Beckman Standard Test Reagents, Beckman Standard Test Powder, Beckman Standard Particles.
Nombre de commande: 7800370,7800372,7800377,7800499
Guangzhou North Rui Chromatography Technology Co., Ltd. ee Beckman's standard test reagents ye gäm. Standard particles etc., ne yïn wïc ba tɛ̈n tɔ̈ në list kënë yic, yï lɛ̈k ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän ɣän
| Part No | Description |
| 6600703 | Dispersant IA Nonionic (15 mL) |
| 6600704 | Dispersant IB Nonionic (15 mL) |
| 6600705 | Dispersant IC Nonionic (15 mL) |
| 6600706 | Dispersant IIA Anionic (15 mL) |
| 6600707 | Dispersant IIIA Cationic (15 mL) |
| 6600708 | Dispersant Mixed Kit (5 x 15 mL) |
| 7800370 | G15, Nominal 15 µm Garnet Particles (10/box) |
| 7800372 | GB500, Nominal 500 µm Glass Beads (5 x 19 g) |
| 7800377 | L300, Nominal 300 nm Latex Particles |
| 7800499 | G35, Nominal 35 µm Garnet Particles |
| 8546733 | isoton Ⅲ diluent |
Beckmankult Special Particle Size Analyzer Series
- Multisizer 4e particle/cell count and particle size analyzer
- Multisizer 3 particle/cell count and particle size analyzer
- DelsaMax PRO Multi-angle Zeta Potential and Nanoparticle Size Synchronous Analyzer
- DelsaMax CORE static molecular weight and nanoparticle size synchronous analyzer (DelsaMax CORE static molecular weight and nanoparticle size synchronous analyzer)
- SA3100 ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n
- LS 13 320 XR Laser diffraction particle size analyzer
- LS 13 320 Series Micro-Nano Laser particle size analyzer yam
Basic concepts of particle size analysis
(1) Particles: awo koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor A tɛ̈n koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor koor
(2) particle size: particle size;
(3) particle size distribution: ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈n ye tɛ̈
(4) wɛ̈t ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈n ye kɛ̈
(5) particle size: particle diameter, ye kɛ micron ye;
(6) Particle size: ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth ke ye kë ye nyuɔɔth
Diameter ye diameter particle kënë ye nyuɔɔth.
(7)D10, A tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë
D50, A tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a A cɔl Medium Diameter wala Medium Particle Size;
D90, A tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a tɛ̈n yenë a
D(4,3) volume wala mass particle size average;
Metodes de mesure de grandeur de particules
(1) Metode de screening
(2) Fɛɛrɛ de tɛmɛ (fɛɛrɛ de tɛmɛ de gravity, fɛɛrɛ de tɛmɛ de centrifuge)
(3) Resistance method (Kurt particle counter) (Kurt particle counter) (Kurt particle counter) (Kurt particle counter) (Kurt particle counter) (Kurt particle counter)
(4) Mikroskop (foto)
(5) Elektroskopi
(6) Ultrasonik
(7) Fɛɛr dɔ̈ɔ̈r
(8) Laser diffraction
Kä puɔth ye kä ye kek looi
Fɛɛrɛ ye cɔl screening: kä puɔth: a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic, a yic Lɔɔr: A lëu bï ya luui në sampol ye 40μm. A bɛ̈n ya raan dɔ̈ɔ̈r ye, a bɛ̈n ya raan dɔ̈ɔ̈r ye, a bɛ̈n ya raan dɔ̈ɔ̈r ye.
Microscopy Method: Benefits: Simple, intuitive, and can be done morphological analysis. Microscopy Method: Benefits: Simple, intuitive, and can be done morphological analysis. Disadvantages: Speed slow, representation poor, and can't measure ultrafine particles. Disadvantages: Speed slow, representation poor, and can't measure ultrafine particles. Disadvantages: Speed slow, representation poor, and can't measure ultrafine particles.
Fɛɛrɛ de tɛmɛ (ka tɛmɛ gravity tɛmɛ ku centrifugal tɛmɛ): Kuɔɔny: luɔɔi nɔgɔya, ka tɛmɛ ka tɛmɛ, ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛm Lɛɛr: Tɛɛr kaam dɔɔni.
Resistance Method: Benefits: Easy operation, measurable total particle count, equivalent concept is clear, fast speed, and good accuracy. Disadvantages: test range is small, small holes are easily blocked by particles, media should have strict electrical conductivity characteristics.
Electroscopy method: Benefits: suitable for testing ultrafine particles or even nanoparticles, high resolution. Electroscopy method: advantages: suitable for testing ultrafine particles or even nanoparticles, high resolution. Electroscopy method: advantages: suitable for testing ultrafine particles or even nanoparticles, high resolution. Disadvantages: Samples are low, representation is poor, and instruments are expensive.
Ultrasonic Method: Benefits: A lëu bï ya tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ ka tɛmɛ. Lɛ̈k: Resolution dɔɔni.
Breathing Method: Benefits: Instrument price low, no need to disperse the sample, measurable magnetic material powder. Disadvantages: a lëu bï ya tɔ̈ɔ̈u në kë de particle size, a lëu bï ya tɔ̈ɔ̈u në kë de particle size distribution.
Laser method: Benefits: Easy operation, test speed, test range large, repeatability and accuracy good, can be done online measurement and dry method measurement. Laser method: Benefits: Easy operation, test speed, test range large, repeatability and accuracy good, can be done online measurement and dry method measurement. Disadvantages: Results are strongly influenced by distribution models (Dɛ̈ɛ̈r ye raan ye raan ye raan ye raan ye raan ye raan ye raan ye raan ye raan ye raan ye raan ye raan ye raan
