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PMC:7143804 / 17039-17728 JSONTXT

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LitCovid-PubTator

Id Subject Object Predicate Lexical cue
107 80-83 Chemical denotes COC
108 84-87 Chemical denotes H2O
109 88-91 Chemical denotes COC

LitCovid-PD-CLO

Id Subject Object Predicate Lexical cue
T112 78-79 http://purl.obolibrary.org/obo/CLO_0001020 denotes a
T113 111-117 http://purl.obolibrary.org/obo/OBI_0000968 denotes device
T114 570-573 http://purl.obolibrary.org/obo/CLO_0007052 denotes K−1
T115 654-656 http://purl.obolibrary.org/obo/CLO_0001022 denotes li
T116 654-656 http://purl.obolibrary.org/obo/CLO_0007314 denotes li

LitCovid-PD-CHEBI

Id Subject Object Predicate Lexical cue chebi_id
T94 80-83 Chemical denotes COC http://purl.obolibrary.org/obo/CHEBI_53310
T95 84-87 Chemical denotes H2O http://purl.obolibrary.org/obo/CHEBI_15377
T96 88-91 Chemical denotes COC http://purl.obolibrary.org/obo/CHEBI_53310

LitCovid-sentences

Id Subject Object Predicate Lexical cue
T141 0-689 Sentence denotes Equation (2) is used to make an estimation of the required heating powers for a COC–H2O–COC stack (in the real device, the upper plate is an adhesive PCR foil, but the thermal properties of this foil are unknown). (2) P=ΔTRth=ΔT∗Aheated∗κCOClCOC,1+κH2OlH2O+κCOClCOC,2+h Here, Rth is defined as the sum of all thermal resistances in series: (3) Rth=1h×Aheated+∑isubstancesliκi×Aheated Here, P is the required power, ΔT is the temperature difference, Rth is the thermal resistance, Aheated is the heated area, h is the convective heat transfer coefficient (being 10 W m−2 K−1 for convection to air [56]), κi is the thermal conductivity of substance i, and li is the thickness of substance i.