COBOL (/ˈkoʊbɒl/, an acronym for common business-oriented language) is a compiled English-like computer programming language designed for business use. It is imperative, procedural and, since 2002, object-oriented. COBOL is primarily used in business, finance, and administrative systems for companies and governments. COBOL is still widely used in legacy applications deployed on mainframe computers, such as large-scale batch and transaction processing jobs. But due to its declining popularity and the retirement of experienced COBOL programmers, programs are being migrated to new platforms, rewritten in modern languages or replaced with software packages.[6] Most programming in COBOL is now purely to maintain existing applications.[7] .. (wikipedia)

References in zbMATH (referenced in 227 articles , 3 standard articles )

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  1. Beebe, Nelson H. F.: The mathematical-function computation handbook. Programming using the MathCW portable software library (2017)
  2. Gessner, Samuel (ed.); Hashagen, Ulf (ed.); Pfeiffer, Jeanne (ed.); Tournès, Dominique (ed.): Mathematical instruments between material artifacts and ideal machines: their scientific and social role before 1950. Abstracts from the workshop held December 17--23, 2017 (2017)
  3. AbdElHamid, Amr; Zong, Peng; Abdelhamid, Bassant: Advanced software ground station and UAV development for NLoS control using mobile communications (2015)
  4. Gascueña, José Manuel; Castillo, José Carlos; Navarro, Elena; Fernández-Caballero, Antonio: Engineering the development of systems for multisensory monitoring and activity interpretation (2014)
  5. Rasool, Ghulam; Philippow, Ilka: Software artifacts extraction for program comprehension (2010)
  6. Rohn, Eli: Generational analysis of variety in data structures: impact on automatic data integration and on the semantic web (2010) ioport
  7. Pal, Srimanta: Numerical methods. Principles, analysis and algorithms. (2009)
  8. Sneed, Harry M.: A pilot project for migrating COBOL code to web services (2009) ioport
  9. Vu, Thuy Duong: Goto elimination in program algebra (2008)
  10. Henning, Peter A.; Vogelsang, Holger: Handbook of programming languages. Software development for learning and reference. (2007)
  11. Johnstone, Adrian; Scott, Elizabeth: Automatic recursion engineering of reduction incorporated parsers (2007)
  12. Dowek, Gilles; Lévy, Jean-Jacques: Introduction to the theory of programming languages. (2006)
  13. Johnstone, Adrian; Scott, Elizabeth; Economopoulos, Giorgios: Evaluating GLR parsing algorithms (2006)
  14. Subramanian, Girish H.; Pendharkar, Parag C.; Wallace, Mary: An empirical study of the effect of complexity, platform, and program type on software development effort of business applications (2006) ioport
  15. Van Deursen, Arie; Moonen, Leon: Documenting software systems using types (2006)
  16. Veerman, Niels: Automated mass maintenance of a software portfolio (2006)
  17. Komondoor, Raghavan; Ramalingam, G.; Chandra, Satish; Field, John: Dependent types for program understanding (2005)
  18. Veerman, Niels: Towards lightweight checks for mass maintenance transformations (2005)
  19. Wu, Chenggang; Zhang, Zhaoqing; Qiao, Ruliang; Feng, Xiaobing; Gao, Lin; Shi, Xuelin; Jiang, Hongshan; Cui, Huimin: Converting the compound control structure of PERFORM and GOTO statements in the code translation (2004)
  20. Brunekreef, Jacob; Diertens, Bob: Towards a user-controlled software renovation factory (2002)

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