Differences

This shows you the differences between two versions of the page.

Link to this comparison view

Both sides previous revision Previous revision
Next revision
Previous revision
Next revision Both sides next revision
teaching:infoh415 [2018/09/17 23:24]
ezimanyi [Topics for the current academic year]
teaching:infoh415 [2023/10/07 14:48]
ezimanyi [Topics for the current academic year]
Line 2: Line 2:
  
  
 +===== Last important announcement ====
 +Dear all,
 +
 +The first practical session will be next week on Thursday (see schedule for room and hour). Please have your computer ready with the tools needed. If you do not have a laptop I advise you to pair up with somebody with one for the practical session.
 +
 +The first three sessions will be on spatial databases (see [[teaching:​infoh415:​TP|Exercices Web page]])!
 +
 +See you next Thursday,
 +
 +Boris.
 ===== Lecturer ===== ===== Lecturer =====
  
Line 10: Line 20:
 ===== Teaching Assistant ===== ===== Teaching Assistant =====
  
-  * [[Gilles.Dejaegere@ulb.ac.be|Gilles Dejaegere]]+  * [[boris.coquelet@ulb.be|Boris Coquelet]]
  
  
Line 32: Line 42:
  
 The course is given during the first semester ​ The course is given during the first semester ​
-  * Lectures on Thursdays ​from pm to pm at the room S.UA4.218 +  * Lectures on Mondays ​from pm to pm in the UB4.132 (Solbosch campus) 
-  * Exercises on Mondays ​from pm to pm at the room S.UB4.130 +  * Exercises on Thursdays ​from pm to pm
- +
-/* +
-{{:​teaching:​infoh415:​infoh415-1415-courseplan-rev.1.pdf|Schedule}} +
-*/ +
  
 /*  /* 
 +{{:​teaching:​infoh415:​infoh415schedule2018.pdf|Schedule}}
 +
   * [[http://​www.google.com/​calendar/​embed?​src=dug2eihu8tqtnkjhmtuupj0je0%40group.calendar.google.com&​ctz=Europe/​Brussels|Online schedule]]   * [[http://​www.google.com/​calendar/​embed?​src=dug2eihu8tqtnkjhmtuupj0je0%40group.calendar.google.com&​ctz=Europe/​Brussels|Online schedule]]
 */ */
 +
 +
 +
 ===== Objectives ===== ===== Objectives =====
  
 Today, databases are moving away from typical management applications,​ and address new application areas. For this, databases must consider (1) recent developments in computer technology, as the object paradigm and distribution,​ and (2) management of new data types such as spatial or temporal data. This course introduces the concepts and techniques of some innovative database applications. Today, databases are moving away from typical management applications,​ and address new application areas. For this, databases must consider (1) recent developments in computer technology, as the object paradigm and distribution,​ and (2) management of new data types such as spatial or temporal data. This course introduces the concepts and techniques of some innovative database applications.
 +
 +
 +
 ===== Content ===== ===== Content =====
  
-==== Active ​Databases ====+==== Spatial ​Databases ====
  
-Taxonomy ​of conceptsApplications ​of active databases: integrity maintenance,​ derived ​data, replicationDesign of active databases: termination,​ confluence, determinism,​ modularisation.+Spatial data and applications. Space ontology. Conceptual modeling ​of spatial aspectsManipulation ​of spatial ​data with standard SQL. 
 + 
 +==== Mobility Databases ==== 
 + 
 +...
  
 ==== Temporal Databases ==== ==== Temporal Databases ====
Line 56: Line 73:
 Temporal data and applications. Time ontology. Conceptual modeling of temporal aspects. Manipulation of temporal data with standard SQL. Temporal data and applications. Time ontology. Conceptual modeling of temporal aspects. Manipulation of temporal data with standard SQL.
  
-==== Object ​Databases ====+==== Active ​Databases ====
  
-Object-oriented modelObject PersistanceODMG standardObject Definition Language and Object Query Language.+Taxonomy of conceptsApplications of active databases: integrity maintenance,​ derived data, replicationDesign of active databasestermination,​ confluence, determinism,​ modularisation.
  
-==== Spatial Databases ==== 
- 
-Spatial data and applications. Space ontology. Conceptual modeling of spatial aspects. Manipulation of spatial data with standard SQL. 
  
  
Line 78: Line 92:
   * Jim Melton and Alan R. Simon, SQL: 1999 - Understanding Relational Language Components, Morgan Kaufmann, 2001   * Jim Melton and Alan R. Simon, SQL: 1999 - Understanding Relational Language Components, Morgan Kaufmann, 2001
   * Jim Melton, Advanced SQL: 1999 - Understanding Object-Relational and Other Advanced Features, Morgan Kaufmann, 2002   * Jim Melton, Advanced SQL: 1999 - Understanding Object-Relational and Other Advanced Features, Morgan Kaufmann, 2002
-  * R.G.G. Cattel et al.The Object Database Standard: ODMG 3.0Morgan Kaufmann2000  ({{:​teaching:​odmg.pdf|version pdf}})+  * Ian RobinsonJim WebberEmil EifremGraph Databases, 2nd Edition, O'​Reilly Media, 2015
   * Philippe Rigaux, Michel Scholl, Agnès Voisard, Spatial Databases: With Application to GIS, Morgan Kaufmann, 2001   * Philippe Rigaux, Michel Scholl, Agnès Voisard, Spatial Databases: With Application to GIS, Morgan Kaufmann, 2001
  
Line 88: Line 102:
   * E. Zimányi, Temporal Aggregates and Temporal Universal Quantifiers in Standard SQL, SIGMOD Record, 35(2):​16-21,​ 2006. ({{http://​code.ulb.ac.be/​dbfiles/​Zim2006article.pdf|version pdf}})   * E. Zimányi, Temporal Aggregates and Temporal Universal Quantifiers in Standard SQL, SIGMOD Record, 35(2):​16-21,​ 2006. ({{http://​code.ulb.ac.be/​dbfiles/​Zim2006article.pdf|version pdf}})
   * Krishna Kulkarni, Jan-Eike Michels, Temporal features in SQL:2011, SIGMOD Record, 41(3):​34-43,​ 2012. ({{teaching:​infoh415:​TempFeaturesSQL2011.pdf|version pdf}})   * Krishna Kulkarni, Jan-Eike Michels, Temporal features in SQL:2011, SIGMOD Record, 41(3):​34-43,​ 2012. ({{teaching:​infoh415:​TempFeaturesSQL2011.pdf|version pdf}})
-  * Gregory Sannik, Fred Daniels, Enabling the Temporal Data Warehouse, Teradata White paper. ({{teaching:​infoh415:​teradata_enabling_temporal.pdf|version pdf}})+  ​* Michael H. Böhlen, Anton Dignös, Johann Gamper, Christian S. Jensen, Temporal Data Management: An Overview, Proc. of the 7th European Summer School on Business Intelligence and Big Data, eBISS 2017, Bruxelles, Belgium, LNBIP 324, Springer 2018. ({{teaching:​infoh415:​bohlen.pdf|version pdf}})  ​* Gregory Sannik, Fred Daniels, Enabling the Temporal Data Warehouse, Teradata White paper. ({{teaching:​infoh415:​teradata_enabling_temporal.pdf|version pdf}})
   * Richard T. Snodgrass, A Case Study of Temporal Data, Teradata White paper. ({{teaching:​infoh415:​teradata_temporal_case_study.pdf|version pdf}})   * Richard T. Snodgrass, A Case Study of Temporal Data, Teradata White paper. ({{teaching:​infoh415:​teradata_temporal_case_study.pdf|version pdf}})
   * Teradata, Temporal Table Support. ({{teaching:​infoh415:​teradata_temporal_support.pdf|version pdf}})   * Teradata, Temporal Table Support. ({{teaching:​infoh415:​teradata_temporal_support.pdf|version pdf}})
Line 94: Line 108:
   * IBM, A Matter of Time: Temporal Data Management in DB2 for z/OS. ({{teaching:​infoh415:​a_matter_of_time.pdf|version pdf}})   * IBM, A Matter of Time: Temporal Data Management in DB2 for z/OS. ({{teaching:​infoh415:​a_matter_of_time.pdf|version pdf}})
 ===== Links ===== ===== Links =====
-  * Temporal ​databases  +  * Spatial ​databases 
-    * [[http://timecenter.cs.aau.dk/|TimeCenter]], an international research centre for temporal databases. +    * [[https://postgis.net/​workshops/​postgis-intro/|Introduction to PostGIS]] 
-    * [[http://www.timeconsult.com/Software/Software.html|TimeDB]], a temporal relational database+    * [[https://learn.crunchydata.com/postgis|Crunchy Data Interactive PostGIS Learning Portal]] 
 +  * Mobility databases 
 +    * [[https://mobilitydb.com/|MobilityDB]]  
   * Object databases   * Object databases
     * [[http://​www.odbms.org/​|ODBMS.ORG]],​ portal of ressources about object databases.     * [[http://​www.odbms.org/​|ODBMS.ORG]],​ portal of ressources about object databases.
-    * [[http://​www.db4o.com/​|db4o]],​ an open source object database. 
     * [[http://​www.objectstore.com/​datasheet/​index.ssp|ObjectStore]],​ an object database     * [[http://​www.objectstore.com/​datasheet/​index.ssp|ObjectStore]],​ an object database
     * [[http://​www.objectivity.com|Objectivity]],​ an object database     * [[http://​www.objectivity.com|Objectivity]],​ an object database
-    * [[http://​www.versant.com/​|Versant]],​ an object database 
-    * [[http://​www.jade.co.nz/​jade/​|Jade]],​ an object database 
-    * [[http://​sourceforge.net/​projects/​ozone/​|Ozone]],​ an object database 
   * Post-relationnal databases   * Post-relationnal databases
-    * [[http://​www.fresher.com/​|Matisse]] 
     * [[http://​www.intersystems.com/​cache/​index.html|Caché]]     * [[http://​www.intersystems.com/​cache/​index.html|Caché]]
  
 ===== Course Slides ===== ===== Course Slides =====
  
-  * {{teaching:​infoh415:​activenotes.pdf|Active databases}} 
-  * {{teaching:​infoh415:​temporalnotes.pdf|Temporal databases}} 
-  * {{teaching:​infoh415:​objectnotes.pdf|Object databases}} 
   * {{teaching:​infoh415:​spatialnotes.pdf|Spatial databases}}   * {{teaching:​infoh415:​spatialnotes.pdf|Spatial databases}}
 +  * Mobility databases
 +  * {{teaching:​infoh415:​temporalnotes.pdf|Temporal databases}}
 +  * {{teaching:​infoh415:​activenotes.pdf|Active databases}}
 +/*  * {{:​teaching:​infoh415:​graphdb-ulb-2021.zip|Graph Notes (2021 version)}} */
 +/*   * {{teaching:​infoh415:​objectnotes.pdf|Object databases}} ​  
 +  * {{:​teaching:​infoh415:​graph_databases_notes.zip|Graph Notes}}*/
  
  
Line 120: Line 134:
  
   * [[teaching:​infoh415:​TP|Exercices Web page]]   * [[teaching:​infoh415:​TP|Exercices Web page]]
 +
 ===== Project ===== ===== Project =====
  
Line 128: Line 143:
 */ */
  
-Students, in groups of two, will realize a project in a topic relevant to advanced databases. Examples of topics are given in the next section of this document.+Students, in groups of four students, will realize a project in a topic relevant to advanced databases. Examples of topics are given in the next section of this document. Please notice that the template for these topics is "<​Technology>​ with <​Tool1>​ and <​Tool2>"​.
  
-Each group will study a database technology and illustrate it with an application developed ​​in ​database management ​system ​to be chosen (e.g., Oracle, PostgreSQL, DB2, SQL Server, ​mySQL, etc..). +Each group will study a database technology ​(e.g., document stores, time series databases, etc.) and illustrate it with an application developed ​​in ​two database management ​systems ​to be chosen (e.g., SQL Server, ​PostgreSQL, MongoDB, etc.). The topic should be addressed in a technical way, to explain ​the foundations of the underlying ​technology. The application must use the chosen ​technology. Examples of technologies and tools can be found for example in the following ​ [[https://​db-engines.com/​en/​ranking|web site]].
-The topic should be addressed in a technical way, to explain the underlying ​technologies. The application must use the specific ​technology ​manipulated.+
  
-The choice of topic and the application must be made ​​in agreement with the lecturer. The topic should not be included in the programme ​of the Master in Computer Science and Engineering. The project will be presented to the lecturer and the fellow students at the end of the semester. This presentation will be supported by a slideshow. A written report containing the contents of the presentation is also required. The presentation and written ​report will explain the possibilities offered ​by the database management ​system ​chosen and give general description ​of the application ​implemented.+It is important to understand that the objective of the project is NOT about developing an application with a GUI. The objective is to benchmark the proposed tool in relation to the database requirements of your application. Therefore, it is necessary to determine the set of queries and updates that your application requires and do a benchmark with, e.g., 1K, 10K, 100K, and 1M "​objects"​ (rows, documents, nodes, etc. depending on the technology used) to determine if the tool shows a linear or exponential behavior. Please notice that you SHOULD NOT generate data for the benchmark since you can find in Internet (1) a huge number of available datasets (2) alternatively,​ there are many available data generators. 
 + 
 +As usual when performing benchmarks, the queries and updates are executed n times (e.g., 6 times where the first execution is not considered because it is different from the others since the cache structures must be filled) and the average of the execution times is computed. A comparison with traditional relational technology (e.g., using PostgreSQL) must be provided to show that the chosen tool is THE technology of choice for your application,​ better than all other alternatives,​ and that it will perform correctly when the system is deployed at full scale. Please notice that there are MANY standard benchmarks for various database technologies so in that case you should prefer using a standard benchmark that reinventing the wheel and create your own benchmark. 
 + 
 +The choice of topic and the application must be made ​​in agreement with the lecturer. The topic should not be included in the program ​of the Master in Computer Science and Engineering. The project will be presented to the lecturer and the fellow students at the end of the semester. This presentation will be supported by a slideshow. A written report containing the contents of the presentation is also required. The presentation and the report will (1) explain the foundations of the technology chosen, (2) explain how these foundations are implemented ​by the database management ​systems ​chosen and (3) illustrate all these concepts with the application implemented. 
 + 
 +The duration of the presentation is 45 minutes. It will structured in three parts of SIMILAR length 
 +   * An introduction to technology 
 +   * An introduction to the two tools, each presented by subgroup of two persons 
 +   * A common assessment ​of the advantages and disadvantages of both tools tested in a common example ​application.
  
 The evaluation of the project focuses on the following criteria: The evaluation of the project focuses on the following criteria:
Line 142: Line 165:
 The project will count for 25% of the final grade. The project will count for 25% of the final grade.
  
-The project must be submitted by **Monday, December ​182017**.+The project must be submitted by **Monday, December ​112023**. Please send the report and the presentation in PDF format to the lecturer
  
-===== Examples of topics from the previous academic year ===== +  ​* Cloud databases and Microsoft Azure, AWS, ...
- +
-  * Analytical databases and Endeca +
-  ​* Cloud databases and Microsoft Azure+
   * Column stores and Cassandra, Hbase, ...   * Column stores and Cassandra, Hbase, ...
-  * Database Security ​and Oracle +  * Data warehouses ​and Apache Hive 
-  * Deductive Databases and XSB +  * Distributed databases and SQL Server, ​Oracle, Citus, ...
-  * Distributed databases and SQL Server, ​DynamoDB, ...+
   * Document stores and Cloudant, Couchbase, CouchDB, MongoDB, RavenDB, RethinkDB, ...   * Document stores and Cloudant, Couchbase, CouchDB, MongoDB, RavenDB, RethinkDB, ...
   * Embedded databases and BerkeleyDB   * Embedded databases and BerkeleyDB
-  ​* Graph Databases and Neo4J, OrientDB, ... +  * In-memory databases and Kdb+, MemSQL, Oracle TimesTen, Memcached, .... 
-  ​* In-memory databases and Kdb+, MemSQL, Oracle TimesTen, .... +  * Key-value stores and BerkeleyDB, DynamoDB, ​Redis, Voldermort, ... 
-  * Key-value stores and Redis, Voldermort, ... +  * Multi-model databases and MarkLogic, CosmosDB 
-  * Multimedia databases and Oracle +  * NewSQL databases and VoltDB, CockrachDB, ... 
-  * Multi-model databases and MarkLogic +  * Object-oriented databases and ObjectBoxPerst
-  * NewSQL databases and VoltDB +
-  * Object-oriented databases and db4o +
-  * Object-relational mappings and Entity FrameworkHibernate, Java Data Objects, ...+
   * Real-time databases and Firebase   * Real-time databases and Firebase
-  * Spatial databases and SQL Server +  ​* Search engines and Solr, ElasticSearch,​ Sphinx ... 
-  * Spatial 3D Databases ​and PostgreSQL+  ​* Spatial ​raster ​databases and Rasdaman 
 +  * Stream databases and Apache Kafka, Event Stores 
 +  * Time series databases ​and Influx DB, Kdb+, ...
   * XML databases and BaseX   * XML databases and BaseX
- 
  
 ===== Topics for the current academic year ===== ===== Topics for the current academic year =====
-  ​Real-time ​databases and FirebasePablo Lopezxxx xxx + 
-  * NoSQL Databases ​and CassandraPratham SolankiBraulio Blanco +  ​Cloud databases ​with Microsoft Azure and AWSMaria Camila SalazarValerio Rocca, Ludovica Caiola, Simon Coessens 
-  * Document ​stores ​and MongoDB: ​Sivaporn HomvanishTzu-Man Wu +  * Time Series DBMS with InfluxDB ​and KdbGian Tejada GargateGabriel Lozano Pinzón, José Carlos Lozano Dibildox, Enxhi Nushi 
-  * Cloud Databases and Amazon Web Services RDS with MySqlHimanshi Saxenaxxx xxx+  * Document ​Stores with CouchDB ​and MongoDB: ​Aryan GuptaDilbar Isakova, Hareem Raza, Muhammad Qasim Khan 
 +  * Graph Databases ​with Neo4J and JanusGraph: Gabriela Kaczmarek, Berat Furkan Koçak, Jakub Kwiatkowski,​ Arijit Samal 
 +  * Distributed Databases ​with SQL Sever and OracleSony ShresthaAayush Paudel, MD Kamrul Islam, Shofiyyah Nadhiroh 
 +  * Search engines with Elasticsearch and Solr: Benjamin Gold, Quentin Demonceau, Nils Van Es Ostos, David García Morillo 
 +  * Data Warehousing with Google BigQuery and Snowflake: Yutao Chen, Qianyun Zhuang, Min Zhang, Ziyong Zhang 
 +  * Distributed databases with Apache Cassandra and Citus: Catalina Correa, Vassili Papadakis, Paeg Hing Leong, Mohamed Bouchkhachakh 
  
 /* /*
-  * Kaïs Albichari, Tanguy d'Hose{{:​teaching:​mongodb_2017.pdf|Document stores and MongoDB}} +  * Microsoft Azure and Google Cloud SQL: Marques Correia Tiago, Kellian GermainSébastien Arte, Nehili Adel 
-  * Alexis ReynouardRémy Detobel: {{:​teaching:​elasticsearch_2017.pdf|Search engines and Elastic Search}} +  * Document ​databases ​with ArangoDB ​and MarkLogic: Mir Wise KhanRishika Gupta, Ahmad, Chidiebere Ogbuchi 
-  * Tiffany Ong Lopez, Sergio Ruiz Sainz: {{:​teaching:​ignite_2017.pdf|In-memory ​databases and Apache Ignite}} +  * Document ​databases ​with MongoDB ​and CouchBaseAbd Abu Sbei, Hoschek MarenGupta Prashant, TBD 
-  * Sofia YfantidouNoor Zehra: {{:​teaching:​influxdb_2017.pdf|Time series DBs and InfluxDB}} +  * Document ​databases with CouchDB ​and RavenDBAissa Abdoul-AzizHelin DemirelImane Moussaoui, Salma Mekarnia 
-  * Todi Thanasi, Lev Denisov: {{:​teaching:​cassandra_2017.pdf|NoSQL ​databases and Cassandra}} +  * Embedded ​databases and BerkeleyDB and CouchBase Lite: Talhaoui YassinArfani Abdessamad, Faek Ilias, Adegnon Kokou 
-  * Mi Zhou, Prabhdeep Minhas{{:​teaching:​basex_2017.pdf|XML Databases and BaseX}} +  * Key-value ​databases ​with etcd and HazelcastLiliia Aliakberova,​ Arina Gepalova, Jose Antonio Lorencio AbrilMariana Mayorga Llano 
-  * Lucie BauwinNicolas Baudoux: {{:​teaching:​firebase_2017.pdf|Real-time databases and Firebase}} +  * Key-value ​databases with OrientDB ​and Memcached: Mustapha Ayadi, Valentin De Baene, Soumaya Izmar, Yi Zhu 
-  * Antoine Vandevenne, Akira Baes: {{:​teaching:​rethinkdb_2017.pdf|Document ​stores ​and RethinkDB}} +  * Oriented ​Object ​Databases with ObjectBox ​and Perst: Belgada Naoufal, El Hamri Ayoub, Akroune Sami, Sif Eddine Boughris 
-  * Marc Garnica, Batuhan Tuter{{:​teaching:​pipelinedb_2017.pdf|Stream databases and PipelineDB}} +  * RDF databases ​with Virtuoso ​and Apache Jena: Nikola Ivanović, Bogdana Živković, Tianheng Zhou, You Xu 
-  * Maksim HrytseniaRui Liu: {{:​teaching:​hbase_2017.pdf|Column stores and HBase}} +  * Search engines with ElasticSearch and OpenSearch: Muhammad Rizwan KhalidSayyor Yusupov, Ali Abusaleh, Ali Belyazid 
-  * Kumar KshitijTran Quang Duy: {{:​teaching:​streamsql_2017.pdf|Stream Processing with StreamSQL and Apache Kafka}} +  * Search engines ​databases ​with Solr and Manticore Search: Rachel Aouad Albshara, Loïc Cordeiro FonsecaQuentin Magron, Dang Phi LPham 
-  * Ozge Koroglu, Anna Turu Pi: {{:​teaching:​neo4jj_2017.pdf|Graph ​databases and Neo4J}} +  * Stream Databases with PipelineDB and HStreamDB: Idil DikbasEhsan Gifani, TBD, TBD 
-  * Kashif RabbaniIvan Putera Masli: {{:​teaching:​cockroachdb_2017.pdf|NewSQL Databases and CockroachDB}} +  * Time Series databases with InfluxDB and KDBLuis Alfredo LeónJezuela Gega, Satria Wicaksono, Isabella Forero 
-  * Jayanthi Kambayatughar,​ Marie Elisabeth Heinrich: {{:​teaching:​azure_2017.pdf|Cloud ​databases and Microsoft Azure}} +  * Timeseries ​databases ​with TimescaleDB ​and QuestDB: Koumudi Ganepola, Adina BondocZyad Al-Azazi, Alaa Almutawa 
-  * Dagoberto Herrera, Keneth Ubeda{{:​teaching:​opentsdb_2017.pdf|Time series databases and OpenTSDB}} +  * Wide column stores with Cassandra and HBaseAnthony ZhouArnaud Cools, Damien Decleire, Thomas Dudziak
-  * Bruno Baldez CorreaYue Wang: {{:​teaching:​hibernate_2017.pdf|Object-relational mapping and Hibernate}} +
-  * Raisa Uku, Fatemeh Shafiee: {{:​teaching:​redis_2017.pdf|Key-value ​stores ​and Redis}} +
-  * Anastasiia Zavolozhina,​ Ferdiansyah Dolot: {{:​teaching:​db4o_2017.pdf|Object ​oriented databases ​and Db4o}} +
-  * Batra Shubham, Liccardo Nathan: {{:​teaching:​berkeleydb_2017.pdf|Embedded ​databases and BerkeleyDB}} +
-  * Yasin ArslanJacky Trinh: {{:​teaching:​ravendb_2017.pdf|Document stores and RavenDB}} +
-  * Alex Buléon: {{:​teaching:​orientdb_2017.pdf|Multi-model ​databases and OrientDB}} +
-  * Beyens ZiadNougba Hamza: {{:​teaching:​couchdb_2017.pdf|Document stores and CouchDB}} +
-  * Aleksei KaretnikovDavid Pieschacon: {{:​teaching:​arangodb_2017.pdf|Graph stores and ArangoDB}} +
-  * Dany-Simone Efila Efila, Michel Noucha{{:​teaching:​cloudant_2017.pdf|Document stores and Cloudant}} +
-  * George KagramanyanLéni Poliseno: {{:​teaching:​couchbase_2017.pdf|Document stores and Couchbase}} +
-  * Hajji Issam, Toure Ibrahim: {{:​teaching:​nuodb_2017.pdf|newSQL ​databases and nuoDB}} +
-  * Madrane SofianePierre-Alexandre Bourdais: {{:​teaching:​perst_2017.pdf|Object-oriented embedded database and Perst}} +
-  * Kirubel Yaekob, Yasmine Daoud{{:​teaching:​sqlserversecurity_2017.pdf|Database security and SQL Server}} +
-  * Bubacarr JallowShafagh Kashef: {{:​teaching:​entityframework_2017.pdf|Object Relational Mapping and Entity Framework}}+
 */ */
- 
- 
- 
 ===== Examinations from Previous Years ===== ===== Examinations from Previous Years =====
  
 
teaching/infoh415.txt · Last modified: 2023/12/04 18:14 by ezimanyi