SCIENTIFIC INSTRUMENTS

to check titrator's response. •. Proportional titrant ... Titrant delivery rate and chart speed are both ... The new Model AT-2A Automatic Recording...
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Τ Π Γ ΤΡΡ Α Τ" 1 Γ^ Τ Ρ MODEL.

A.T-S-A. T y p i c a l Variable p H T i t r a t i o n

All potentiometric titrations performed automatically! • Automatic recording pH-stat. • Record v a r i a t i o n in pH o r EMF as a f u n c t i o n of t i t r a n t added. • T i t r a t e t o a n y preset e n d p o i n t . • Record f i r s t a n d s e c o n d derivative titration curve. • A u t o m a t i c t i t r a t i o n in a q u e o u s or n o n a q u e o u s m e d i a : Acid-base reactions — Oxidation-reduction reactions — Precipitation reactions — Complex-ion reactions —

Typical Constant pH Titration

• K i n e t i c analysis w i t h p e r m a ­ nent record of r e a c t i o n rate. • A u t o m a t e d q u a l i t y c o n t r o l of laboratory, pilot plant or i n d u s t r i a l processes. FEATURES • Built-in s i m u l a t e d signal t o check t i t r a t o r ' s response. • P r o p o r t i o n a l t i t r a n t a d d i t i o n as e n d - p o i n t is a p p r o a c h e d .

Typical First Derivative Titration

• T i t r a n t delivery rate a n d c h a r t speed are b o t h v a r i a b l e . • Automatic cutoff permits unattended operation. • Interchangeable burets for micro and m a c r o t i t r a t i o n s . • Provision f o r a Polarad plug-in d i f f e r e n t i a t o r . Shows pH (on t h e m e t e r ) as recorder plots f i r s t o r s e c o n d derivative. • C o n t i n u o u s l y v a r i a b l e recorder span — m a x i m u m s e n s i t i v i t y f u l l span 2 pH u n i t s . • A c c u r a c y ± 0 . 0 2 pH u n i t s o r ± 1 . 2 millivolts. Now, t e d i o u s p o t e n t i o m e t r i c t i t r a t i o n s t h a t r e q u i r e d t i m e - c o n s u m i n g point-byp o i n t analysis c a n be d o n e a u t o m a t i c a l l y . T h e new Model AT-2A A u t o m a t i c R e c o r d i n g Titrator makes variable and constant pH titrations automatically, simultaneously p r o v i d i n g a p e r m a n e n t r e c o r d . This new instrument will free chemists for more p r o d u c t i v e analyses as it s p e e d s r o u t i n e but difficult measurements. ? = i o . s



INTRINSIC VISCOSITY DETERMINATION FOR A TYPICAL HIGH POLYMER EXPERIMENTAL

VISCOSITY

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BUSINESS REPLY CARD Fir»! Clou Permit No. IS, tone Wand Cuy 1, N.¥.

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Values of reduced viscosity were obtained directly without extra­ polation to zero shear gradient. The lower curve is'typical of the error to be expected when appar­ ent viscosity is obtained at the high and nonuniform shear rate implicit in the capillary method.

Specifications: Shear Stress Range: 0.002 dyne/cm^ to 1.6 dyne/cm 2 . Shear Rate Range: 0.2 sec-' to 50 sec-1. in 26 steps. Viscosity Range: Up to 800 centipoise at 0.2 sec-1. Accuracy: ± 0.5% of sample viscosity. Cylinder Temperature: Constant to within 0.05°C of desired temperature when located in a temperature-controlled (±2°C) room.

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7SP Here reduced viscosity ~~fr , s extrapolated to zero concentration to obtain intrinsic viscosity [ ? J β=0.

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SCIENTIFIC INSTRUMENTS A DIVISION OF POLARAD ELECTRONICS CORPORATION

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