Rename "academia.type" to "academia.medium"
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9 changed files with 58 additions and 55 deletions
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@ -10,7 +10,7 @@ keywords:
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- radiation
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- rumen
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- microbial electrolysis cells
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type: thesis
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medium: thesis
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authors:
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- Thomas A. Christensen II
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link: "/academia/cheme-car/cud_cheme_car_web.pdf"
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@ -4,7 +4,7 @@ date: 2018-08-01
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cardImage: library
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draft: false
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featured: false
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type: presentation
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medium: presentation
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authors:
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- Thomas A. Christensen II
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journal: "Idaho INBRE Summer Research Conference"
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@ -1,5 +1,7 @@
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---
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title: "Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery"
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title:
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"Metagenomic analysis of rumen populations in week-old calves as altered by
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maternal late gestational nutrition and mode of delivery"
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date: 2019-06-12
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cardImage: cannulated-cows
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draft: false
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@ -9,7 +11,7 @@ keywords:
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- metagenomics
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- microbiome
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- rumen
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type: poster
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medium: poster
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authors:
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- Thomas A. Christensen II
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- Kathy J. Austin
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@ -1,5 +1,7 @@
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---
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title: "Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate"
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title:
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"Measuring Diffusion of Trichlorethylene Breakdown Products in
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Polyvinylalginate"
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date: 2018-10-29
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cardImage: library
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draft: false
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@ -10,7 +12,7 @@ keywords:
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- hydrogel polymers
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- proton transport
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- chemical engineering
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type: poster
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medium: poster
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authors:
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- Thomas A. Christensen II
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- Samuel R. Wolfe
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@ -4,7 +4,7 @@ date: 2018-07-31
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cardImage: library
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draft: false
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featured: false
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type: poster
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medium: poster
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authors:
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- Thomas A. Christensen II
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- Jonathan Counts
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@ -21,12 +21,12 @@ microorganisms to perform this remediation. Polyvinylalginate (PVA) shows
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promise as a useful shield for microorganisms carrying out bioremediation of TCE
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by surrounding them in a protective biofilm-like layer, however, key information
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is missing which relates diffusion of TCE or its metabolic products through PVA.
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To measure the effective diffusion coefficient of H{{< sup "+" >}} ions through a PVA membrane
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cross-linked with boric acid and calcium ions, we used a modified diaphragm
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cell. We found the effective diffusion coefficient to be 1.40 × 10{{< sup -5 >}}
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± 1.91 × 10{{<sup -6 >}} cm{{< sup 2 >}}s, a nearly seven-fold decrease in
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diffusivity compared to protons in water, with an unexpected significant but as
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of yet unquantified adsorption capacity. These results suggest that
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polyvinylalginate is effective in slowing diffusion of protons and buffering
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these acids produced by trichloroethylene metabolism, and remains suitable for
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encapsulation of microorganisms involved in bioremediation.
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To measure the effective diffusion coefficient of H{{< sup "+" >}} ions through
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a PVA membrane cross-linked with boric acid and calcium ions, we used a modified
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diaphragm cell. We found the effective diffusion coefficient to be 1.40 ×
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10{{< sup -5 >}} ± 1.91 × 10{{<sup -6 >}} cm{{< sup 2 >}}s, a nearly
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seven-fold decrease in diffusivity compared to protons in water, with an
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unexpected significant but as of yet unquantified adsorption capacity. These
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results suggest that polyvinylalginate is effective in slowing diffusion of
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protons and buffering these acids produced by trichloroethylene metabolism, and
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remains suitable for encapsulation of microorganisms involved in bioremediation.
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@ -10,7 +10,7 @@ keywords:
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- porcine enteric disease
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- virome
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- rotavirus
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type: paper
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medium: paper
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authors:
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- Tyler Doerksen
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- Thomas A. Christensen II
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@ -1,5 +1,7 @@
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---
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title: "Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers"
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title:
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"Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel
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Polymers"
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date: 2020-08-07
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cardImage: library
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draft: false
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@ -10,7 +12,7 @@ keywords:
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- hydrogel polymers
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- proton transport
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- chemical engineering
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type: thesis
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medium: thesis
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authors:
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- Thomas A. Christensen II
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link: "https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2"
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@ -31,11 +33,11 @@ with each compound was determined. It was found that the diffusivity of protons
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through an unmodified 10% w/v poly(vinyl alcohol) membrane was 1.76 ×
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10{{< sup -5 >}} cm{{< sup 2 >}} s{{< sup -1 >}}, the diffusivity through a
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10%/2% w/w/v poly(vinyl alcohol)/sodium decavanadate membrane was 3.10 ×
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10{{< sup -6 >}} cm{{< sup 2 >}} s{{< sup -1 >}}, and the diffusivity through
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a 10%/2% w/w/v poly(vinyl alcohol)/alumina sulfate membrane was 3.32 ×
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10{{< sup -6 >}} cm{{< sup 2 >}} s{{< sup -1 >}}, and the diffusivity through a
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10%/2% w/w/v poly(vinyl alcohol)/alumina sulfate membrane was 3.32 ×
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10{{< sup -7 >}} cm{{< sup 2 >}} s{{< sup -1 >}}. Through analysis of the
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diaphragm cell lag period, it was found the incorporation of sodium
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decavanadate did not increase the reactivity of a poly(vinyl alcohol)
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hydrogel, and incorporation of alumina sulfate lowered the reactivity. These
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results indicate that polyoxometalate integration into hydrogel membranes is
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feasible, but does not provide any advantage to a bioremediation scenario.
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diaphragm cell lag period, it was found the incorporation of sodium decavanadate
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did not increase the reactivity of a poly(vinyl alcohol) hydrogel, and
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incorporation of alumina sulfate lowered the reactivity. These results indicate
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that polyoxometalate integration into hydrogel membranes is feasible, but does
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not provide any advantage to a bioremediation scenario.
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4
layouts/academia/single.html
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4
layouts/academia/single.html
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{{ define "main" }}
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<iframe src="{{ .Params.link }}"></iframe>
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{{ .Content }}
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{{ end }}
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@ -1,34 +1,26 @@
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<div class="d-flex py-2">
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<div class="px-2">
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{{ if eq .Params.medium "paper" }}
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{{ .Scratch.Set "fa" "fa-book" }}
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{{ else if eq .Params.medium "poster" }}
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{{ .Scratch.Set "fa" "fa-presentation" }}
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{{ else if eq .Params.medium "thesis" }}
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{{ .Scratch.Set "fa" "fa-graduation-cap" }}
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{{ else if eq .Params.medium "presentation" }}
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{{ .Scratch.Set "fa" "fa-podium" }}
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{{ else }}
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{{ .Scratch.Set "fa" "fa-notebook" }}
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{{ end }}
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{{ $fa := (.Scratch.Get "fa") }}
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<h3>
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{{ if eq .Params.type "paper" }}
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<i
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class="fad fa-fw fa-book"
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class="fad fa-fw {{ $fa }}"
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data-bs-toggle="tooltip"
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title="Journal article"
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title="{{ humanize .Params.medium }}"
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></i>
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{{ end }}
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{{ if eq .Params.type "poster" }}
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<i
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class="fad fa-fw fa-presentation"
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data-bs-toggle="tooltip"
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title="Poster"
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></i>
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{{ end }}
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{{ if eq .Params.type "thesis" }}
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<i
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class="fad fa-fw fa-graduation-cap"
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data-bs-toggle="tooltip"
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title="Thesis"
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></i>
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{{ end }}
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{{ if eq .Params.type "presentation" }}
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<i
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class="fad fa-fw fa-podium"
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data-bs-toggle="tooltip"
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title="Presentation"
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></i>
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{{ end }}
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</h3>
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{{ with .Params.link }}
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<a
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{{- end }}
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{{ end }}
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<br />
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{{ .Params.journal }}: {{ .Params.location }}
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{{ .Params.journal }}:
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{{ .Params.location }}
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({{ dateFormat "02 Jan 2006" .Params.date }})
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<br />
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{{ with .Params.keywords }}
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