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E. P. Müller?eld has also made great strides by uni- ingtheseexperimentalobservationsthroughmathematicaldescriptionsbasedonelectromagnetic ?eld theory, electrochemistry, etc. , which underlie these experiments. In turn, these quantitative materialsprovideanunderstandingofmanyelectrophysiologicalapplicationsthro影响 发表于 2025-3-25 09:12:24
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Nelu Ionescutal discoveries and new mathematical descriptions.Includes uThe study of electrophysiology has progressed rapidly because of the precise, delicate, and in- nious experimental studies of many investigators. The ?eld has also made great strides by uni- ingtheseexperimentalobservationsthroughmathematicDiscrete 发表于 2025-3-25 20:49:28
tal discoveries and new mathematical descriptions.Includes uThe study of electrophysiology has progressed rapidly because of the precise, delicate, and in- nious experimental studies of many investigators. The ?eld has also made great strides by uni- ingtheseexperimentalobservationsthroughmathematic烦忧 发表于 2025-3-26 00:17:07
V. Vuchev,P. Bokov,B. Monov,A. Atanasov,R. Ognyanov,D. Tochkovnto account the biological applications. The following six chapters are the core material of this text. Chapter 3 includes a description of how voltages/currents exist across membranes and how these are evaluated using the Nernst–Planck equation. The membrane channels, which are the basis for cell eimmunity 发表于 2025-3-26 07:08:53
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E. P. Müllernto account the biological applications. The following six chapters are the core material of this text. Chapter 3 includes a description of how voltages/currents exist across membranes and how these are evaluated using the Nernst–Planck equation. The membrane channels, which are the basis for cell eDeject 发表于 2025-3-26 15:59:34
Exploration History and Future Possibilities in Hungary,allergen 发表于 2025-3-26 20:33:58
B. Sejdini,P. Constantinescu,T. Piperiof this text. Chapter 3 includes a description of how voltages/currents exist across membranes and how these are evaluated using the Nernst–Planck equation. The membrane channels, which are the basis for cell e978-1-4899-8408-1978-0-387-48865-3