Monday, February 8, 2010
... depends on temperature. • Ability to radiate related to ability to absorb—thermal equilibrium • Black body is ideal object that absorbs all radiation independent of frequency (radiation enters small whole bounces around until absorbed) ...
... depends on temperature. • Ability to radiate related to ability to absorb—thermal equilibrium • Black body is ideal object that absorbs all radiation independent of frequency (radiation enters small whole bounces around until absorbed) ...
Potential and Kinetic Energy Problems
... 1) What is the gravitational constant on Earth? 2) What is the Potential Energy of a 10 N (pay attention to the unit, Newtons, here) book that is placed on a shelf that is 2.5 meters high? 3) Determine the amount of potential energy of a 5 N book that is moved to three different shelves on a bookcas ...
... 1) What is the gravitational constant on Earth? 2) What is the Potential Energy of a 10 N (pay attention to the unit, Newtons, here) book that is placed on a shelf that is 2.5 meters high? 3) Determine the amount of potential energy of a 5 N book that is moved to three different shelves on a bookcas ...
Why grass is Green in colour?
... Snow is a whole bunch of individual ice crystals arranged together. When a light photon enters a layer of snow, it goes through an ice crystal on the top, which changes its direction slightly and sends it on to a new ice crystal, which does the same thing. Basically, all the crystals bounce the lig ...
... Snow is a whole bunch of individual ice crystals arranged together. When a light photon enters a layer of snow, it goes through an ice crystal on the top, which changes its direction slightly and sends it on to a new ice crystal, which does the same thing. Basically, all the crystals bounce the lig ...
Matter and Energy mike jacob
... Electrons when in motion create electricity and magnetic fields. Electrons give off a -1 charge, which in return balances it out with the proton who gives off a +1 charge. ...
... Electrons when in motion create electricity and magnetic fields. Electrons give off a -1 charge, which in return balances it out with the proton who gives off a +1 charge. ...
Solution
... R = 8.31451 J K-1 mol-1 R = 8.20578 x 10-2 L atm K-1 mol-1 T (K) = T (C) + 273.15 F = 96,485 C / mol 1 V = 1 J / C 1 nm = 10-9 m 1 kJ = 1000 J h ...
... R = 8.31451 J K-1 mol-1 R = 8.20578 x 10-2 L atm K-1 mol-1 T (K) = T (C) + 273.15 F = 96,485 C / mol 1 V = 1 J / C 1 nm = 10-9 m 1 kJ = 1000 J h ...
Atomic Structure
... 1. Atoms are composed of a small, dense, positively charged nucleus surrounded by negatively charged electrons 2. All electrons are identical in mass and charge 3. Protons and neutrons reside in the nucleus and are almost 2,000 times more massive than electrons. Neutrons are electrically neutral and ...
... 1. Atoms are composed of a small, dense, positively charged nucleus surrounded by negatively charged electrons 2. All electrons are identical in mass and charge 3. Protons and neutrons reside in the nucleus and are almost 2,000 times more massive than electrons. Neutrons are electrically neutral and ...
Stimulated Emission and Inversion 9.2.2 Laser Diodes
... band, and comes back to the band edge by tranferring its surplus energy to phonons, i.e. heating the lattice. The answer is simple: this process does take place, but is not very strong if we do not have many electrons in the conduction band. It is also not necessary for "lasing", but rather detrimen ...
... band, and comes back to the band edge by tranferring its surplus energy to phonons, i.e. heating the lattice. The answer is simple: this process does take place, but is not very strong if we do not have many electrons in the conduction band. It is also not necessary for "lasing", but rather detrimen ...
Scanning Electron Microscopy / Electron Probe X
... As a result of the interaction between the primary electrons and the local material, characteristic X-rays are emitted by the constituent chemical elements. From the energy or wavelength and intensity distribution of these X-rays the local chemical composition can be derived not only qualitatively, ...
... As a result of the interaction between the primary electrons and the local material, characteristic X-rays are emitted by the constituent chemical elements. From the energy or wavelength and intensity distribution of these X-rays the local chemical composition can be derived not only qualitatively, ...