Heinrich Hertz

Heinrich Hertz was a German physicist whose experiments provided the first conclusive evidence of electromagnetic waves, confirming James Clerk Maxwell’s theoretical predictions. Using an oscillating spark-gap circuit as a transmitter and a nearby wire loop as a receiver, Hertz detected induced electrical sparks and showed that the waves reflected, refracted, and formed standing patterns like light. His measurements established that radio waves are part of the electromagnetic spectrum and travel at a speed comparable to light. Hertz’s work laid the experimental foundation for radio communication, wireless technology, radar, and modern studies of electromagnetism.

Heinrich Hertz - Related Videos

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JoVE Journal - Engineering
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Robotic Sensing and Stimuli Provision for Guided Plant Growth

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Cited by 3 •

2019

Distributed robot nodes provide sequences of blue light stimuli to steer the growth trajectories of climbing plants. By activating natural phototropism, the robots guide the plants through binary left-right decisions, growing them into predefined patterns that by contrast are not possible when the robots are dormant.

Research

JoVE Journal - Biochemistry

Imaging of Podocytic Proteins Nephrin, Actin, and Podocin with Expansion Microscopy

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Cited by 3 •

2021

The presented method enables visualization of fluorescently labeled cellular proteins with expansion microscopy leading to a resolution of 70 nm on a conventional microscope.

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JoVE Journal - Neuroscience
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Multi-photon Intracellular Sodium Imaging Combined with UV-mediated Focal Uncaging of Glutamate in CA1 Pyramidal Neurons

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Cited by 6 •

2014

We describe the combination of focal UV-induced photo-activation of neuro-active compounds with whole-cell patch-clamp and multi-photon imaging of intracellular sodium transients in dendrites and spines of hippocampal neurons in acute tissue slices of the mouse brain.

Highly Sensitive Measurement of Glomerular Permeability in Mice with Fluorescein Isothiocyanate-polysucrose 70

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Cited by 1 •

2019

Here, we present a protocol to test glomerular permeability in mice using a highly sensitive, nonradioactive tracer. This method allows repetitive urine analyses with small urine volumes.

Research

JoVE Journal - Biochemistry
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Rapid Fluorescence-based Characterization of Single Extracellular Vesicles in Human Blood with Nanoparticle-tracking Analysis

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Cited by 17 •

2019

In this protocol, we describe the complete workflow for rapid isolation of extracellular vesicles from human whole blood and characterization of specific markers by fluorescence-based nanoparticle-tracking analysis. The presented results show a high level of reproducibility and can be adjusted to cell culture supernatants.

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