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book article
Comparison of test results and the Reduced Cross-Section Method using a zero-strength layer
Schmid, Joachim
;
Klippel, Michael
;
Just, Alar
;
Brandon, Daniel
Proceedings of the 1st European Workshop Fire Safety of Green Buildings : Berlin, Germany, 6‐7 October 2015
2015
/
p. 51-53 : ill
book article
2
journal article EST
/
journal article ENG
Effective cross-sectional method for timber frame assemblies - definition of coefficients and zero‐strength layers
Tiso, Mattia
;
Just, Alar
;
Schmid, Joachim
;
Klippel, Michael
Fire and materials
2018
/
p. 897-913 : ill
https://doi.org/10.1002/fam.2645
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journal article EST
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journal article ENG
Number of records 2, displaying
1 - 2
keyword
127
1.
zero‐strength layer
2.
zero‐strength layer
3.
zero-strength layer
4.
zero-strenght-layer
5.
fractional power zero-pole
6.
Milliken-Taylor system near zero
7.
nearly zero energy building
8.
nearly zero energy buildings
9.
nearly zero energy buildings (nZEB)
10.
nearly zero-energy building
11.
Nearly Zero-Energy Buildings
12.
nearly-zero energy buildings
13.
nearly-zero energy-building
14.
net zero energy buildings
15.
net-zero energy
16.
paranormed zero-convergence with speed
17.
smart zero carbon city
18.
zero and sign restrictions
19.
zero current switching
20.
zero current switching (ZCS)
21.
Zero energy
22.
zero factor
23.
zero inflated beta distribution
24.
zero injection phase
25.
zero marginal cost
26.
zero moment point
27.
zero partiality
28.
zero potential vorticity assumption
29.
zero value
30.
zero voltage sequence
31.
zero voltage switching
32.
zero voltage switching (ZVS)
33.
zero-bias
34.
zero-CO2
35.
zero-convergence with speed
36.
zero-COVID
37.
zero-current switching (ZCS)
38.
zero-current-switching
39.
zero-energy buildings
40.
zero-knowledge proof
41.
zero-salinity component
42.
zero-shot learning
43.
zero-waste
44.
zero-voltage switching
45.
zero-voltage switching (ZVS)
46.
adhesive bond shear strength
47.
bending strength
48.
bending tensile strength
49.
bond strength
50.
bond strength (materials)
51.
bonding strength
52.
breaking strength
53.
compressive strength
54.
embedment strength
55.
field strength
56.
financial strength
57.
flexural strength
58.
high strength
59.
high strength self-compacting concrete
60.
high-strength wastewater
61.
ionic strength
62.
low system strength
63.
material strength
64.
mechanical strength
65.
modified tie-strength
66.
monoidal strength
67.
residual strength
68.
shear strength
69.
strength
70.
strength analysis
71.
strength development
72.
strength of government
73.
strength of nodes
74.
strength parameters
75.
tensile strength
76.
ultimate strength
77.
ultimate strength capacity
78.
Uniaxial Compressive Strength
79.
yield strength
80.
absorber layer
81.
abstraction layer
82.
additive layer manufacturing
83.
atomic layer deposition
84.
atomic layer deposition (ALD)
85.
bottom boundary layer
86.
boundary layer
87.
buffer layer
88.
Cd-free buffer layer
89.
composite layer
90.
cross-layer
91.
cross-layer fault tolerance
92.
cross-layer reliability
93.
deep layer
94.
double-layer capacitance
95.
Ekman layer
96.
electric double-layer
97.
electron transport layer
98.
Equivalent single layer
99.
glaze layer
100.
hole transport layer
101.
interface layer
102.
layer growing curvature method
103.
layer removing
104.
layer-wise displacement theory
105.
MAC layer
106.
maximal two-layer exchange
107.
mechanically mixed layer (MML)
108.
mixed layer drifter
109.
monograin layer solar cell
110.
monograin layer solar cells
111.
network layer
112.
oxide layer
113.
physical layer
114.
seed layer
115.
selenium capping layer
116.
SiO2 interface layer
117.
sub-maximal two-layer exchange
118.
ZnS buffer layer
119.
thin layer chromatography
120.
Thin layer chromatography (TLC)
121.
thin-layer chromatography
122.
thin-layer rendering
123.
thin-layer rendering system
124.
thin-layer rendering systems
125.
TiO2 electron transport layer
126.
tribo-layer
127.
upper mixed layer
author
1
1.
Zero, R.
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