TuttleD. F.Jr., Network Synthesis, vol. 1, John Wiley (1958), 108–116.
2.
Van ValkenburgM. E., Introduction to Modern Network Synthesis, John Wiley (1960), 67–72.
3.
WeinbergL., Network Analysis and Synthesis, McGraw-Hill (1962), 249.
4.
KarniS., Network Theory: Analysis and Synthesis, Allyn and Bacon (1966), 98–102.
5.
MitraS. K., Analysis and Synthesis of Linear Active Networks, John Wiley (1969), 213–215.
6.
BalabanianN.BickartT. A., and SeshuS., Electrical Network Theory, John Wiley (1969), 491–492.
7.
HaykinS. S., Active Network Theory, Addison-Wesley (1970), 104–110.
8.
BruneO., Synthesis of finite two terminal network whose driving point impedance is a prescribed function of frequency, J. Math. Phys., 10, 191–236 (1931).
9.
GuilleminE. A., The Mathematics of Circuit Analysis, John Wiley (1949), 419–420.
10.
BalabanianN., Network Synthesis, Prentice Hall (1958), 73–77.
11.
HazonyD., Elements of Network Synthesis, Reinhold (1963), 30–34.
12.
BodeH. W., Network Analysis and Feedback Amplifier Design, D. Van Nostrand (1945), 171–172.
13.
GuilleminE. A., Theory of Linear Physical Systems, John Wiley (1963), 233.
14.
TalbotA., A new method of synthesis of reactance networks, Proc. IEE, 101, 73–90 (1953).