[1]
Alexander, C.K. and Sadiku, M.N.O. 2013. Fundamentals of electric circuits. McGraw-Hill.
[2]
Croft, T. and Davison, R. 2015. Mathematics for engineers. Pearson, Prentice Hall.
[3]
Dorf, R.C. and Svoboda, J.A. 2014. Introduction to electric circuits. John Wiley & Sons, Inc.
[4]
Floyd, T.L. 2014. Principles of electric circuits: conventional current version. Pearson.
[5]
Floyd, T.L. and Buchla, D.M. 2010. Electric circuits fundamentals. Pearson.
[6]
Franco, S. 1995. Electric circuits fundamentals. Saunders College Pub., Harcourt Brace College Pub.
[7]
Hambley, A.R. and ProQuest (Firm) 2019. Electrical engineering: principles and applications. Pearson Educationa Limited.
[8]
Irwin, J.D. et al. 2015. Engineering circuit analysis. Wiley.
[9]
James, G. 2020. Modern engineering mathematics. Pearson.
[10]
Nahvi, M. et al. 2014. Schaum’s outlines electric circuits. McGraw-Hill Education.
[11]
Nilsson, J.W. 2015. Electric circuits: Nilsson: Professor Emeritus, Iowa State University, Susan A. Riedel, Marquette University. Pearson.
[12]
Spiegel, M.R. and Stephens, L.J. 2018. Schaum’s outlines: statistics. McGraw-Hill Education.
[13]
Thomas, R.E. et al. 2012. The analysis and design of linear circuits. Wiley.