Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

Generating Electromagnetic Radiations01:10

Generating Electromagnetic Radiations

The German physicist Heinrich Hertz (1857–1894) was the first to generate and detect certain types of electromagnetic waves in the laboratory. Starting in 1887, he performed a series of experiments that confirmed the existence of electromagnetic waves and verified that they travel at the speed of light. Hertz used an alternating-current RLC (resistor-inductor-capacitor) circuit that resonated at a known frequency and connected it to a loop of wire. High voltages induced across the gap in the...
Hess's Law03:40

Hess's Law

There are two ways to determine the amount of heat involved in a chemical change: measure it experimentally, or calculate it from other experimentally determined enthalpy changes. Some reactions are difficult, if not impossible, to investigate and make accurate measurements for experimentally. And even when a reaction is not hard to perform or measure, it is convenient to be able to determine the heat involved in a reaction without having to perform an experiment.
Plane Electromagnetic Waves II01:29

Plane Electromagnetic Waves II

Consider a plane wavefront traveling in position x-direction with a constant speed. This wavefront can be utilized to obtain the relationship between electric and magnetic fields with the help of Faraday's law.
The Nernst Equation02:59

The Nernst Equation

Nonstandard Reaction Conditions
The interconnection between standard cell potentials and various thermodynamic parameters such as the standard free energy change ΔG° and equilibrium constant K has been previously explored. For example, a redox reaction involving zinc(II) and tin(II) ions at 1 M concentration with Eºcell = +0.291 V and ΔG° = −56.2 kJ is spontaneous.

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

An era in classical physics.

Science (New York, N.Y.)·1983
Same author

The mutual embrace of electricity and magnetism.

Science (New York, N.Y.)·1979
Same author

Prehistory of quantum physics.

Science (New York, N.Y.)·1978
See all related articles

Related Experiment Video

Updated: Jul 12, 2026

Hyperpolarized 13C Metabolic Magnetic Resonance Spectroscopy and Imaging
11:43

Hyperpolarized 13C Metabolic Magnetic Resonance Spectroscopy and Imaging

Published on: December 30, 2016

The helmholtz program

M N Wise

    Science (New York, N.Y.)
    |August 12, 1994
    PubMed
    Summary

    No abstract available in PubMed .

    More Related Videos

    High-resolution Single Particle Analysis from Electron Cryo-microscopy Images Using SPHIRE
    13:28

    High-resolution Single Particle Analysis from Electron Cryo-microscopy Images Using SPHIRE

    Published on: May 16, 2017

    Related Experiment Videos

    Last Updated: Jul 12, 2026

    Hyperpolarized 13C Metabolic Magnetic Resonance Spectroscopy and Imaging
    11:43

    Hyperpolarized 13C Metabolic Magnetic Resonance Spectroscopy and Imaging

    Published on: December 30, 2016

    High-resolution Single Particle Analysis from Electron Cryo-microscopy Images Using SPHIRE
    13:28

    High-resolution Single Particle Analysis from Electron Cryo-microscopy Images Using SPHIRE

    Published on: May 16, 2017