• DocumentCode
    188678
  • Title

    Automated Generation of Region Based Geometric Questions

  • Author

    Singhal, Roshani ; Henz, Martin

  • Author_Institution
    Sch. of Comput., Nat. Univ. of Singapore, Singapore, Singapore
  • fYear
    2014
  • fDate
    10-12 Nov. 2014
  • Firstpage
    838
  • Lastpage
    845
  • Abstract
    We extend our previously proposed framework that combines a combinatorial approach, pattern matching and automated deduction to generate geometry questions which, directly or indirectly, require finding the congruent regions formed by the intersection of geometric objects. The extension involves proposing a knowledge representation for regions and a rule-based algorithm for generation of region-based knowledge representation. In addition, several algorithms such as circle/arc projection to straight line (s) are proposed to avoid numerical reasoning for proving congruent regions, making the solution eligible for high school geometry domain. Furthermore, we propose the integration of this framework with our previously proposed framework to generate questions involving both implicit construction and congruent regions. The system is able to generate the solution (s) of the questions for their validation. Such a system would help teachers to quickly generate large numbers of questions based on several properties of geometric objects such as length, angle, area and perimeter. Students can explore, revise and master specific topics covered in classes and textbooks based on generated questions. This system may also help standardize tests such as Primary School Leaving Exam (PSLE), GMAT and SAT. Our methodology uses (i) a combinatorial approach for generating geometric figures (ii) Pattern matching and rule-based approach for region generation (iii) automated deduction for checking equality of properties of geometric objects (iv) linear equation solver to generate new questions and solutions. By combining these methods, we are able to generate questions involving finding or proving congruence relationships between the regions generated by the geometric objects based on a various specifications such as objects and concepts. Experimental results show that a large number of questions can be generated in a short time. A survey shows that the generated questions and the solution- are useful and fulfills the high school criteria.
  • Keywords
    combinatorial mathematics; computational geometry; deductive databases; educational institutions; inference mechanisms; knowledge representation; pattern matching; GMAT; PSLE; Primary School Leaving Exam; SAT; arc projection; automated deduction; automated region-based geometric question generation; circle projection; combinatorial approach; congruence relationships; congruent regions; direct geometry question generation; geometric figures; geometric object intersection; geometric object property equality checking; high school criteria; high school geometry domain; implicit construction; indirect geometry question generation; knowledge representation; linear equation solver; object angle; object area; object length; object perimeter; pattern matching; region-based knowledge representation generation; rule-based algorithm; standardized tests; straight line; Cognition; Educational institutions; Equations; Geometry; Grammar; Knowledge representation; Shape; deductive reasoning; high school geometry; pattern matching; rule-based algorithms;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Tools with Artificial Intelligence (ICTAI), 2014 IEEE 26th International Conference on
  • Conference_Location
    Limassol
  • ISSN
    1082-3409
  • Type

    conf

  • DOI
    10.1109/ICTAI.2014.129
  • Filename
    6984565