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Pär Olsson
Universitetslektor
Universitetslektor
,
Mekanik, Material och Komponentdesign
E-postadress
par.olsson
lth.lu
se
Översikt
Fingeravtryck
Nätverk
Forskningsoutput
(45)
Projekt
(1)
Liknande profiler
(6)
Handlett arbete
(1)
Fingeravtryck
Utforska forskningsämnen där Pär Olsson är aktiv. Dessa ämnesetiketter kommer från personens arbeten. Tillsammans bildar de ett unikt fingeravtryck.
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Vikt
Alfabetisk ordning
Material Science
Density
100%
Nanowire
91%
Surface
69%
Temperature
61%
Elastic Property
57%
Tungsten
57%
Film
54%
Polyethylene
49%
Young's Modulus
33%
Thermal Expansion
33%
Stiffness
29%
Buckling
28%
Iron
27%
Oxide Compound
24%
Iron Oxide
24%
Crystalline Material
24%
Beam Theory
23%
Elasticity
22%
Wire
22%
Crack
22%
Impurity
22%
Single Crystal
21%
Mechanical Strength
20%
Bending
20%
Embrittlement
19%
Tensile Loads
18%
Electronic Property
18%
Grain Size
17%
Metal
16%
Ductility
14%
Oxide Film
12%
Point Defect
12%
Aluminum Oxide
12%
Rhenium
12%
Ternary Alloy
12%
Mechanical Property
12%
Chemical Property
12%
Microstructure
12%
Fracture Behavior
12%
Transgranular Fracture
12%
Intergranular Fracture
12%
Tungsten Alloys
12%
Thin Films
12%
Nanocrystalline
12%
Metal Oxide
12%
Cobalt
12%
Zirconium Hydride
12%
Monolayers
12%
Thermodynamic Property
12%
Elastic Deformation
12%
Engineering
Density
41%
Prediction
35%
Atomistic Simulation
34%
Temperature
30%
Buckling
29%
Interatomic Potential
24%
Strain Relaxation
21%
Sectional Dimension
21%
Aspect Ratio
21%
Molecular Static
19%
Fracture
18%
Defects
18%
Thermodynamics
15%
Models
15%
Good Agreement
14%
Mechanical Properties
14%
Young's Modulus
14%
Cohesive Zone
14%
Orthorhombic
13%
Experiments
13%
Low-Temperature
12%
Grain Boundary
12%
Ambient Pressure
12%
Monolayer
12%
Substrates
12%
Ray Absorption
12%
Decohesion
12%
Low Density Poly-Ethylene
12%
Monoclinic
12%
Aluminum Oxide
12%
Structural Modification
12%
Heat Capacity
12%
Energy Engineering
12%
Hard Material
12%
Flexural Rigidity
12%
Thermal Neutron
12%
Zirconium
12%
Room Temperature
12%
Elastic Response
12%
Ground State
12%
Flow Work
12%
Upper Limit
12%
Experimental Characterization
12%
Eigenfrequencies
11%
Tensiles
10%
Development
10%
Energy Surface
9%
Experimental Value
9%
Peak Stress
9%
Nearest Neighbor
8%