Dr.Andrew Yau
A Thermal Plasma Analyzer is an instrument used to measure the composition and properties of high-temperature plasma in various applications, such as in space research, material processing, and environmental monitoring. It typically uses techniques like mass spectrometry or optical emission spectroscopy to analyze the plasma's chemical elements, ions, and temperatures.
Plasma is typically found in nuclear fusion reactors, which are a type of thermal reactor that produces energy by fusing atomic nuclei together at extremely high temperatures. Plasma is the fourth state of matter, consisting of ionized gas with high energy particles.
Adding thermal energy to plasma will increase the kinetic energy of the particles within the plasma, causing them to move faster and collide more frequently. This can lead to increased ionization and excitation of the particles, generating a more energetic and hotter plasma.
The electron thermal velocity is important in plasma physics because it determines how fast electrons move due to their temperature. This velocity affects various plasma phenomena, such as energy transfer and wave propagation, making it a key parameter in understanding and analyzing plasma behavior.
Plasma's are the most energetic states we have discovered but the answer you are probably looking for is when the matter is in a gaseous state, that is when the atoms have dissociated from each other almost completely. But in plasma the particles that make up an atom have dissociated.
The thermal plasma analyzer was developed by scientists at NASA's Goddard Space Flight Center. It is a type of mass spectrometer used for analyzing the composition and structure of plasmas in space.
A Thermal Plasma Analyzer is an instrument used to measure the composition and properties of high-temperature plasma in various applications, such as in space research, material processing, and environmental monitoring. It typically uses techniques like mass spectrometry or optical emission spectroscopy to analyze the plasma's chemical elements, ions, and temperatures.
A plasma consists of an gas in which some gas atoms/molecules are ionised. If it is is in thermal equilibrium then in order to maintain the needed level of ionisation will require that the gas is very hot. Of the order of 4-5,000 degrees Celsius. In a non-thermal plasma the electrons are hot enough to ionise the gas but the gas is at a different temperature. This can be achieved by heating the electrons by using a microwave or radio frequency field. As the electrons are light they do not exchange energy with the gas very efficiently. So in a non-thermal plasma the gas can be cold.
Plasma is typically found in nuclear fusion reactors, which are a type of thermal reactor that produces energy by fusing atomic nuclei together at extremely high temperatures. Plasma is the fourth state of matter, consisting of ionized gas with high energy particles.
The silicon chip blood analyzer was invented by Micronics, Inc., a company founded in 1996 by a team from the University of Washington. They developed the technology to miniaturize traditional laboratory equipment into portable, easy-to-use devices for analyzing blood samples.
Nobody invented plasma and it isn't actually blood. Plasma is the liquid portion of your blood that the blood cells are suspended in. The process of separating blood for storage (plasma) was invented by Dr. Charles Drew.
Adding thermal energy to plasma will increase the kinetic energy of the particles within the plasma, causing them to move faster and collide more frequently. This can lead to increased ionization and excitation of the particles, generating a more energetic and hotter plasma.
Thermal Arc plasma cutters are manufactured by Thermal Arc, a brand under the parent company Victor Technologies, which specializes in welding and cutting equipment. Thermal Arc offers a range of plasma cutting solutions designed for various applications, catering to both professional and industrial users. Their products are known for reliability and efficiency in metal cutting tasks.
There are four main types of plasma: thermal plasma, which is created at high temperatures and consists of ionized gases; non-thermal plasma, where electrons are at higher temperatures than ions; low-temperature plasma, often used in industrial applications and displays; and astrophysical plasma, found in stars and interstellar space. Each type has distinct properties and applications in fields ranging from electronics to astrophysics.
The electron thermal velocity is important in plasma physics because it determines how fast electrons move due to their temperature. This velocity affects various plasma phenomena, such as energy transfer and wave propagation, making it a key parameter in understanding and analyzing plasma behavior.
it was invented in the 1940 by James Morgan
1964