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7.35- Necessary Conditions For Deadlock | Mutual Exclusion | No Preemption | DBMS Free Online Course Notes Link: http://www.tutorialsspace.com/Downloa... Complete Playlist: (Eng) DBMS Tutorials | Sql Tutorials | RDBMS Lectures • (Eng) DBMS Tutorials | Sql Tutorials | RDB... DBMS - Data Base Management System Tutorials • DBMS Complete Syllabus- All University exa... [With Notes & PDF File] | Database Management System In HINDI • [With Notes & PDF File] | Database Managem... Transactions & Concurrency Control In DBMS | Serializability | Recoverability | recovery System | Time stamp • Transactions & Concurrency Control In DBMS... transaction in dbms, transaction management system in dbms, dbms ugc net lectures, dbms gate lectures, serial schedule in dbms, what is schedule in dbms, schedule in dbms, non serial schedule in dbms, serializable schedule, Serializability in dbms, conflict serializable schedule in dbms, conflict serializable schedule, view serializability in dbms, recoverability of schedule, recoverable schedule, cascading rollback shedule, cascade less schedule, concurrency control techniques, lock based protocol in dbms, shared and exclusive lock, two phase locking in transaction, time stamp based protocol in transaction, validation based protocol in dbms, multiversion concurrency control, #dbms #gatedbms #ugcnetdbms #gatedbmslectures #ugcnetdbmslectures #dbmsLectures #dbmsTutorials #dbmsTutorials Social Links Twitter Account: / tutorialsspace FaceBook Page: / tutorialsspace Instagram : / tutorialsspace Telegram Channel: https://t.me/TutorialsSpace Telegram Group: t.me/TutorialsSpace Pin-Interst: / tutorialsspace youtube: / tutorialsspace Deadlocks A system is said to be in deadlock state if there exist a set of transactions {T0, T1,..., Tn} such that each transaction in set is waiting for releasing any resource by any other transaction in that set. In this case, all the transactions are in waiting state. Necessary Conditions for Deadlock A system is in deadlock state if it satisfies all of the following conditions. (i) Hold and wait : Whenever a transaction holding at least one resource and waiting for another resources that are currently being held by other processes. (ii) Mutual Exclusion : When any transaction has obtained a nonsharable lock on any data item and any other transaction requests that item. (iii) No Preemption : When a transaction holds any resource even after its completion. (iv) Circular Wait : Let T be the set of waiting processes T = {T0, T1, ..., Ti } such that T0 is waiting for a resource that is held by T1, T1 is waiting for a resource that is held by T2, Ti is waiting for a resource that is held by T0.