Reflection - Animated Science
... In this case the two waves would cancel each other out - one says that destructive interference has occurred. At a point of constructive interference the net amplitude of the two waves is a maximum, whereas at a point of destructive interference, the net amplitude is a minimum. Of course, one could ...
... In this case the two waves would cancel each other out - one says that destructive interference has occurred. At a point of constructive interference the net amplitude of the two waves is a maximum, whereas at a point of destructive interference, the net amplitude is a minimum. Of course, one could ...
Light Measurement Guide
... and medium light. Remember, natural light may fall by more than 50% for every metre that you move away from a window. This should also be considered before moving a plant to a new position. Also, many ceiling lights distribute their light unevenly. A plant directly underneath a light will receive co ...
... and medium light. Remember, natural light may fall by more than 50% for every metre that you move away from a window. This should also be considered before moving a plant to a new position. Also, many ceiling lights distribute their light unevenly. A plant directly underneath a light will receive co ...
Chemistry Notes
... Separate the water in salt water from the salts Boil off the water and salts will remain Separate a mixture of gases Cool them – they will condense at different temperatures ...
... Separate the water in salt water from the salts Boil off the water and salts will remain Separate a mixture of gases Cool them – they will condense at different temperatures ...
File - Mr. Holz`s Website
... Homeostasis - Ability to maintain a constant internal environment in response to environmental changes Biotic – Living or was once living (dead) Abiotic – Nonliving Atomic Number – Number of protons an element contains Atomic Mass – Average mass of an element (sum of protons, neutrons, and electrons ...
... Homeostasis - Ability to maintain a constant internal environment in response to environmental changes Biotic – Living or was once living (dead) Abiotic – Nonliving Atomic Number – Number of protons an element contains Atomic Mass – Average mass of an element (sum of protons, neutrons, and electrons ...
Electron Excitement Notes
... The model doesn’t explain why negatively charged electrons aren’t pulled into the positively charged nucleus. ...
... The model doesn’t explain why negatively charged electrons aren’t pulled into the positively charged nucleus. ...
Investigating Matter Notes
... that can be ________________ or ________________. Characteristics that can be observed are called __________________ properties. Characteristics that can be measured are called __________________ properties. The set of properties that a particular substance has is unique. No other substance has that ...
... that can be ________________ or ________________. Characteristics that can be observed are called __________________ properties. Characteristics that can be measured are called __________________ properties. The set of properties that a particular substance has is unique. No other substance has that ...
Electromagnetic Spectrum and Light
... Refracted: Bending of light from one medium to another Ex: straw in a cup mirage – false or distorted image Polarized: consists of 2 filters that block horizontal and vertical waves. Ex. Sunglasses use a vertical filter to block horizontal light ...
... Refracted: Bending of light from one medium to another Ex: straw in a cup mirage – false or distorted image Polarized: consists of 2 filters that block horizontal and vertical waves. Ex. Sunglasses use a vertical filter to block horizontal light ...
Press Release
... high temperature and chemical resistant cable tie, ideal for applications where extreme temperatures (-75ºF to 500º F / 260º C to -59º C) or harsh chemical environments are the norm. PAN-TY® Cable Ties are made from Polyetheretherketone (PEEK), a material that provides excellent resistance to most h ...
... high temperature and chemical resistant cable tie, ideal for applications where extreme temperatures (-75ºF to 500º F / 260º C to -59º C) or harsh chemical environments are the norm. PAN-TY® Cable Ties are made from Polyetheretherketone (PEEK), a material that provides excellent resistance to most h ...
The Eye
... Dark vs. Light Vision Dark light is dim vision, when an individual’s eye adapts to a loss of illumination The pigmentation of the eye in dark vision ,is very minimal, consists of rod cells, but since neither rods or cone can survive in the dark for long, blindness is a definite possibility The pho ...
... Dark vs. Light Vision Dark light is dim vision, when an individual’s eye adapts to a loss of illumination The pigmentation of the eye in dark vision ,is very minimal, consists of rod cells, but since neither rods or cone can survive in the dark for long, blindness is a definite possibility The pho ...
Behavior of Light Waves
... • The bending of a wave as it passes at an angle from one medium to another. • Refraction of light takes place when light passes from one medium having one density to a medium with a different density. • The refraction of light occurs because the speed of light varies depending on the material that ...
... • The bending of a wave as it passes at an angle from one medium to another. • Refraction of light takes place when light passes from one medium having one density to a medium with a different density. • The refraction of light occurs because the speed of light varies depending on the material that ...
Photopolymer
A photopolymer is a polymer that changes its properties when exposed to light, often in the ultraviolet or visible region of the electromagnetic spectrum. These changes are often manifested structurally, for example hardening of the material occurs as a result of cross-linking when exposed to light. An example is shown below depicting a mixture of monomers, oligomers, and photoinitiators that conform into a hardened polymeric material through a process called curing,.A wide variety of technologically useful applications rely on photopolymers, for example some enamels and varnishes depend on photopolymer formulation for proper hardening upon exposure to light. In some instances, an enamel can cure in a fraction of a second when exposed to light, as opposed to thermally cured enamels which can require half an hour or longer. Curable materials are widely used for medical, printing, and photoresist technologies. Changes in structural and chemical properties can be induced internally by chromophores that the polymer subunit already possesses, or externally by addition of photosensitive molecules. Typically a photopolymer consists of a mixture of multifunctional monomers and oligomers in order to achieve the desired physical properties, and therefore a wide variety of monomers and oligomers have been developed that can polymerize in the presence of light either through internal or external initiation. Photopolymers undergo a process called curing, where oligomers are cross-linked upon exposure to light, forming what is known as a network polymer. The result of photo curing is the formation of a thermoset network of polymers. One of the advantages of photo-curing is that it can be done selectively using high energy light sources, for example lasers, however, most systems are not readily activated by light, and in this case a photoinitiator is required. Photoinitiators are compounds that upon radiation of light decompose into reactive species that activate polymerization of specific functional groups on the oligomers. An example of a mixture that undergoes cross-linking when exposed to light is shown below. The mixture consists of monomeric styrene and oligomeric acrylates.Most commonly, photopolymerized systems are typically cured through UV radiation, since ultraviolet light is more energetic; however, the development of dye-based photoinitiator systems have allowed for the use of visible light, having potential advantages of processes that are more simple and safe to handle. UV curing in industrial processes has greatly expanded over the past several decades. Many traditional thermally cured and solvent-based technologies can be replaced by photopolymerization technologies. The advantages of photopolymerization over thermally cured polymerization include high rates of polymerization and environmental benefits from elimination of volatile organic solvents.There are two general routes for photoinitiation: free radical and ionic. The general process involves doping a batch of neat polymer with small amounts of photoinitiator, followed by selective radiation of light, resulting a highly cross-linked product. Many of these reactions do not require solvent which eliminates termination path via reaction of initiators with solvent and impurities, in addition to decreasing the overall cost.