Activity 4: The Action Potential: Importance of Voltage-Gated Na+ channels Lab Report Pre-lab Quiz Results You have not completed the Pre-lab Quiz. 02/28/15 page 1 Experiment Results You have not completed the Experiment. Experiment Data: 02/28/15 page 2 Post-lab Quiz Results You have not completed the Post-lab Quiz. 02/28/15 page 3 Review Sheet Results 1. What does TTX do to voltage-gated Na+ channels? Your answer: It irreversibly blocks voltage-gated Na+ channels. 2. What does lidocaine
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Week 1 Introduction • Course Name: ATMN 203 – Mechatronics I • Instructor – Brandeen McDonald. You may call me Brandy or Brandeen or Miss. • I can be reached at brandeen.mcdonald@humber.ca • Phone or Text: 416‐524‐2165 Be considerate here! • Office Hours or By Appointment: Room J230 – Ask Reception to see me. OFFICE HOURS OFFICE HOURS • What Hours Does the Class Have Free? What Hours Does the Class Have Free? • I will poll both sections of this course and post my office hours I
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Faculty of Engineering School of Electrical‚ Electronic & Computer Engineering EERI 213 VOLTAGE DIVIDER CIRCUIT Completed by: Mr I Coetzee 22678778 Submitted to: Dr P. van Vuuren 19 FEBRUARY 2013 1 School for Electronic and Computer Engineering DECLARATION I‚ Iwan Coetzee‚ declare this report is of my own work. Whenever contributions of others are involved‚ every effort was made to indicate this clearly‚ with due reference to the literature. No part of this work has been
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TEST SEMESTER 1 2012 / 2013 PROGRAMME : B. Eng Electrical Power (Honours) SUBJECT CODE : EEPB463 SUBJECT : High Voltage Technology DATE : 11 July 2012 TIME : 12.15 pm – 1.15 pm (1 hour) Name: Q1 Q2 ID No.: Q3 Section: Total INSTRUCTIONS TO CANDIDATES: 1. This paper contains THREE (3) questions in SEVEN (7) pages. 2. Answer all questions. 3. Write all answers in the spaces provided in this question paper. 4. All steps and diagrams
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2013 ELE 402 HIGH VOLTAGE TECHNIQUESAPPLICATIONS OF INSULATING MATERIAL IN POWER TRANSFORMER APPLICATIONS OF INSULATING MATERIAL IN POWER TRANSFORMER Insulating fluids (gases and liquids) provide insulation between phases and grounded parts of electrical equipments. These also carry out heat from the windings of the electrical equipments However‚ solid insulating materials
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CONTENTS 1. INTRODUCTION 2. DESIGN PRINCIPLE 3. CIRCUIT DESCRIPTION a. Power supply b. Under voltage/over voltage detector c. NOR Gate (OR and NOT gate) d. Bi-stable / Latch e. Relay driver f. Buzzer Driver 4. FUTURE EXPANSION 5. CONCLUSION INTRODUCTION The protection system is one o the important aspect on which major manufacturers is concentrating. The companies like L&T‚ SIMENS etc. The protection system not only provides durability
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Passive Electronic Components and Circuits Laboratory 5 Kirchhoff’s voltage and current laws Objective: o Kirchhoff’s voltage law (KVL)‚ o Kirchhoff’s current law (KCL)‚ o Verify Kirchhoff’s voltage and current laws using a given circuit. Equipment: o Digilent Electronics Explorer Board‚ o Digital Multi-Meter‚ o Assorted resistors. Theoretical support: o Laboratory 3‚ o Laboratory 4‚ o Lecture 4 (Microsoft Power Point Support): Kirchhoff’s laws‚ Applying Kirchhoff’s laws.
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Engineering and Information Sciences Course Number: ECET210 ProfessorLaboratory Number: 7 Laboratory Title: Voltage Rectifier and Voltage Regulation Circuits Submittal Date: Objectives: 1. To analyze the characteristics of rectifying diode using theoretical‚ simulation‚ and physical construction of the circuit. 2. To analyze the characteristics of voltage regulation (zener diode and voltage regulator) using theoretical‚ simulation‚ and physical construction of the circuit. Results:
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regulate the voltage supply‚ given to electronic circuits. This project‚ namely VARIABLE VOLTAGE REGULATOR‚ aims at fulfilling such small goals‚ using the 3-terminal voltage regulator LM317. The circuit consists of an IC LM317 and a set of resistors and capacitors‚ in addition to the transformer and the rectifying element. The AC voltage‚ from the mains supply is initially stepped down to the desired voltage‚ which is then rectified to be applied to the input terminal of the voltage regulator
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HIGH-VOLTAGE NEURAL STIMULATOR COMBINED WITH A LOW-VOLTAGE RECORDER Ulrich Bihr‚ Jens Anders‚ Joachim Becker and Maurits Ortmanns Institute of Microelectronics‚ University of Ulm‚ Ulm‚ Germany Ulrich.Bihr@uni-ulm.de Abstract: This paper presents a high-voltage (HV) neural stimulator combined with a low-voltage (LV) neural recorder. In many bidirectional neural implementations with a high voltage compliance for the stimulation is it not possible to have a high density due to the high power
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