nothing because i dont know
An electron microscope uses a magnetic field to magnify images up to a million times by focusing a beam of electrons onto a specimen. The magnetic lenses in the electron microscope help to control the path of the electrons and produce highly detailed images of the specimen at a very high magnification.
A magnetic resonance microscope, or MRM, uses a magnetic field to create detailed images of samples. By applying a strong magnetic field, MRM can detect the magnetic properties of atoms in the sample, providing insights into its structure and composition. This technique is commonly used in materials science and biological research.
A scanning electron microscope uses a focused beam of electrons and a magnetic field to magnify images up to 1000000 times.
That would be an electron microscope - the magnets are used to deflect the electron beam.That would be an electron microscope - the magnets are used to deflect the electron beam.That would be an electron microscope - the magnets are used to deflect the electron beam.That would be an electron microscope - the magnets are used to deflect the electron beam.
Instead of a standard lens, the electron microscope uses a magnetic field to bend electrons. This magnetic field focuses and directs the electrons to create images with much higher resolution than traditional light microscopes.
AnswerA Transmission Electron Microscope (TEM)modern microscopeAn electron microscope magnifies an image up to 1,000,000 times
An Electron Microscope
An electron microscope uses a magnetic field to magnify images up to a million times by focusing a beam of electrons onto a specimen. The magnetic lenses in the electron microscope help to control the path of the electrons and produce highly detailed images of the specimen at a very high magnification.
A magnetic resonance microscope, or MRM, uses a magnetic field to create detailed images of samples. By applying a strong magnetic field, MRM can detect the magnetic properties of atoms in the sample, providing insights into its structure and composition. This technique is commonly used in materials science and biological research.
magnetic field
A magnetic field focuses he electrons
The optical microscope uses a magnetic field to magnify images up to 1,000.000
A scanning electron microscope uses a focused beam of electrons and a magnetic field to magnify images up to 1000000 times.
That would be an electron microscope - the magnets are used to deflect the electron beam.That would be an electron microscope - the magnets are used to deflect the electron beam.That would be an electron microscope - the magnets are used to deflect the electron beam.That would be an electron microscope - the magnets are used to deflect the electron beam.
Instead of a standard lens, the electron microscope uses a magnetic field to bend electrons. This magnetic field focuses and directs the electrons to create images with much higher resolution than traditional light microscopes.
Magnetic lenses are used to control the electron beam in an electron microscope. The magnetic field produced by the magnetic lenses deflects the energetic electrons. They are typically called magnetic lenses because they deflect the electron beam like optical lenses deflect light.
The earth maintains a magnetic field due to the metals that make up its core. Thus, all rocks are influenced by this magnetic field and "face" the direction the field is "facing". Every few hundred million years the poles switch, and with it the magnetic field. Similarly, all rocks "face" the new direction. Magnetic strips are indicators of when the magnetic field of the Earth changed.