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The Electromagnetic Spectrum02:37

The Electromagnetic Spectrum

The electromagnetic spectrum consists of all the types of electromagnetic radiation arranged according to their frequency and wavelength. Each of the various colors of visible light has specific frequencies and wavelengths associated with them, and you can see that visible light makes up only a small portion of the electromagnetic spectrum. Because the technologies developed to work in various parts of the electromagnetic spectrum are different, for reasons of convenience and historical...
Eddy Currents01:25

Eddy Currents

Since eddy currents occur only in conductors, magnets can separate metals from other materials. For example, in a recycling center, trash is dumped in batches down a ramp, beneath which lies a powerful magnet. Conductors in the trash are slowed by eddy currents, while nonmetals in the trash move on, separating from the metals. This works for all metals, not just ferromagnetic ones.
Other major applications of eddy currents appear in metal detectors and the braking systems of trains and roller...
The Electromagnetic Spectrum01:24

The Electromagnetic Spectrum

Electromagnetic waves are categorized according to their wavelengths and frequencies, giving the electromagnetic spectrum. These waves are classified as radio, infrared, ultraviolet, etc. Radio waves refer to electromagnetic radiation with wavelengths ranging from millimeters to kilometers. Radio waves are commonly used for audio communications (i.e., radios) and typically result from an alternating current in the wires of a broadcast antenna. They cover a broad wavelength range and are used...
Voltammetry: Stripping Methods01:13

Voltammetry: Stripping Methods

Anodic Stripping Voltammetry (ASV), Cathodic Stripping Voltammetry (CSV), and Adsorptive Stripping Voltammetry (AdSV) are electrochemical techniques used to determine trace amounts of analytes in solution. These methods involve applying a potential to an electrode and measuring the resulting current.
Anodic Stripping Voltammetry (ASV)
ASV is used to determine metals and metalloids at trace levels. It involves two steps: deposition and stripping. First, a negative potential is applied to the...
High-Performance Liquid Chromatography: Types of Detectors01:15

High-Performance Liquid Chromatography: Types of Detectors

The role of the detectors in High-Performance Liquid Chromatography (HPLC) is to analyze the solutes as they exit from the chromatographic column. The detector recognizes the solute's property and generates corresponding electrical signals, which are converted into a readable graph of the detector's response versus elution time called a chromatogram at the computer. There are several types of HPLC detectors, each with its own advantages and limitations, depending on the analyte properties and...
Physical Methods for Controlling Microbial Growth: Radiation and Filtration01:26

Physical Methods for Controlling Microbial Growth: Radiation and Filtration

Radiation and filtration are essential tools for microbial control, targeting microorganisms through distinct mechanisms. Radiation eliminates microbes by damaging their DNA, either killing them or inhibiting their growth. Based on wavelength, radiation is classified into two types: nonionizing and ionizing radiation.Non-ionizing radiation, such as UV radiation (200–400 nm), is absorbed by DNA, causing defects that effectively disinfect surfaces, air, and water, including safety cabinets.

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Updated: Jul 9, 2026

Electroantennographic Bioassay as a Screening Tool for Host Plant Volatiles
12:43

Electroantennographic Bioassay as a Screening Tool for Host Plant Volatiles

Published on: May 6, 2012

雑草対策のための超高周波電磁場:植物毒性と選択性

F S Davis, J R Wayland, M G Merkle

    Science (New York, N.Y.)
    |August 6, 1971
    PubMed
    まとめ

    超高周波電磁場は,植物や種子にとって致命的です. 植物毒性は種と植物発達段階によって異なるが,吸収された種子と若い植物が最も感受性がある.

    科学分野:

    • 植物学は植物科学である.
    • 電磁気学は,電磁気学である.
    • 農業科学 農業科学とは

    背景:

    • 超高周波電磁場 (UHF-EMF) がますます普及しています.
    • 植物に対する生物学的影響を理解することは,農業と環境科学にとって極めて重要です.

    研究 の 目的:

    • 様々な植物種に対するUHF-EMFの植物毒性を調査する.
    • 植物のUHF-EMF曝露に対する感受性に影響を与える要因を決定する.

    主な方法:

    • いくつかの種の種子や植物の2450+/-20メガヘルツの電磁場への曝露.
    • 曝露後の植物生存と成長の評価.
    • 種子の水分含量と植物の年齢が感受性に与える影響の評価.

    主要な成果:

    • UHF-EMFの曝露は,複数の種の植物や種に致命的でした.
    • UHF-EMFに対する感受性の種別差異が観察されました.
    • 植物毒性は,乾燥した種子と成熟した植物と比較して,吸収された種子と若い植物で高かった.
    • 土壌は,電磁場を部分的に弱めることが判明しました.

    さらに関連する動画

    Enhancement of the Initial Growth Rate of Agricultural Plants by Using Static Magnetic Fields
    05:17

    Enhancement of the Initial Growth Rate of Agricultural Plants by Using Static Magnetic Fields

    Published on: July 8, 2016

    Determining the Optimal Inhibitory Frequency for Cancerous Cells Using Tumor Treating Fields (TTFields)
    08:14

    Determining the Optimal Inhibitory Frequency for Cancerous Cells Using Tumor Treating Fields (TTFields)

    Published on: May 4, 2017

    関連する実験動画

    Last Updated: Jul 9, 2026

    Electroantennographic Bioassay as a Screening Tool for Host Plant Volatiles
    12:43

    Electroantennographic Bioassay as a Screening Tool for Host Plant Volatiles

    Published on: May 6, 2012

    Enhancement of the Initial Growth Rate of Agricultural Plants by Using Static Magnetic Fields
    05:17

    Enhancement of the Initial Growth Rate of Agricultural Plants by Using Static Magnetic Fields

    Published on: July 8, 2016

    Determining the Optimal Inhibitory Frequency for Cancerous Cells Using Tumor Treating Fields (TTFields)
    08:14

    Determining the Optimal Inhibitory Frequency for Cancerous Cells Using Tumor Treating Fields (TTFields)

    Published on: May 4, 2017

    結論:

    • UHF-EMFは植物の生命に重大な危険をもたらし,種によって異なる程度の感受性を有する.
    • 植物の発達段階と水分補給レベルは,電磁場曝露に対する感受性に重大な影響を及ぼします.
    • この発見は,農業慣行や,生態系における電磁気汚染の管理に影響を及ぼします.