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au.\*:("LAUBITZ MJ")

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Results 1 to 15 of 15

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THE LORENZ FUNCTION OF TRANSITION METALS AT HIGH TEMPERATURESLAUBITZ MJ.1972; HIGH TEMPER.-HIGH PRESS.; G.B.; DA. 1972; VOL. 4; NO 4; PP. 379-387; BIBL. 16 REF.Serial Issue

THE ELECTRICAL RESISTIVITY AND THERMOPOWER OF PURE AND OF HYDROGEN-CHARGED BARIUMCOOK JG; LAUBITZ MJ.1976; CANAD. J. PHYS.; CANADA; DA. 1976; VOL. 54; NO 9; PP. 928-937; ABS. FR.; BIBL. 34 REF.Article

PHONON DRAG AND THE LOW TEMPERATURE ELECTRICAL RESISTIVITY OF THE ALKALIS.LEAVENS CR; LAUBITZ MJ.1974; SOLID STATE COMMUNIC.; G.B.; DA. 1974; VOL. 15; NO 11-12; PP. 1909-1913; BIBL. 12 REF.Article

THE TRANSPORT PROPERTIES OF POTASSIUM AND ELECTRON-ELECTRON SCATTERING.COOK JG; LAUBITZ MJ.1976; IN: THERM. CONDUCTIVITY-INT. CONF. 14. PROC.; STORRS, CONN.; 1975; NEW YORK; PLENUM PRESS; DA. 1976; PP. 105-111; BIBL. 10 REF.Conference Paper

THE TRANSPORT PROPERTIES OF THE CUBIC ALKALINE EARTHS CA, SR, AND BA.COOK JG; LAUBITZ MJ.1978; CANAD. J. PHYS.; CANADA; DA. 1978; VOL. 56; NO 1; PP. 161-174; ABS. FR.; BIBL. 40 REF.Article

ANISOTROPY CORRECTION TO THE ELECTRICAL RESISTIVITY OF IDEALLY PURE POTASSIUM.LEAVENS CR; LAUBITZ MJ.1976; J. PHYS. F; G.B.; DA. 1976; VOL. 6; NO 10; PP. 1851-1866; BIBL. 35 REF.Article

COMMENT ON "LOW-TEMPERATURE RESISTIVITY AND THERMOELECTRIC RATIO OF COPPER AND GOLD" = COMMENTAIRE SUR "RESISTIVITE ET POUVOIR THERMOELECTRIQUE AUX BASSES TEMPERATURES DU CUIVRE ET DE L'OR"MACDONALD AH; LAUBITZ MJ.1980; PHYS. REV. B; ISSN 0163-1829; USA; DA. 1980; VOL. 21; NO 6; PP. 2638-2640; BIBL. 19 REF.Article

PHONON DRAG AND THE LOW TEMPERATURE ELECTRICAL RESISTIVITY OF POTASSIUMLEAVENS CR; LAUBITZ MJ.1975; J. PHYS. F; G.B.; DA. 1975; VOL. 5; NO 8; PP. 1519-1532; BIBL. 22 REF.Article

AN APPARATUS TO MEASURE THE EFFECT OF MOISTURE CONTENT OF GRANULAR MATERIALS ON THEIR THERMAL CONDUCTIVITY.GUPTA KG; LAUBITZ MJ; FEINGOLD A et al.1978; LETTERS HEAT MASS TRANSFER; G.B.; DA. 1978; VOL. 5; NO 2; PP. 89-97; BIBL. 4 REF.Article

THERMAL CONDUCTIVITY, ELECTRICAL RESISTIVITY, AND THERMOELECTRIC POWER OF PB FROM 260 TO 550 KCOOK JG; LAUBITZ MJ; VAN DER MEER MP et al.1974; J. APPL. PHYS.; U.S.A.; DA. 1974; VOL. 45; NO 2; PP. 510-513; BIBL. 17 REF.Article

THERMAL AND ELECTRICAL CONDUCTIVITIES OF SODIUM FROM 40 TO 360 KCOOK JG; VAN DER MEER MP; LAUBITZ MJ et al.1972; CANAD. J. PHYS.; CANADA; DA. 1972; VOL. 50; NO 12; PP. 1386-1401; ABS. FR.; BIBL. 1 P.Serial Issue

VACANCIES AND THE ELECTRICAL RESISTIVITY OF POTASSIUMCOOK JG; TAYLOR R; LAUBITZ MJ et al.1979; J. PHYS. F; GBR; DA. 1979; VOL. 9; NO 8; PP. 1503-1510; BIBL. 17 REF.Article

TRANSPORT PROPERTIES OF THE FERROMAGNETIC METALS. II. NICKELLAUBITZ MJ; MATSUMURA T; KELLY PJ et al.1976; CANAD. J. PHYS.; CANADA; DA. 1976; VOL. 54; NO 1; PP. 92-102; ABS. FR.; BIBL. 34 REF.Article

SUPPOSED FAILURE OF THE BOLTZMANN EQUATION IN NB.LAUBITZ MJ; LEAVENS CR; TAYLOR R et al.1977; PHYS. REV. LETTERS; U.S.A.; DA. 1977; VOL. 39; NO 4; PP. 225-228; BIBL. 19 REF.Article

THE ELECTRICAL RESISTIVITY, THERMAL CONDUCTIVITY, AND THERMOELECTRIC POWER OF CALCIUM FROM 30 K TO 300 K.COOK JG; LAUBITZ MJ; VAN DER MEER MP et al.1975; CANAD. J. PHYS.; CANADA; DA. 1975; VOL. 53; NO 5; PP. 486-497; ABS. FR.; BIBL. 50 REF.Article

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