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PRACTICAL METHODS OF SPEED ZONINGORCUTT FL JR; GODFREY SG.1975; PUBLIC WORKS; U.S.A.; DA. 1975; VOL. 106; NO 9; PP. 88-90Article

IMPACT OF HIGHWAY METRICATION ON TRAFFIC ACCIDENTS AND LONG-TERM TRENDS IN VEHICLE SPEEDS FOR ROADS WITH RESULTANT INCREASED SPEED LIMITSMATTHEWS ML.1979; HUM. FACTORS; USA; DA. 1979; VOL. 21; NO 4; PP. 503-507; BIBL. 9 REF.Article

GRENZGESCHWINDIGKEIT DES MIT FEDERN UND DAEMPFERN GEFESSETTEN RADSATZES: EINE PARAMETERSTUDIE = VITESSE-LIMITE D'UN ESSIEU MONTE: UNE ETUDE DE PARAMETRESGASCH R; WIK W; KNOTHE K et al.1974; LEICHTBAU VERK.-FAHRZEUGE; DTSCH.; DA. 1974; VOL. 18; NO 6; PP. 129-138; BIBL. 8 REF.Article

A BOUNDED VELOCITY POSTULATE AND SPECIAL RELATIVITYLEE STEIB M.1979; J. MATH. ANAL. APPL.; USA; DA. 1979; VOL. 67; NO 1; PP. 94-95; BIBL. 2 REF.Article

JUSTIFICATION D'UNE FORMULE THEORIQUE DONNANT LA VITESSE D'ASCENSION D'UNE BULLE DE GAZ DANS UN LIQUIDECOMOLET R; COLLAY R.1973; C.R. ACAD. SCI., A; FR.; DA. 1973; VOL. 276; NO 18; PP. 1241-1244; BIBL. 2 REF.Serial Issue

SUR LE MOUVEMENT D'UNE BULLE DE GAZ DANS UN LIQUIDECOMOLET R.1979; HOUILLE BLANCHE; FRA; DA. 1979; VOL. 34; NO 1; PP. 31-42; BIBL. 16 REF.Article

EFFECTS OF SURFACE ACTIVE AGENTS ON FALL VELOCITIES OF DROPS.SKELLAND AHP; HUANG YF.1977; CANAD. J. CHEM. ENGNG; CANADA; DA. 1977; VOL. 55; NO 3; PP. 240-245; ABS. FR.; BIBL. 24 REF.Article

FALL OF DROPS IN NON-NEWTONIAN MEDIAMOHAN V; NAGARAJAN R; VENKATESWARLU D et al.1972; CANAD. J. CHEM. ENGNG; CANADA; DA. 1972; VOL. 50; NO 1; PP. 37-40; ABS. FR.; BIBL. 15 REF.Serial Issue

SIMULATION OF LIMIT-DEPOSIT VELOCITY IN HORIZONTAL LIQUID-SOLID FLOWTODA M; KONNO H; SAITO S et al.1980; HYDROTRANSPORT 7. INTERNATIONAL CONFERENCE ON THE HYDRAULIC TRANSPORT OF SOLIDS IN PIPES. 7/1980/SENDAI; GBR; CRANFIELD: BHRA FLUID ENGINEERING; DA. 1980; PP. 347-358; BIBL. 14 REF.Conference Paper

DETERMINATION DE LA RESISTANCE DE DISQUES TOURNANTSLESHCHENKO VM; KOZLOV IA; GONTAROVSKIJ VP et al.1973; PROBL. PROCHN., U.S.S.R.; S.S.S.R.; DA. 1973; VOL. 5; NO 3; PP. 70-73; BIBL. 4 REF.Serial Issue

TERMINAL VELOCITY OF TWO-PHASE DROPLETHAYAKAWA T; SHIGETA M.1974; J. CHEM. ENGNG JAP.; JAP.; DA. 1974; VOL. 7; NO 2; PP. 140-142; BIBL. 5 REF.Article

BOUNDS FOR GROWTH RATE OF A PERTURBATION IN THERMOHALINE CONVECTIONBANERJEE MB; KATOCH DC; DUBE GS et al.1981; PROC. R. SOC. LOND., SER. A, MATH. PHYS. SCI.; ISSN 0080-4630; GBR; DA. 1981; VOL. 378; NO 1773; PP. 301-304; BIBL. 5 REF.Article

FLUIDIZATION CHARACTERISTICS OF CUBOIDSMACKAY G; MACLAIN HD.1980; IND. ENG. CHEM., PROCESS DES. DEV.; ISSN 0019-7882; USA; DA. 1980; VOL. 19; NO 4; PP. 712-715; BIBL. 13 REF.Article

EFFECT OF PIPE DIAMETER ON TERMINAL VELOCITIES OF POLYDISPERSED PARTICLES IN VERTICAL PIPESASAKURA K; TAKEUCHI N; WATANABE Y et al.1982; NIPPON KOGYO KAISHI; ISSN 0369-4194; JPN; DA. 1982; VOL. 98; NO 1128; PP. 93-98; ABS. ENG; BIBL. 19 REF.Article

MASS TRANSFER TO SINGLE SPHERES SETTLING AT THEIR TERMINAL VELOCITIESRAHMAN K; STREAT M.1981; CHEM. ENG. SCI.; ISSN 0009-2509; GBR; DA. 1981; VOL. 36; NO 2; PP. 301-305; BIBL. 27 REF.Article

PREDICTION OF MINIMUM CARRYING VELOCITY OF PARTICLES IN A CONTINUOUS GAS-SOLID FLUIDIZED BEDRAGHAVAN P; BARARI HB; SEN GUPTA P et al.1979; INDIAN J. TECHNOL.; ISSN 0019-5669; IND; DA. 1979; VOL. 17; NO 1; PP. 32-34; BIBL. 12 REF.Article

INFLUENCE OF PIPE INCLINATION ON DEPOSIT VELOCITYHASHIMOTO H; NODA K; MASUYAMA T et al.1980; HYDROTRANSPORT 7. INTERNATIONAL CONFERENCE ON THE HYDRAULIC TRANSPORT OF SOLIDS IN PIPES. 7/1980/SENDAI; GBR; CRANFIELD: BHRA FLUID ENGINEERING; DA. 1980; PP. 231-244; BIBL. 7 REF.Conference Paper

THE EFFECT OF SURFACTANT ON THE TERMINAL AND INTERFACIAL VELOCITIES OF A BUBBLE OR DROP.LEVAN MD; NEWMAN J.1976; A.I.CH.E.J., NEW YORK; U.S.A.; DA. 1976; VOL. 22; NO 4; PP. 695-701; BIBL. 18 REF.Article

Minimum and terminal velocities in fluidization of particulate ceramsite at ambient and elevated temperatureHARTMAN, Miloslav; TRNKA, Otakar; POHORELY, Michael et al.Industrial & engineering chemistry research. 2007, Vol 46, Num 22, pp 7260-7266, issn 0888-5885, 7 p.Article

THE EFFECT OF SURFACTANT ON TERMINAL VELOCITY OF AND MASS TRANSFER FROM A FLUID SPHERE IN A NON NEWTONIAN FLUIDKAWASE Y; ULBRECHT JJ.1982; CAN. J. CHEM. ENG.; ISSN 0008-4034; CAN; DA. 1982; VOL. 60; NO 1; PP. 87-93; ABS. FRE; BIBL. 26 REF.Article

Explicit relationships for the terminal velocity of spherical particlesHARTMAN, M; VESELY, V; SVOBODA, K et al.Collection of Czechoslovak chemical communications. 1990, Vol 55, Num 2, pp 403-408, issn 0010-0765Article

New equations for the terminal velocity of precipitation droplets in a standard atmosphereOTUNG, I. E.Journal of electromagnetic waves and applications. 1995, Vol 9, Num 10, pp 1241-1247, issn 0920-5071Article

Terminal velocity of dense particles in the multisolid pneumatic transport bedSUNIL SATIJA; LIANG-SHIH FAN.Chemical engineering science. 1985, Vol 40, Num 2, pp 259-267, issn 0009-2509Article

A shape-modified size correction for terminal settling velocity in the intermediate regionAH CHIN, A. D; PORTZ, J; WARD, M et al.Powder technology. 1986, Vol 48, Num 1, pp 59-65, issn 0032-5910Article

Decisive Roll of Filling Time on Classification of Parachute TypesMOHAGHEGH, F; JAHANNAMA, M. R.Journal of aircraft. 2008, Vol 45, Num 1, pp 267-275, issn 0021-8669, 9 p.Article

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