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Mon, 14:00–14:45 |
P1 |
MO I: HV I |
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Tue, 14:00–14:45 |
P1 |
MO II: HV II |
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Tue, 14:45–15:30 |
P1 |
MO III: HV III |
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Wed, 11:00–11:45 |
P1 |
MO IV: HV IV |
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Wed, 11:45–12:30 |
P1 |
MO V: HV V |
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Thu, 11:00–11:45 |
HS20 |
MO VI: HV VI |
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Mon, 11:45–12:45 |
P2 |
MO 1: Photoelektronen I |
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Mon, 14:45–15:30 |
P1 |
MO 2: Reaktionen |
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Mon, 16:00–18:00 |
P3 |
MO 3: Energietransfer, Coulombexplosion |
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Mon, 16:00–18:00 |
P2 |
MO 4: Cluster I: Methoden |
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Mon, 16:00–17:30 |
P7 |
MO 5: Theorie I |
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Tue, 11:00–13:00 |
P3 |
MO 6: Theorie II: Dynamik |
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Tue, 11:00–13:00 |
P2 |
MO 7: Elektronische Übergänge |
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Tue, 16:00–18:00 |
Poster |
MO 8: Poster I: Photoelektronen, Photodissoziation, Cluster, Methoden |
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Tue, 18:00–20:00 |
Poster |
MO 9: Poster II: Spektroskopie, Stöße, Theorie |
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Wed, 14:00–15:30 |
P2 |
MO 10: Cluster II: Anregungen |
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Wed, 14:00–15:30 |
P3 |
MO 11: Photodissoziation I |
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Wed, 16:00–18:00 |
P2 |
MO 12: Cluster III: Moleküle |
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Wed, 16:00–17:45 |
P3 |
MO 13: Photodissoziation II |
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Wed, 16:00–18:00 |
P7 |
MO 14: Photoelektronen II |
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Thu, 11:45–13:00 |
P3 |
MO 15: Theorie III: Struktur |
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Thu, 11:45–13:00 |
HS20 |
MO 16: Cluster IV: Fullerene / Oberflächen |
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Thu, 14:00–15:30 |
P3 |
MO 17: Spektroskopie |
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Thu, 14:00–15:30 |
P2 |
MO 18: Cluster V: Reaktionen |
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