Question: 1 Write an AVR program that read the potentiometer voltage measurements as analog data through channel 0 of ADC. I ADC uses 5V AVCC as Vref, right-justified the result, and a prescaler of 128. Program the microcontroller to automatically finish the conversion from analog to binary and save the binary result in an integer variable. I If the measured voltage is above 10000000002, then the LED attached to pin PBO will turn on. When on turning of the potentiometer, the voltage goes below 2.5V, then the LED will shut off. Activat
Question: 1 Write an AVR program that read the potentiometer voltage measurements as analog data through channel 0 of ADC. I ADC uses 5V AVCC as Vref, right-justified the result, and a prescaler of 128. Program the microcontroller to automatically finish the conversion from analog to binary and save the binary result in an integer variable. I If the measured voltage is above 10000000002, then the LED attached to pin PBO will turn on. When on turning of the potentiometer, the voltage goes below 2.5V, then the LED will shut off. Activat
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Transcribed Image Text:IENF641: Microcontrollers
FORMATIVE ASSESSMENT 2
Chapter 6:
Interfacing ADC Devices with the Microcontroller
|
Question:
I Write an AVR program that read the potentiometer voltage
measurements as analog data through channel 0 of ADC.
I ADC uses 5V AVCC as Vref, right-justified the result, and a prescaler of
128. Program the microcontroller to automatically finish the conversion
from analog to binary and save the binary result in an integer variable.
If the measured voltage is above 10000000002, then the LED attached to
pin PBO will turn on. When on turning of the potentiometer, the voltage
goes below 2.5V, then the LED will shut off.
Activate

Transcribed Image Text:MATH507/CSCI645 – OPTIMIZATION TECHNIQUES
ACTIVITY- Week7
1. Solve the following LPP using Big M Method
Minimize Z = 600x1 + 500 x2
Subject to 2x1 + x2 >= 80
x1 + 2x2 >= 60
and
x1, x2 >= 0
2. Solve this LPP using Two Phase Method
Min Z = x1 + x2
Subject to 2x1 + x2 >= 4
x1 + 7x2 >= 7
and x1, x2 >= 0
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