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The Multilayered Plate Behaviour Under Bomb Impact

–234. [4] H.L. Chen, Z.C. Xia, J.N. Zhou, H.L. Fan, F.N. Jin - Dynamic responses of underground arch structures subjected to conventional blast loads: Curvature effects , Archives of Civil and Mechanical Engineering, 13, 2013, pp. 322–333. [5] H.L. Chen, J. Zhou, H. Fan, F. Jin, Y. Xu, Y. Qiu - Dynamic responses of buried arch structure subjected to subsurface localized impulsive loading: Experimental study , International Journal of Impact Engineering 65, 2014, pp. 89-101. [6] P. Lardy - Sur une methode nouvelle de resolution du probleme des dalles

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Evaluation of Water Impact For Symmetric Wedge by Experimental and Numerical Methods

References [1] Von-Karman T. (1929): The impact on seaplane floats during landing . – National Advisory Committee for Aeronautics: NACATN321. pp.2-8. [2] Wagner H. (1932): Landing of Sea Planes. – NACA Tech Memo. [3] Payne P.R. (1988): Design of high-speed boats. – Vol.1: Planing. Fishergate Inc. [4] Korobkin A.A. and Pokhnachov V.V. (1988): Initial stage of water impact . – Annual Review of Fluid Mechanics, vol.20. [5] Dobrovolskaya Z.N. (1969): On some problems of similarity flow of fluid with a free surface. – Journal of

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Identifying Vehicle and Collision Impact by Applying the Principle of Conservation of Mechanical Energy

) Barrier equivalent velocity, delta v and CRASH3 stiffness in automobile collisions, SAE Technical Paper Series , no. 850437. 6. James, A., Neptune and James E. Flynn (1994) A Method for Determining Accident Specific Crush Stiffness Coefficients. SAE Transactions. 7. Jiang, T., Grzebieta, R. H., Rechnitzer, G., Richardson, S.; Zhao, X. L. (2003) Review of Car Frontal Stiffness Equations for Estimating Vehicle Impact Velocities. The 18th International Technical Conference on the Enhanced Safety of Vehicles Conference (ESV ), Nagoya. 8. Karapetkov, S

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Environment and Safety Impacts of Additive Manufacturing: A Review

COLLINS, COLORADO, USA: Wohlers Associates, Inc., 2017. [4] FALUDI, J., BAUMERS, M., MASKERY, I., HAGUE, R. 2017. Environmental Impacts of Selective Laser Melting: Do Printer, Powder, Or Power Dominate? J. Ind. Ecol. , 21 , pp. S144–S156. [5] PACHAURI, L. A., MEYER, R. K. 2014 Climate Change 2014: Synthesis Report. Contribution of Working Groups I, II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change . Geneva, Switzerland: IPCC. [6] LIGON, S. C., LISKA, R., STAMPFL, J., GURR, M., MÜLHAUPT, R. 2017. Polymers for

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Impact Resistance of Aluminium Ship Structures

References [1] Jurczak W., Impact and ballistic resistance of high-strength aluminium alloys intended for ship constructions, ‘Polish Maritime Research’, 2015, No. 1, pp. 11-16. [2] Jurczak W., Józwiak S., Świątek K., Wielowarstwowe osłony balistyczne dla morskich i lądowych środków transportu bojowego, ‘Logistyka’, 2010, No. 3, pp. 1683-1693 [Multi-layer ballistic shields for naval and offshore structures of means of combat transport - available in Polish]. [3] Jurczak W., Kyzioł L., Dynamic properties of 7xxx

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Environmental Impact Assessment of Biogas Stations in the Czech Republic

/2001 Coll., on the conditions for treated sludge application in the agricultural land. Lapčík, V. (2009). Industrial Technologies and their Impact on Environment. (monograph). Ostrava, Czech Republic: VŠBTechnical University of Ostrava. FoMG. ISBN 978-80-248-2015-6. 362 p. (in Czech). Czech Government Decree No 146/2007 Coll., on emission limits and other conditions for an operation of stationary combustion sources of air pollution. Decree of the Czech Ministry of the Environment No 13

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Public's perception regarding the major impacts of radioactive nuclear waste. A research study in Romania

References Andersson P., Garnier-Laplace J., Beresford N.A., Copplestone D., Howard J. B., Howe P., Oughton Deborah and Whitehouse P. (2009). Protection of the environment from ionising radiation in a regulatory context (protect): proposed numerical benchmark values. Journal of Environmental Radioactivity 100(2009), 1100-1108. Bond A., Bussell M., O'Sullivan P., Palerm J. (2003). Environmental Impact Assessment and the Decommissioning of Nuclear Power Plants - a Review and Suggestion for a Best Practicable Approach

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Impact Tests of UHSS Steel Welded Joints Using the Drop - Tower Impact Drop Method

spawania stali wysokowytrzymałych ulepszanych cieplnie, Przegląd Spaw. - Weld. Technol. Rev., 90(4), (2018), 9–13. 5. Winczek J., Gawrońska E., Gucwa M., Sczygiol N., Theoretical and experimental investigation of temperature and phase transformation during SAW overlaying, Appl. Sci., 9(7), (2019), 1–17. 6. Hebert M., Rousseau C. E., Shukla A., Shock loading and drop weight impact response of glass reinforced polymer composites, Compos. Struct., 84(3), (2008), 199–208. 7. ASTM D7136/D7136M - 12, Standard Test Method for Measuring the Damage Resistance of

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Estimating the Impact of Human Activities on the Environment in Moldova Region (HI Index)

References Baldwin, Rob; Scherzinger, Ryan; Lipscomb, Don; Mockrin, Miranda; Stein, Susan. 2014, Planning for Land Use and Conservation: Assessing GIS-based Conservation Software for Land Use Planning. Issue: Research Note RMRS-RN-70: 33 Benjamin S. Halpern, Melanie Frazier, John Potapenko, Kenneth S. Casey, Kellee Koenig, Catherine Longo, Julia Stewart Lowndes, R. Cotton Rockwood, Elizabeth R. Selig, Kimberly A. Selkoe & Shaun Walbridge, 2015, Spatial and temporal changes in cumulative human impacts on the world’s ocean , 7615 (2015) doi:10

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Impact Behaviour of Spot-Welded Thin-Walled Frusta

REFERENCES 1. Abbasi M., Reddy S., Ghafari – Nazari A., Fard M . (2015), Multiobjective crashworthiness optimization of multi-cornered thin-walled sheet metal members, Thin-Walled Struct. , 89, 31–41. 2. Alghamdi A.A.A. (2001), Collapsible impact energy absorbers: an overview, Thin-Walled Struct , 39, 189-213. 3. Dassault Systems (2013), Abaqus 6.13 Documentation, Abaqus Online Documentation . 4. Ferdynus M. (2013), An energy absorber in the form of a thin-walled column with square cross-section and dimples, Eksploatacja I

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