Mohamed Ahmed, M. S., A. Sekigutchi, T. Shimada, J. Kawashima, and A. Mori,
"New Activators for the Coupling Reaction of Terminal Alkynes with Organic Halides",
Bull. Chem. Soc. Jpn, vol. 78, pp. 327, 2005.
Awad, Z., T. Chigai, Y. Kimura, O. M. Shalabiea, and T. Yamamoto,
"New Rate Constants of Hydrogenation of CO on H2O-CO Ice Surfaces",
The Astrophysical Journal, vol. 626, no. 1: IOP Publishing, pp. 262, 2005.
Abstractn/a
Awad, Z., T. Chigai, Y. Kimura, O. M. Shalabiea, and T. Yamamoto,
"New rate constants of hydrogenation of CO on H2O-CO ice surfaces",
The Astrophysical Journal, vol. 626, no. 1: IOP Publishing, pp. 262, 2005.
Abstractn/a
Abdelwahab, A., E. Baligh, M. Mokhtar, H. Yehia, R. Bedair, H. Rizk, S. ElTobgi, and A. Zaki,
"A New Step-wise Strategy For The Detection of Coronary Artery Disease Using Carotid and Femoral Ultrasonography",
Egyptian Heart Journal, vol. 57, no. 3, pp. 225–237, 2005.
Abstractn/a
Abdelwahab, A., E. Baligh, M. Mokhtar, H. Yehia, R. Bedair, H. Rizk, S. ElTobgi, and A. Zaki,
"A New Step-wise Strategy For The Detection of Coronary Artery Disease Using Carotid and Femoral Ultrasonography",
Egyptian Heart Journal, vol. 57, issue 3, pp. 225-237, 2005.
Abstractn/a
and 14. Mohammad A. Mohammad, Saad El-Gendy, A. E. L. - A. S. S. A.,
"Nitric Oxide, Matrix Metalloproteinases (2, 9) and Tissue Inhibitor of Matrix Metalloproteinases-1 Levels in Hepatocellular Carcinoma of Egyptian Patients",
Med. J. Cairo Univ., vol. 73, issue 1, pp. 119-123, 2005.
Abstractn/a
Youssef, M. A., and A. M. Soliman,
"A Novel CMOS Realization of the Differential Input Balanced Output Current Operational Amplifier and its Applications",
Analog Integrated Circuits and Signal Processing, vol. 44, no. 1, pp. 37–53, 2005.
AbstractIn this paper a new realization of the differential input balanced output current opamp is proposed, operating with ±1.5 V supplies. Its architecture is based on the use of current inverters to sense the input currents while providing a very low input resistance, 23 $Ømega$. The opamp provides a maximum output swing of 700 $μ$A, with an input offset current of 3.5 nA. The differential gain achieved is 65.5 dB, and the differential structure adopted in the design provided a high CMRR, 89.5 dB, the proposed circuit is compared to other realizations with single and differential inputs. The applications of the current opamp are exploited some new applications are presented such as: MOSFET-C integrators, full non-linearity cancellation for MOS transistors, and finally a digitally tuned current-mode variable gain amplifier, which has a gain tuning range of 25 dB with a 0.05 dB step.