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Shadow spectral filming: A method of investigating electrothermal atomization. Part 1. Dynamics of formation and structure of the absorption layer of thallium, indium, gallium and aluminium atoms to investigate the dynamics of formation and the structure of the absorption layers of Tl, In, Ga and Al atoms

Shadow spectral imaging of absorbing layers in a transversely heated graphite atomizer: Part 1. Analyte atoms and dissipation of Ag, In, Ga, Bi, Mn, Cu and Tl atomic layers in a transversely heated graphite tube atomizer

Atomic structure of monoelement nanocrystalsAtomic structure of monoelement nanocrystals

Atoms in the structure of degrees of automata transformations and their monadic theoriesThe existence of atoms of automaton reducibility degrees structure with essential different

Shadow spectral filming: A method of investigating electrothermal atomization. Part 1. Dynamics of formation and structure of the absorption layer of thallium, indium, gallium and aluminium atoms to investigate the dynamics of formation and the structure of the absorption layers of Tl, In, Ga and Al atoms

Shadow spectral imaging of absorbing layers in a transversely heated graphite atomizer: Part 1. Analyte atoms and dissipation of Ag, In, Ga, Bi, Mn, Cu and Tl atomic layers in a transversely heated graphite tube atomizer

Bis(benzo)triazinethionoaza-14-crown-4 ether and its complex with CoBr 2: Synthesis and crystal structures in compound L is attached to the nitrogen macrocycle through the C(2) and C(19) atoms, thus forming a

Atoms in the structure of degrees of automata transformations and their monadic theoriesThe existence of atoms of automaton reducibility degrees structure with essential different

Structure of ammonium decachloro-μ-oxodiosmate(IV) (NH4) 4[Os2OCl10] and its behavior in solutionsThe structure of (NH4)4[OS2OCl 10] has been determined by X-ray diffraction. The crystals

Atomically Dispersed Heteronuclear Dual-Atom Catalysts: A New Rising Star in Atomic Catalysis in heterogeneous catalysis due to their unique electronic structures and maximum atom-utilization efficiencies

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