1. When an interrupt occurs, a process switches from the running state to the ready state. 2. Non-preemptive Scheduling used on systems where jobs are executed serially without interruption, such as single-task operating systems. 3. Waiting time for process(g) = waiting time of process(g-1)+ burst time of process(g-1)
1. When an interrupt occurs, a process switches from the running state to the ready state. 2. Non-preemptive Scheduling used on systems where jobs are executed serially without interruption, such as single-task operating systems. 3. Waiting time for process(g) = waiting time of process(g-1)+ burst time of process(g-1)
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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write true or false for each of the following statements:
![Q1/ Write True or False for each of the following statements:
1. When an interrupt occurs, a process switches from the running state to the ready
state.
2. Non-preemptive Scheduling used on systems where jobs are executed serially
without interruption, such as single-task operating systems.
3. Waiting time for process(g) = waiting time of process(g-1)+ burst time of process(g-1)
4. In Round-robin scheduling, processes are dispatched in a FIFO manner but are given
a limited amount of CPU time called a time-slice.
5. Joining means that the thread who invoked the last thread will wait for the last thread
to finish execution.
6. GetLastError() function that takes only one parameter.
7. To deal with a file in C++, writing and reading operations used <iofstream> standard
library in the header.
8. CPU utilization must be minimized according to scheduling criteria.
9. fstream is a standard C++ library, which define three data types: ofstream, ufsteam
and ifstream
10. Round-robin CPU scheduling algorithm considered as non-preemptive scheduling
algorithm.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6e76012a-28f0-4b7c-a437-9cdf33bc896a%2Fb93c2073-0ad5-4b15-8233-d37a792366c5%2Fflroi5d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q1/ Write True or False for each of the following statements:
1. When an interrupt occurs, a process switches from the running state to the ready
state.
2. Non-preemptive Scheduling used on systems where jobs are executed serially
without interruption, such as single-task operating systems.
3. Waiting time for process(g) = waiting time of process(g-1)+ burst time of process(g-1)
4. In Round-robin scheduling, processes are dispatched in a FIFO manner but are given
a limited amount of CPU time called a time-slice.
5. Joining means that the thread who invoked the last thread will wait for the last thread
to finish execution.
6. GetLastError() function that takes only one parameter.
7. To deal with a file in C++, writing and reading operations used <iofstream> standard
library in the header.
8. CPU utilization must be minimized according to scheduling criteria.
9. fstream is a standard C++ library, which define three data types: ofstream, ufsteam
and ifstream
10. Round-robin CPU scheduling algorithm considered as non-preemptive scheduling
algorithm.
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