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Vollmer, Michael; Mustard, Alexander – Physics Education, 2019
Water can exhibit many different colors due to a variety of physical properties. Here, we focus on some observable colors within very pure freshwater. We only treat the absorption of light due to electronic and ro-vibrational excitations and scattering due to refractive index fluctuations of the water and the respective consequences for the…
Descriptors: Science Instruction, Color, Light, Scientific Concepts
Vollmer, Michael; Möllmann, Klaus-Peter – Physics Education, 2018
Recently, infrared cameras have become available as smartphone accessories. Being less expensive than regular infrared cameras they are readily affordable for schools and many teachers may even privately own one due to their potential to visualize all kinds of thermal phenomena in physics teaching. Any science teacher who wants to use such a…
Descriptors: Physics, Teaching Methods, Science Instruction, Telecommunications
Vollmer, Michael; Möllmann, Klaus-Peter – Physics Education, 2018
There are many physics experiments with long time scales such that they are usually neither shown in the physics class room nor in student labs. However, they can be easily recorded with time-lapse cameras and the respective time-lapse videos allow qualitative and/or quantitative analysis of the underlying physics. Here, we present some examples…
Descriptors: Physics, Science Instruction, Video Technology, Scientific Principles
Vollmer, Michael; Möllmann, Klaus-Peter – Physics Education, 2018
Video analysis with a 30 Hz frame rate is the standard tool in physics education. The development of affordable high-speed-cameras has extended the capabilities of the tool for much smaller time scales to the 1 ms range, using frame rates of typically up to 1000 frames s[superscript -1], allowing us to study transient physics phenomena happening…
Descriptors: Physics, Science Education, Motion, Time
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Education, 2015
A very old and well-known magical trick is the so-called tablecloth pull. A table is covered with a tablecloth, on top of which are certain objects. The task is to remove the tablecloth while the objects--which must not be touched--stay on top of the table. This article describes the physics behind the experiment, and presents examples recorded…
Descriptors: Science Instruction, Physics, Motion, Scientific Principles
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Teacher, 2013
In nature, water drops can have a large variety of sizes and shapes. Small droplets with diameters of the order of 5 to 10 µm are present in fog and clouds. This is not sufficiently large for gravity to dominate their behavior. In contrast, raindrops typically have sizes of the order of 1 mm, with observed maximum sizes in nature of around 5 mm in…
Descriptors: Science Instruction, Water, Science Experiments, Physics
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Education, 2013
We present a number of simple demonstration experiments recorded with high-speed cameras in the fields of gas dynamics and thermal physics. The experiments feature relatively slow combustion processes of pure hydrogen as well as fast reactions involving oxy-hydrogen in a stoichiometric mixture. (Contains 4 figures.)
Descriptors: Heat, Thermodynamics, Chemistry, Video Technology
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Teacher, 2013
There are phenomena that seem impossible--at first glance. But some
knowledge of physics can often allow us to plan and also perform the
seemingly impossible without any magic. Here is a very simple experiment
that can be done with a whole group of students. I learned about it from an
activity in a science center, where it was posed as a magical…
Descriptors: Science Instruction, Physics, Scientific Concepts, Science Experiments
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Education, 2012
We present fascinating simple demonstration experiments recorded with high-speed cameras in the field of fluid dynamics. Examples include oscillations of falling droplets, effects happening upon impact of a liquid droplet into a liquid, the disintegration of extremely large droplets in free fall and the consequences of incompressibility. (Contains…
Descriptors: Mechanics (Physics), Science Experiments, Photography, Science Instruction
Vollmer, Michael; Mollmann, Klaus-Peter – European Journal of Physics, 2012
The introduction of modern high-speed cameras in physics teaching provides a tool not only for easy visualization, but also for quantitative analysis of many simple though fast occurring phenomena. As an example, we present a very well-known demonstration experiment--sometimes also discussed in the context of falling chimneys--which is commonly…
Descriptors: Physics, Science Instruction, Photography, Teaching Methods
Vollmer, Michael; Mollmann, Klaus-Peter – Physics Education, 2011
A selection of hands-on experiments from different fields of physics, which happen too fast for the eye or video cameras to properly observe and analyse the phenomena, is presented. They are recorded and analysed using modern high speed cameras. Two types of cameras were used: the first were rather inexpensive consumer products such as Casio…
Descriptors: Video Technology, Science Activities, Mechanics (Physics), Scientific Principles
Planinsic, Gorazd; Vollmer, Michael – European Journal of Physics, 2008
The surface-to-volume ratio is an important quantity in thermal physics. For example it governs the behaviour of heating or cooling of physical objects as a function of size like, e.g. cubes or spheres made of different material. The starting point in our paper is the simple physics problem of how cheese cubes of different sizes behave if heated…
Descriptors: Animals, Metabolism, Heat, Biology
Mollmann, Klaus-Peter; Vollmer, Michael – European Journal of Physics, 2007
Infrared thermal imaging is a valuable tool in physics education at the university level. It can help to visualize and thereby enhance understanding of physical phenomena from mechanics, thermal physics, electromagnetism, optics and radiation physics, qualitatively as well as quantitatively. We report on its use as lecture demonstrations, student…
Descriptors: Student Projects, Optics, Mechanics (Physics), Heat