Dr. Julian Lunow
Werdegang
seit 10/2025: Wiss. Mitarbeiter, Tierökologie und Trophische Interaktionen, Leuphana Universität Lüneburg
01/2024 - 09/2025: Wiss. Mitarbeiter, Angewandte Biodiversitätsforschung, JMU Würzburg
2023: Wiss. Mitarbeiter, Ecological Networks, TU Darmstadt
2016-2022: Studium Landschaftsökologie, Universität Münster
Publikationen
Beiträge in Zeitschriften
- Site-specific climate responses of soil decomposer biodiversity in forests
Katja Wehner (Autor*in) , Julian Lunow (Autor*in) , Matteo Trevisan (Autor*in) , Michael Staab (Autor*in) , Alena Rupprecht (Autor*in) , Nadine Stief (Autor*in) , Christian Storm (Autor*in) , Nico Blüthgen (Autor*in) , Michael Heethoff (Autor*in) , 01.08.2026 , in: Ecosphere, 17, 8 , 19 S.Publikation: Beiträge in Zeitschriften › Zeitschriftenaufsätze › Forschung › begutachtet
Beiträge in Sammelwerken
- Zwischen Legitimationsverpflichtung und Handlungszwang: Waldbiodiversität auf Forstamtswebseiten in Bayern und Hessen
Zoe Nicolai (Autor*in) , Lisa Rhein (Autor*in) , Julian Lunow (Autor*in) , 21.07.2026 Bielefeld , S. 353 - 379 , 27 S.Publikation: Beiträge in Sammelwerken › Aufsätze in Sammelwerken › Forschung › begutachtet
Lehrveranstaltungen
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
This group is for students majoring in Environmental Science.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
This group is for students majoring in Environmental Science.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
Exercises are held biweekly with 4 hours per session. There are a total of 6 dates covering the following topics:
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
1. introduction to ecological experimentation, sampling and analysis of biotic parameters.
2. measurement and significance of physical environmental factors using the example of atmospheric pressure and the solubility of oxygen as a function of temperature.
3. basic operations in the chemical laboratory and introduction to experimental work
4. introductory experiments on soil ecology
Part 1: Importance of soil acidity and soil colors - determination of pH and color of soil horizons
Part 2: Significance of soil types - Granulometric analysis and field method.
Wissenschaftliche Erkenntnisse und die daraus abgeleiteten Empfehlungen für Politik und Praxis entstehen nicht zufällig, sondern durch die systematische Verarbeitung und Analyse von Daten. Nachdem Daten in verschiedener Form erfasst wurden, beginnt ein zentraler Arbeitsschritt: Die Daten müssen bereinigt, zusammengefasst, analysiert und anschaulich dargestellt werden. In diesem Kurs wird vermittelt, wie diese wichtigen Schritte in der Programmiersprache R durchgeführt werden können. Anhand von praktischen Beispielen werden verschiedene Problemstellungen in der Datenverarbeitung und -analyse bearbeitet. Den inhaltlichen Abschluss des Seminars bildet die eigenständige Bearbeitung einer datengetriebenen wissenschaftlichen Fragestellung.