79 Titel in Klassifikation (DDC) → Naturwissenschaften und Mathematik → Physik
zu den Filteroptionen79 Titel in Klassifikation (DDC) → Naturwissenschaften und Mathematik → Physik
- Alle Titel
- Klassifikation (DDC)
- Naturwissenschaften und Mathematik
- Physik
- Physik
- Klassische Mechanik; Festkörpermechanik
- Mechanik der Fluide; Mechanik der Flüssigkeiten
- Gasmechanik
- Schall und verwandte Schwingungen
- Licht, Infrarot- und Ultraviolettphänomene
- Wärme
- Elektrizität, Elektronik
- Magnetismus
- Moderne Physik
Thermal expansion, heat of fusion, and electron density of monovalent metals
In: Physica status solidi : B, Basic research, Jg. 148, S. 91-1002009
Thermal fluctuations of Chern-Simons numbers in the lattice SU(2) Higgs model
In: Physical review, D, Jg. 50 H. 9, S. 5912-59191994
Thermal Green's functions and transport coefficients on the lattice
In: Physical Review, D, Jg. 35 H. 8, S. 2518-25231987

Thermal noise limit for ultra-high vacuum noncontact atomic force microscopy
In: Beilstein Journal of Nanotechnology, Jg. 4, S. 32-442013



Thermal stability of Mo/Si multilayer soft-X-ray mirrors fabricated by electron-beam evaporation
In: Applied Physics A: Materials Science and Processing, Jg. 58 H. 4, S. 371-3761994

Thermally Activated Contact Strengthening Explains Nonmonotonic Temperature and Velocity Dependence of Atomic Friction
In: Physical Review X, Jg. 3 H. 42013




Thickness dependence of the work function in double-layer metallic films
In: Zeitschrift für Physik, B: Condensed Matter, Jg. 77 H. 3, S. 399-4071989
Thickness-dependent effects in the work function of polycrystalline Cu-Films
In: Europhysics letters, Jg. 9 H. 4, S. 379-3841989
Thickness-dependent thin-film resistivity: application of quantitative scanning-tunneling-microscopy imaging
In: Physical review B, Jg. 43 H. 6, S. 5176-51791990
Three-dimensional atomic force microscopy mapping at the solid-liquid interface with fast and flexible data acquisition
In: Review of Scientific Instruments, Jg. 87 H. 6, S. 63704 ff.2016
Three-dimensional hydration layer mapping on the (10.4) surface of calcite using amplitude modulation atomic force microscopy
In: Nanotechnology, Jg. 25 H. 33, S. 335703 ff.2014
