The technique is called MRI or Magnetic Resonance Imaging
for more info on MRI : http://en.wikipedia.org/wiki/Magnetic_resonance_imaging
Magnetic Resonance Imaging (MRI) is the technique that uses magnetic fields and radio waves to produce detailed computer images of structures within the brain and other parts of the body.
Magnetic Resonance Imaging (MRI) is the imaging technique that detects the energy emitted by hydrogen atoms in magnetic fields.
the ans is ther are no structures in electromagnet
Human eyes are not sensitive to magnetic fields because they lack the necessary biological structures to detect them. Animals that can detect magnetic fields, such as migratory birds, have specialized cells containing magnetic particles that allow them to sense the Earth's magnetic field for navigation.
Magnetic resonance imaging, or MRI, is a test that uses a magnetic field and pulses of radio wave energy to make pictures of organs and structures inside the body. Sometimes a contrast solution is injected into the patient during the MRI scan to show certain structures more clearly.
MRI - Magnetic Resonance Imaging
In biology, MRI stands for Magnetic Resonance Imaging. It is a non-invasive imaging technique used to visualize internal structures of the body, particularly soft tissues such as the brain, muscles, and organs. MRI utilizes strong magnetic fields and radio waves to create detailed images, aiding in diagnosis and research in various biological and medical fields.
It depends on the computer, but quite possibly. The probes sent to investigate Jupiter were specially constructed to minimize possible damage caused by radiation or magnetic fields.
NMRI, or Nuclear Magnetic Resonance Imaging, is a medical imaging technique that utilizes the principles of nuclear magnetic resonance to visualize the internal structures of the body. It is commonly referred to as MRI (Magnetic Resonance Imaging) and is particularly useful for imaging soft tissues, such as the brain, muscles, and organs. NMRI provides detailed images without the use of ionizing radiation, making it a safe option for patients. The technique relies on strong magnetic fields and radio waves to generate high-resolution images for diagnostic purposes.
The Magnetic Fields was created in 1989.
its atomic structure and the alignment of its magnetic dipoles. Materials with unpaired electrons and certain crystal structures are more likely to be magnetic. Temperature and external magnetic fields can also affect a material's magnetic properties.
Magnetic fields can be blocked. Magnetic fields cannot penetrate a superconductor, and regions can be shielded from magnetic fields using ferromagnetic materials.