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Jacob Lombardo
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Energy density enhancement of scalable thermoelectric devices using a low thermal budget method with film thickness variation
J Huang, RB Ambade, J Lombardo, B Brooks, A Poosapati, P Banerjee, ...
Applied Materials Today 37, 102116, 2024
42024
Development of an empirical correlation to predict cooling penetration into tissue for practical use
A Caporale, J Lombardo, M Singh, L Zhu
UMBC Student Collection, 2022
32022
Interfacial Engineering to Decouple Electrical and Thermal Conductivities in an Energy Efficient Low Thermal Budget Additive Manufacturing Technique for Flexible Thermoelectric …
J Huang, RB Ambade, J Lombardo, B Brooks, A Poosapati, P Banerjee, ...
PRiME 2024 (October 6-11, 2024), 2024
2024
PERFORMANCE OF SKIN COOLING DEVICE IN COOLING PENETRATION IN TISSUE–EXPERIMENTS AND SIMULATIONS
M Singh, J Lombardo, A Caporale, L Zhu
UMBC Student Collection, 2022
2022
Interfacial Engineering Using Additive Manufacturing to Decouple Electrical and Thermal Conductivity for Next-Generation Thermoelectrics
D Madan, J Huang, RB Ambade, B Brooks, J Lombardo, A Poosapati, ...
Available at SSRN 4548128, 0
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