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Titlebook: Quantitative Mapping of Nanothermal Transport via Scanning Thermal Microscopy; Jean Spièce Book 2019 Springer Nature Switzerland AG 2019 S

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Jean Spièce.Chapter 8. Fronts and Interfaces ..Part 3. .Explosions. – revealing the dynamic features of fields and fronts due to rapid deposition of exothermic energy ..Chapter 9.   Blast Wave Theory.Chapter 10. Self-Similar Solution.Chapter 11. Phase Space Method.Chapter 12. Detonation.978-3-540-32607-6
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Jean Spièce.Chapter 8. Fronts and Interfaces ..Part 3. .Explosions. – revealing the dynamic features of fields and fronts due to rapid deposition of exothermic energy ..Chapter 9.   Blast Wave Theory.Chapter 10. Self-Similar Solution.Chapter 11. Phase Space Method.Chapter 12. Detonation.978-3-540-32607-6
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https://doi.org/10.1007/978-3-030-30813-1Scanning Thermal Microscopy; Nanoscale heat generation; Thermal Transport at nanoscale; 2D Materials; Sc
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Thermoelectric Phenomena in Graphene Constrictions,n developed: first gold microheaters are measured using SThM for thermometry, then similar devices are tested but with graphene constrictions used as heating sources. This work is thus realised in direct and intense partnership with several persons from Oxford Materials, namely, Achim Harzheim and Pascal Gehring, now at TU Delft.
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