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Like light waves, water waves emerging from two sources interferes in the space surrounding the sources to produce a pattern of nodes and antinodes lying along lines. The diagram at the right represents the interference pattern created by two water waves. The waves were created by two objects bobbing up and down in phase at the same frequency. Point P on the pattern is a distance of 34.0 cm from S1 and 23.8 cm from S2. Determine the wavelength (in cm) of the water waves. Even more significantly, the word עָשָׂה (‘āśâ; “to do,” “to make”) is used specifically of the creation of the astronomical bodies in Genesis 1:16. The meaning of this verb is broader, semantically speaking, than בָּרָא, and may refer to acts of creative ingenuity by agents other than God. That being said, it is indisputably evident that עָשָׂה is commonly used to refer to the act of fashioning something out of already-existing material (for example, the creation of man in Genesis 1:26; cf. 2:7). Granted, such is not always the intended meaning, even with respect to the astronomical bodies (for example, compare Genesis 1:1 with 2 Kings 19:15; Isaiah 37:16; 66:22; Jeremiah 32:17). However, the use of עָשָׂה in the Day Four creation record apart from any contextual clues to suggest that it must bear the sense of creation out of nothing suggests that there is a distinct possibility that the making of the astronomical bodies was instead a matter of fashioning them from material previously created on Day One. Just as the description of the earth in Genesis 1:2 is of something unfinished that God returned over the next several days to shape and prepare, perhaps the matter that would become the astronomical bodies was created on Day One but was shaped on Day Four, whereupon God brought forth their light to the earth. eService – Report damaged streetlights  If the light has one of the following faults please call 01443 425001 during the hours of 8:30am – 5:00pm or 01443 425011 during evenings and weekends. If you notice a streetlight or outdoor area light is out, please use this form to let us know about the problem. Thank you for helping to keep our community safe. Some astronomers do not accept inflationary models and have proposed other possible solutions to the horizon problem. These include: scenarios in which the gravitational constant varies with time,5 the ‘ekpyrotic model’ which involves a cyclic universe,6 scenarios in which light takes ‘shortcuts’ through extra (hypothetical) dimensions,7 ‘null-singularity’ models,8 and models in which the speed of light was much greater in the past.9,10 (Creationists have also pointed out that a changing speed of light may solve light-travel–time difficulties for biblical creation.11) A set of outlets or lights simply went dead. If you have reset any breakers or GFCIs (do you know How to?), you are probably left with a poor connection somewhere along a circuit. So find the Location of this “open.” An alternative calculation starts with the fact that commercial building lighting consumes in excess of 81.68 terawatts (1999 data) of electricity,[19] according to the U.S. DOE. Thus commercial lighting alone consumes about four to five million barrels per day (equivalent) of petroleum, in line with the alternate rationale above to estimate U.S. lighting energy consumption. Even among developed countries there are large differences in patterns of light use. American cities emit 3–5 times more light to space per capita compared to German cities.[20] Admittedly, I have left much unsaid. Since my modest proposal appeals to a miracle, there may be no physical predictions and hence nothing that we can test. Still, even a miracle can leave some observable evidence. For instance, Jesus’ disciples and many others saw (and even touched) our Lord’s risen body. Many people saw other bodies healed or raised from the dead. Thousands of people ate miraculously produced fish and bread, and many tasted the wine at the marriage feast of Cana. Might my proposal yield effects that we might observe today? Perhaps. Consider light leaving a distant star shortly after its formation on Day Four. In my view the intervening space was stretched to bring the light rapidly to earth. Soon after this event, probably still on Day Four, space assumed the properties that it appears to have today. Were properties of the light, such as wavelength and frequency, altered during this process? I would suppose not. If it did, then it likely would produce an observable change of some sort. However, using the definition of “light pollution” from some Italian regional bills (i.e., “every irradiance of artificial light outside competence areas and particularly upward the sky”) only full cutoff design prevents light pollution. The Italian Lombardy region, where only full cutoff design is allowed (Lombardy act no. 17/2000, promoted by Cielobuio-coordination for the protection of the night sky), in 2007 had the lowest per capita energy consumption for public lighting in Italy. The same legislation also imposes a minimum distance between street lamps of about four times their height, so full cut off street lamps are the best solution to reduce both light pollution and electrical power usage. We began with a problem (we have too much light at night) and a related question (how much artificial light at night is appropriate?). We now have the origins, context, and detailed definition in hand for the concept of light pollution. With this, we can return to the question of framing outlined in Section 2, and scrutinize the ethical significance of increasingly relying on light pollution for policy decision-making; we can assess the answer light pollution provides for our question. Increased regulation and alternative design approaches will be necessary to address the myriad of undesired effects uncovered in contemporary research. And, light pollution offers a framing to orient responses. Furthermore, in it’s broad understanding of causes and effects, light pollution accommodates a variety of interpretations, allowing for a multiplicity of regulatory and technical solutions. Dark sky ordinances and new laws already exist, which often include detailed technical specifications.99. Morgan-Taylor (2014 Morgan-Taylor, M. (2014). Regulating light pollution in Europe: Legal challenges and ways forward. In J. Meier, U. Hasenöhrl, K. Krause, & M. Pottharst (Eds.), Urban lighting, light pollution and society (pp. 159–176). New York, NY: Taylor & Francis. [Google Scholar]) provides a brief analysis of current regulatory efforts in Europe. France is cited as having perhaps the strongest law to date, which requires non-residential buildings to switch off exterior lights and window displays between 1am and 7am. Other examples cited include regions of Italy that have taken a technical approach, prohibited lights above a specific brightness to project above the horizontal. Additionally, an online appendix to the article by Kyba et al. (2014 Kyba, C., Hänel, A., & Hölker, F. (2014). Redefining efficiency for outdoor lighting. Energy & Environmental Science, 7, 1806–1809.10.1039/C4EE00566J[Crossref], [Web of Science ®] [Google Scholar]) lists all known regulations and ordinances that are currently in place, as well as their motivations and targets.View all notes However, it is pertinent to reflect on the framework in which these decisions were made, and to consider how light pollution will shape future initiatives. In another example, the city of Calgary has recently replaced most residential street lights with models that are comparably energy efficient.[98] The motivation is primarily operation cost and environmental conservation. The costs of installation are expected to be regained through energy savings within six to seven years. Studies suggest that light pollution around lakes prevents zooplankton, such as Daphnia, from eating surface algae, causing algal blooms that can kill off the lakes’ plants and lower water quality.[55] Light pollution may also affect ecosystems in other ways. For example, lepidopterists and entomologists have documented that nighttime light may interfere with the ability of moths and other nocturnal insects to navigate.[56] Night-blooming flowers that depend on moths for pollination may be affected by night lighting, as there is no replacement pollinator that would not be affected by the artificial light. This can lead to species decline of plants that are unable to reproduce, and change an area’s longterm ecology.[57] Among nocturnal insects, fireflies (Coleoptera: Lampyridae, Phengodidae e Elateridae) are especially interesting study objects for light pollution, once they depend on their own light to reproduce and, consequently, are very sensitive to environmental levels of light.[58][59][60] In 2015 it was shown and quantified for the first time the negative effects of direct illumination on fireflies, in a study that monitored populations over four years.[61] Fireflies are charismatic [62] (which is a rare quality among insects) and are easily spotted by nonexperts, providing thus good flagship species to attract public attention;[61] good investigation models for the effects of light on nocturnal wildlife;[61] and finally, due to their sensibility and rapid response to environmental changes, good bioindicators for artificial night lighting.[63] BeMass machoman Tonus Fortis Testogen VigRX BeMass BioBelt Atlant Gel Maxman BeMass

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