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1

Kanaskie, Alan. Ground verification of aerial survey for Port-Orford-cedar root disease in southwest Oregon. Pacific Northwest Research Station, USDA Forest Service, Forestry Sciences Laboratory, 2002.

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2

United States. National Aeronautics and Space Administration., ed. Regulation of nitrogen uptake and assimulation: Effects of nitrogen source and root-zone and aerial environment on growth and productivity of soybean : final technical report. National Aeronautics and Space Administration, 1994.

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3

Martin, N. E. Using aerial photos to fingerprint a stand for root disease research. U.S. Dept. of Agriculture, Forest Service, Intermountain Research Station, 1986.

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4

Martin, N. E. Using aerial photos to fingerprint a stand for root disease research. U.S. Dept. of Agriculture, Forest Service, Intermountain Research Station, 1986.

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5

Sarcinelli-Filho, Mario, and Ricardo Carelli. Control of Ground and Aerial Robots. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-23088-2.

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6

Bestaoui Sebbane, Yasmina. Planning and Decision Making for Aerial Robots. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-03707-3.

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7

Vepa, Ranjan. Nonlinear Control of Robots and Unmanned Aerial Vehicles. CRC Press, 2016. http://dx.doi.org/10.1201/9781315367378.

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8

Bodie, Karen, Maximilian Brunner, and Mike Allenspach. Omnidirectional Tilt-Rotor Flying Robots for Aerial Physical Interaction. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-45497-4.

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9

Zufferey, Raphael, Robert Siddall, Sophie F. Armanini, and Mirko Kovac. Between Sea and Sky: Aerial Aquatic Locomotion in Miniature Robots. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-89575-4.

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10

Tognon, Marco, and Antonio Franchi. Theory and Applications for Control of Aerial Robots in Physical Interaction Through Tethers. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-48659-4.

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11

Aerial Vehicles. InTech, 2009.

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12

Autonomous Flying Robots: Unmanned Aerial Vehicles and Micro Aerial Vehicles. Springer, 2010.

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13

Wei, Wang, Satoshi Suzuki, Farid Kendoul, Kenzo Nonami, and Daisuke Nakazawa. Autonomous Flying Robots: Unmanned Aerial Vehicles and Micro Aerial Vehicles. Springer, 2014.

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14

Autonomous Flying Robots Unmanned Aerial Vehicles And Micro Aerial Vehicles. Springer, 2010.

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15

Mejia, Omar Dario Lopez, and Jaime Alberto Escobar Gomez, eds. Aerial Robots - Aerodynamics, Control and Applications. InTech, 2017. http://dx.doi.org/10.5772/65604.

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16

Sarcinelli-Filho, Mario, and Ricardo Carelli. Control of Ground and Aerial Robots. Springer International Publishing AG, 2023.

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17

Mejia, Omar Dario Lopez, and Jaime Alberto Escobar Gomez. Aerial Robots - Aerodynamics, Control and Applications. InTechOpen, 2017.

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18

Sarcinelli-Filho, Mario, and Ricardo Carelli. Control of Ground and Aerial Robots. Springer International Publishing AG, 2024.

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19

Andrade-Cetto, Juan, Angel Santamaria-Navarro, and Joan Solà. Visual Guidance of Unmanned Aerial Manipulators. Springer, 2019.

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20

Andrade-Cetto, Juan, Angel Santamaria-Navarro, and Joan Solà. Visual Guidance of Unmanned Aerial Manipulators. Springer, 2018.

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21

Sebbane, Yasmina Bestaoui. Planning and Decision Making for Aerial Robots. Springer, 2016.

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22

Sebbane, Yasmina Bestaoui. First Course in Aerial Robots and Drones. Taylor & Francis Group, 2022.

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23

Sebbane, Yasmina Bestaoui. First Course in Aerial Robots and Drones. Taylor & Francis Group, 2022.

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24

Sebbane, Yasmina Bestaoui. First Course in Aerial Robots and Drones. CRC Press LLC, 2022.

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25

First Course in Aerial Robots and Drones. Taylor & Francis Group, 2022.

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26

Planning and Decision Making for Aerial Robots. Springer International Publishing AG, 2014.

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27

Sebbane, Yasmina Bestaoui. First Course in Aerial Robots and Drones. Taylor & Francis Group, 2022.

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28

Dang, Tung, Shehryar Khattak, Frank Mascarich, Nikhil Khedekar, and Christos Papachristos. Modeling, Control, State Estimation and Path Planning Methods for Autonomous Multirotor Aerial Robots. Now Publishers, 2018.

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29

Kovac, Mirko, Raphael Zufferey, Sophie Armanini, and Robert Siddall. Between Sea and Sky: Aerial Aquatic Locomotion in Miniature Robots. Springer International Publishing AG, 2021.

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30

Fierro, Rafael, Patricio Cruz, and Ivana Palunko. Load Transportation Using Aerial Robots: Safe and Efficient Load Manipulation. Springer, 2020.

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31

Sebbane, Yasmina Bestaoui. Science and Engineering: Planning and Decision Making for Aerial Robots. Springer, 2014.

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32

Armanini, Sophie F. Between Sea and Sky: Aerial Aquatic Locomotion in Miniature Robots. Springer International Publishing AG, 2023.

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33

Vepa, Ranjan. Nonlinear Control of Robots and Unmanned Aerial Vehicles: An Integrated Approach. Taylor & Francis Group, 2016.

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34

Vepa, Ranjan. Nonlinear Control of Robots and Unmanned Aerial Vehicles: An Integrated Approach. Taylor & Francis Group, 2016.

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35

Vepa, Ranjan. Nonlinear Control of Robots and Unmanned Aerial Vehicles: An Integrated Approach. Taylor & Francis Group, 2016.

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36

Vepa, Ranjan. Nonlinear Control of Robots and Unmanned Aerial Vehicles: An Integrated Approach. Taylor & Francis Group, 2016.

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37

Nonlinear Control of Robots and Unmanned Aerial Vehicles: An Integrated Approach. Taylor & Francis Group, 2016.

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38

McCammon, Holly J., Verta Taylor, Jo Reger, and Rachel L. Einwohner. Introduction. Edited by Holly J. McCammon, Verta Taylor, Jo Reger, and Rachel L. Einwohner. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780190204204.013.41.

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The introduction to The Oxford Handbook of U.S. Women’s Social Movement Activism, begins with an “aerial” view of the history of scholarship on U.S. women’s collective action, tracing the roots of this body of research to the early nineteenth century and following its trajectory to the present. In recent decades, the scholarly study of U.S. women’s activism has increased dramatically, with a wide range of investigations that reveal both the broad diversity of women’s politicized collective action and the theoretical sophistication in our understanding of the causes, processes, and consequences
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39

Tognon, Marco, and Antonio Franchi. Theory and Applications for Control of Aerial Robots in Physical Interaction Through Tethers. Springer International Publishing AG, 2021.

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40

Tognon, Marco, and Antonio Franchi. Theory and Applications for Control of Aerial Robots in Physical Interaction Through Tethers. Springer, 2020.

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41

Ghabcheloo, Reza, and Antonio M. Pascoal, eds. Motion Optimization and Control of Single and Multiple Autonomous Aerial, Land, and Marine Robots. MDPI, 2023. http://dx.doi.org/10.3390/books978-3-0365-6329-9.

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42

Brunner, Maximilian, and Mike Allenspach. Omnidirectional Tilt-Rotor Flying Robots for Aerial Physical Interaction: Modelling, Control, Design and Experiments. Springer, 2023.

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43

Floreano, Dario, and Nicola Nosengo. Tales from a Robotic World. The MIT Press, 2022. http://dx.doi.org/10.7551/mitpress/13489.001.0001.

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Stories from the future of intelligent machines—from rescue drones to robot spouses—and accounts of cutting-edge research that could make it all possible. Tech prognosticators promised us robots—autonomous humanoids that could carry out any number of tasks. Instead, we have robot vacuum cleaners. But, as Dario Floreano and Nicola Nosengo report, advances in robotics could bring those rosy predictions closer to reality. A new generation of robots, directly inspired by the intelligence and bodies of living organisms, will be able not only to process data but to interact physically with humans an
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44

Regulation of nitrogen uptake and assimilation: Effects of nitrogen source, root-zone pH, and aerial CO concentration on growth and productivity of soybeans. National Aeronautics and Space Administration, Ames Research Center, 1990.

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45

National Aeronautics and Space Administration (NASA) Staff. Regulation of Nitrogen Uptake and Assimilation: Effects of Nitrogen Source, Root-Zone Ph, and Aerial Co2 Concentration on Growth and Productivity of Soybeans. Independently Published, 2018.

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46

Department of Defense. Ground Warfare In 2050: How It Might Look - Battlefield of the Future with Advanced Military Technologies, Cyber-Electromagnetic Activities , Robots, Aerial Platforms and Artificial Intelligence. Independently Published, 2019.

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47

Longhi, Sauro, Alessandro Freddi, and Andrea Monteriù. Fault Diagnosis and Fault-Tolerant Control of Robotic and Autonomous Systems. Institution of Engineering & Technology, 2020.

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48

Fault Diagnosis and Fault-Tolerant Control of Robotic and Autonomous Systems. Institution of Engineering & Technology, 2020.

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49

Technology Horizons In The Us Military Unmanned Systems And Air Force Science And Technical Endeavors. Nova Science Publishers, 2012.

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