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au.\*:("DUNN AG")

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DECORATION TRANSFORMATIONS AND THE DILUTE ANISOTROPIC HEISENBERG MODELDUNN AG; ESSAM JW.1972; J. PHYS. C; G.B.; DA. 1972; VOL. 5; NO 24; PP. 3521-3530; BIBL. 10 REF.Serial Issue

OPTICAL FIBRE PACKAGING IN LOOSE FITTING TUBES OF ORIENTATED POLYMER.JACKSON LA; REEVE MH; DUNN AG et al.1977; OPT. QUANTUM ELECTRON.; G.B.; DA. 1977; VOL. 9; NO 6; PP. 493-498; BIBL. 6 REF.Article

ORIENTATED POLYMER FOR OPTICAL FIBRE PACKAGING.JACKSON LA; REEVE MH; DUNN AG et al.1976; IN: COLLOQ. EUR. TRANSM. PAR FIBRES OPT. 2; PARIS; 1976; S.L.; DA. 1976; PP. 175-176; ABS. FR.; BIBL. 1 REF.Conference Paper

THE HEAT CAPACITY OF PYROMELLITIC DIANHYDRIDE AND OF ITS 1-1 CHARGE-TRANSFER COMPLEX WITH PYRENE.DUNN AG; RAHMAN A; STAVELEY LAK et al.1978; J. CHEM. THERMODYNAM.; GBR; DA. 1978; VOL. 10; NO 8; PP. 787-796; BIBL. 6 REF.Article

SERIES EXPANSION STUDY OF THE PAIR CONNECTEDNESS IN BOND PERCOLATION MODELS.DUNN AG; ESSAM JW; RITCHIE DS et al.1975; J. PHYS. C; G.B.; DA. 1975; VOL. 8; NO 24; PP. 4219-4235; BIBL. 1/2 P.Article

SCALING THEORY FOR THE PAIR-CONNECTEDNESS IN PERCOLATION MODELS.DUNN AG; ESSAM JW; LOVELUCK JM et al.1975; J. PHYS. C; G.B.; DA. 1975; VOL. 8; NO 6; PP. 743-750; BIBL. 4 REF.Article

NEAR INFRARED OPTICAL ABSORPTION OF IRON(II) IN SOME SODIUM BOROSILICATE GLASSES.DUNN AG; BEALES KJ; NEWNS GR et al.1978; PHYS. CHEM. GLASSES; G.B.; DA. 1978; VOL. 19; NO 1; PP. 1-4; ABS. FR. ALLEM.; BIBL. 11 REF.Article

MULTICOMPONENT GLASS FIBERS FOR OPTICAL COMMUNICATIONSBEALES KJ; DAY CR; DUNN AG et al.1980; PROC. IEEE; ISSN 0018-9219; USA; DA. 1980; VOL. 68; NO 10; PP. 1191-1194; BIBL. 38 REF.Article

HEAT CAPACITY OF TETRAMETHYLAMMONIUM TRICHLOROMANGANATE(II) FROM 1.5 TO 300 KDUNN AG; JEWESS M; STAVELEY LAK et al.1983; JOURNAL OF CHEMICAL THERMODYNAMICS; ISSN 0021-9614; GBR; DA. 1983; VOL. 15; NO 4; PP. 351-356; BIBL. 19 REF.Article

THERMODYNAMIC STUDY OF DISORDER IN LITHIUM BROMIDE MONOHYDRATECLAYTON PR; DUNN AG; HOLT S et al.1980; CS FARADAY TRANS. 1; ISSN 0300-9599; GBR; DA. 1980; NO 11; PP. 2362-2373; BIBL. 14 REF.Article

OPTICAL FIBRES OF LOW LOSS AND HIGH NUMERICAL APERTUREBEALES KJ; DAY CR; DUNCAN WJ et al.1980; PHYS. CHEM. GLASSES; GBR; DA. 1980; VOL. 21; NO 1; PP. 39-42; ABS. GER/FRE; BIBL. 7 REF.Article

LOW-LOSS, HIGH NA OPTICAL FIBREBEALES KJ; DAY CR; DUNCAN WI et al.sdOPTICAL COMMUNICATION CONFERENCE. EUROPEAN CONFERENCE ON OPTICAL COMMUNICATION. 5/1979/AMSTERDAM; NLD; DA. S.D.; PP. 3.3.1-3.3.4; BIBL. 6 REF.Conference Paper

LOW LOSS GRADED INDEX FIBRE BY THE DOUBLE CRUCIBLE TECHNIQUEBEALES KJ; DAY CR; DUNCAN WJ et al.sdOPTICAL COMMUNICATION CONFERENCE. EUROPEAN CONFERENCE ON OPTICAL COMMUNICATION. 5/1979/AMSTERDAM; NLD; DA. S.D.; PP. 3.2.1-3.2.4; BIBL. 9 REF.Conference Paper

LOW LOSS GRADED INDEX FIBRES BY THE DOUBLE CRUCIBLE TECHNIQUEBEALES KJ; DAY CR; DUNCAN WJ et al.1980; PHYS. CHEM. GLASSES; GBR; DA. 1980; VOL. 21; NO 1; PP. 25-29; ABS. GER/FRE; BIBL. 10 REF.Article

LOW LOSS OPTICAL FIBERS WITH NUMERICAL APERTURES IN THE RANGE 0.3-0.6BEALES KJ; DAY CR; DUNN AG et al.1980; BULL.-AM. CERAM. SOC.; ISSN 0002-7812; USA; DA. 1980; VOL. 59; NO 11; PP. 1119-1121; BIBL. 9 REF.Article

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