Adopts High frequency technology, penetrate into the basal layer, enhance skin elasticity and gloss. 2. Ion technology, positive ions effectively clean deep dirt, negative ions promote the absorption of skin care products. 3. Color light can rejuvenate skin and 4. Alfvn Wave Driven High Frequency Waves in the Solar Atmosphere: Implications for Ion Heating Edisher Kh. Kaghashvili Live Science and Technologies, LLC. 1R Snow Circle, Nashua, NH 03062 ekaghashlstnh ABSTRACT This work is an extension of Kaghashvili [1999] where ion-cyclotron wave dissipation channel

High

A description of the principles of operation and the main characteristics of high-frequency ion sources that can function on inert and molecular gases, in particular, oxygen, nitrogen, and their mixtures including air, and also on the basis of complex molecular compounds are given, which allows one to use them in various technological processes and in outer space as efficient ion thrusters.

2013/11/19These ion sources may comprise high ion currents with compositions that change quickly and require high-speed mass analysis. Though resolution is compromised with higher acquisition rates, the frequency scanning mode permits a more flexible platform to accomplish the optimal trade-off of speed and mass spectral quality.

The versions of the high frequency quadrupole doublets (RFQD) for proton and heavy ion linear accelerators are discussed. Advantages of focusing of this type over magnetic quadrupoles lie in th e simplicity of the structure and high efficiency and reliability of

The VENUS ECR ion source at the Lawrence Berkeley National Laboratory (LBNL) is a 3rd generation source and has been designed for optimum operation using 28 GHz plasma heating frequency. It is currently the only superconducting, high field ECR ion source

The high frequency source of ions consisting of the discharge chamber 1 with diameter 100mm and controlling length up to 100mm, manufactured from stainless steel and limited from one side by quartz insert 2 and from the other side -by the ion-optical system 3.

Ion energy uniformity in high

Ion energy distribution functions and ion fluxes in low-pressure, high-frequency (13.56–80MHz) capacitive discharges were investigated both theoretically and experimentally. In most of the conditions explored, the ion energy distribution function was a single

High Frequency +ION/-ION AntI-bacterial Ance Treatment With Auto Brush Face Skin Beauty Salon Model: SR-MJ1804H-US+SR-TP07-US #ID: 1005485 Cleansing Cleaner Scrubber Rotary Brush High-frequency Anti- age, improvement skin health +ION/-ION

KESD benchtop ionizing air blower adapts the high frequency AC principle and can remove high electrostatic voltage in one second. This principle can reach 6500Hz ion release frequency, and positive and negative ions alternately generated, the ion concentration covering a wider range, so that it can quickly neutralize the electroscopic charge on the product surface.

frequency behavior of electrochemical batteries including discussion of ion movment, and impedance There are three frequency regimes to consider when dealing with batteries: 1. Ultra low frequencies.These are frequencies measured in inverse hours or days.

In ionospheric plasmas, high frequency lower hybrid waves are observed to heat ions through nonlinear wave-particle interactions. Using a similar approach, we consider the nonlinear heating of ions in magnetized fusion plasmas by high frequency waves propagating across the magnetic field. The nonlinear interaction is a result of two waves whose beat frequency is equal to the cyclotron

1970/6/1A high frequency ion source with radial excitation field is described and compared with a usual axial excitation type. In the former type, the plasma is localized near excitation electrodes. The energy of emitted ions is considerably lower than an applied probe

The versions of the high frequency quadrupole doublets (RFQD) for proton and heavy ion linear accelerators are discussed. Advantages of focusing of this type over magnetic quadrupoles lie in th e simplicity of the structure and high efficiency and reliability of

Ion energy distribution functions and ion fluxes in low-pressure, high-frequency (13.56–80MHz) capacitive discharges were investigated both theoretically and experimentally. In most of the conditions explored, the ion energy distribution function was a single

Ion acoustic waves in the presence of high frequency oscillators

Ion acoustic waves in tne presence of high frequency oscillations H.L. Pecseli Introduction In this preliminary report we consider tne influence of high frequency short wavelength electron oscillations on the propagation on low frequency ^.ong wavelength ion acoustic

Ion acoustic waves in tne presence of high frequency oscillations H.L. Pecseli Introduction In this preliminary report we consider tne influence of high frequency short wavelength electron oscillations on the propagation on low frequency ^.ong wavelength ion acoustic

High frequency ion Bernstein wave heating experiment in the JIPP T-IIU tokamak To cite this article: T. Seki et al 1992 Nucl. Fusion 32 2189 View the article online for updates and enhancements. Related content Limiter H-mode and other improved confinement

A HIGH FREQUENCY ION SOURCE Full Record Other Related Research Authors: Nikolic, M B; Crnilovic', M U Publication Date: Sat Aug 01 00:00:00 EDT 1953 Research Org.: Originating Research Org. not identified OSTI Identifier: 4402534 NSA Number:

The ion energy spectrum for different negative bias potential pulse duration (120-1100) ns was measured. The map of different methods of ion beam and plasma material treatment using high-frequency short pulse metal plasma immersion ion implantation or deposition depending on bias pulse duty factor and amplitude for Cu plasma is presented.

High Current, High frequency ECRIS development program for LHC heavy ion beam application N. Angert, P. Spdtke GSI, Planckstrae 1, D-64291 Darmstadt, Germany C. Hill, H. Haseroth PS Division, CERN, CH-1211 Geneva 23, Switzerland Girard, D. Hitz, P

the mode frequency is close to the thermal ion diamagnetic drift frequency. The second branch corresponds to the reso-nance condition ω = ω φ, and it has a much higher frequency than the first branch [13]. In the previous model for the high frequency fishbone

Figure 1 : The high frequency ion source plane sect,ion 16 10 K would offer the necessary therlnic energy for io- nization. II. Calculation of the ionization probability To calculate the number of produced ions during one se- cond and inside probability for a

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