The robot maps the territory by calculating distances and angles whilst moving between various locations. It then stores on its system the shortest direct path from initial location to the intended target. During the test the robot navigates around a muddy surface in the following path: 55cm [NW] and then moves 45cm [S30°W]. The robot sends back to the server the following overall shortest path: 70cm [W10°S]. Use triangle or parallelogram method to verify the precision of the robot's navigation
Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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![Part E: Vectors
MindBook decides to diversify their portfolio and invest in the "RoboMap" technology which is a robot that maps
different types of territories. The new CEO is trying to make some drastic changes to some of the software and
hardware systems in the new version of the robot. You have been hired by the opposing faction in the board to
lead an investigation on how the performance of the robot is affected by the new proposed changes.
a) The first system that you will test is the navigation system. The robot maps the territory by calculating
distances and angles whilst moving between various locations. It then stores on its system the shortest
direct path from initial location to the intended target. During the test the robot navigates around a
muddy surface in the following path: 55cm [NW] and then moves 45cm [S30°W]. The robot sends back
to the server the following overall shortest path: 70cm [W10°S]. Use triangle or parallelogram method to
verify the precision of the robot's navigation
system.
Diagram not to scale](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0ca35383-db0a-455f-99b1-a98b5d3dd23e%2F10e9d0cc-fd12-4ae4-951c-688451965a47%2Fjqnb3w5_processed.png&w=3840&q=75)
Transcribed Image Text:Part E: Vectors
MindBook decides to diversify their portfolio and invest in the "RoboMap" technology which is a robot that maps
different types of territories. The new CEO is trying to make some drastic changes to some of the software and
hardware systems in the new version of the robot. You have been hired by the opposing faction in the board to
lead an investigation on how the performance of the robot is affected by the new proposed changes.
a) The first system that you will test is the navigation system. The robot maps the territory by calculating
distances and angles whilst moving between various locations. It then stores on its system the shortest
direct path from initial location to the intended target. During the test the robot navigates around a
muddy surface in the following path: 55cm [NW] and then moves 45cm [S30°W]. The robot sends back
to the server the following overall shortest path: 70cm [W10°S]. Use triangle or parallelogram method to
verify the precision of the robot's navigation
system.
Diagram not to scale

Transcribed Image Text:b) The next test involves the performance of the new battery. The robot encounters an obstacle on his
journey. Using its arm it applies a force of 35N at an angle of 25° below horizontal and is able to
displace the object for 20m in a time of 65s. At the beginning of the test the battery's is displaying a total
stored energy (ability to perform mechanical work) of 2500 N'm. What would be the remaining energy
displayed at the end of the test? Useful formula: AE = W (change in available energy is equal to the
work done)
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