Accurate Resistance Measurement

Accurate resistance measurement is the precise determination of a material or component’s opposition to electric current, a fundamental task in physics, electronics, and experimental calibration. The measurement typically applies a known current and determines the resulting voltage, using Ohm’s law, R = V/I; four-terminal methods improve accuracy by separating current-carrying leads from voltage-sensing leads and reducing errors from lead and contact resistance. Temperature control, instrument resolution, and appropriate measurement ranges further affect reliability. These techniques support the characterization of resistive materials, verification of circuit components, calibration of electrical instruments, and investigation of how resistance changes with temperature, geometry, or material composition.

Accurate Resistance Measurement - Related Videos

Research

JoVE Journal - Medicine

Fast and Accurate Exhaled Breath Ammonia Measurement

0 Views •

Cited by 16 •

2014

Ammonia is an important physiologic metabolite relevant to various disease and wellness states. It is also a difficult molecule to measure in breath, which demands particular precautions be taken to obtain accurate results. Not all factors influencing ammonia are known, but progress can be difficult without accounting for these factors.

An Improved Method for Accurate and Rapid Measurement of Flight Performance in Drosophila

0 Views •

Cited by 46 •

2014

Here we describe a method for rapid and accurate measurement of flight performance in Drosophila, enabling high-throughput screening.

Enabling High Grayscale Resolution Displays and Accurate Response Time Measurements on Conventional Computers

0 Views •

Cited by 9 •

2012

Conventional computer hardware can not generate visual stimuli with sufficiently high grayscale resolution and measure response times with sufficient accuracy. We describe how to use the VideoSwitcher to produce high-resolution monochromatic displays, and the RTbox to measure response times with high accuracy on conventional computer hardware.

A Simple Dewar/Cryostat for Thermally Equilibrating Samples at Known Temperatures for Accurate Cryogenic Luminescence Measurements

0 Views •

2016

A simple liquid nitrogen Dewar/cryostat apparatus comprised of a small fused silica optical Dewar, a thermocouple, and a charge-coupled device (CCD) spectrograph are described. The experiments for which this Dewar/cryostat is designed require fast sample loading, freezing, and alignment, accurate and stable sample temperatures, and small size/portability.

Accurate and Simple Measurement of the Pro-inflammatory Cytokine IL-1β using a Whole Blood Stimulation Assay

0 Views •

Cited by 9 •

2011

We describe a simple immunoassay to measure the production of pro-inflammatory cytokines, such as IL-1 beta production, in patients presenting with autoinflammatory phenotypes. By activating cells in whole blood cultures with pathogen-associated molecular patterns, specifically with lipopolysaccharide, cytokine secretion can be conveniently evaluated in whole blood supernatants.

View All Results

FAQs

Related Topics