Calculations- 1. Main Show Tank Calculation: The main show tanks radius is 70 feet. Based on that the tank is a sphere-shaped and we have to find the volume‚ I used the formula for the sphere volume which is: V= 4/3(3.14 x r^3) V= 4/3(3.14 x 70^3) V= 4/3(1‚077‚020) V= 1‚436‚026.66666... V= 1‚436‚027 But I have to find the volume of the quarter sphere-shaped‚ so: V= 1/4 x 1‚436‚027 V= 359‚007 The volume of the quarter-shaped tank is 359‚007 cubic feet Holding Tank Calculations- 2. I used
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Australia (Quickenden)‚ Germany (Fritz-Albert Popp)‚ Japan (Inaba)‚ and Poland (Slawinski) show evidence of ultraweak photon emission from biological systems by use of modern single-photon counting systems. Need and Relevance The field of optics is one of the oldest and most important branches of the sciences. Long before the theory of electromagnetism was developed‚ optical phenomena were studied‚ characterized‚ and used as probes of nature. Since the invention of the laser a half-century
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Softdrinks Using Refractive Index ____________________________ A Research Presented to the Faculty of Holy Trinity College‚ Puerto Princesa City ______________________________ In Partial Fulfillment of the Requirements For the Subject Physics I ______________________________ By: Abadilla‚ Abraham F. Canon‚ Gaea A. Cuadra‚ Cristy Marie O. Faigao‚ Anna Margarita O. Magay‚ Mary Stephanie T. Mestidio‚ Teresa P. Omiple‚ Kathlyn Rose R. Pacanza‚ Andrea E. Holy Trinity College
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Level Overall 1.83 Physics Mathematics Chemistry 2.10 1.63 1.77 Corporate Address: CG Tower‚ A-46/A-52 Jhalawar Road‚ Near City Mall‚ Kota 324005 (Rajasthan) Phone: 0744-319222 | Email: contact@resonance.ac.in | Website: www.resonance.ac.in | WAPSite: m.resonance.ac.in JEE (Main) 2013 Analysis 30 4 1 6 25 20 15 17 8 Difficult 15 Moderate 10 11 Chemistry 5 12 Mathematics 16 Easy 0 120 16 Physics 4 24 100 68
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Baldeo Persaud NT1310 Unit 7 Assignment 1: Refraction‚ Reflection and Optics A good example of refraction of light and reflection of light is a rainbow. Sunlight enters the rain droplet at a specific angle and the rain droplet separates the white light into many different colors. This angle is a fixed measurement between your eye and the sun. What color is refracted depends upon the critical angle‚ which is the angle the sunlight strikes the back of the rain droplet. Red light bends the least
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Experiment 112-5 Thin Film Interference Introduction When two waves of equal intensity combine‚ the intensity of the resulting wave can be anywhere between zero and four times the intensity of the individual waves‚ depending upon the phase difference between them. When they are in phase (the maxima coincide with maxima and the minima coincide with minima)‚ maximum intensity results. When they are exactly out of phase (the maxima of one wave coincide with the minima of the other wave)‚ the
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The Fiber Optic Technology By: Juan C. Zapata MGMT 221 Introduction to Management Information Systems Professor: John Khayata Embry Riddle University September 20‚ 2011 TABLE OF CONTENTS: I. ABSTRACT II. HISTORY OF FIBER OPTICS III. HOW FIBER OPTICS WORK IV. ADVANTAGES OF OPTICAL FIBERS V. DIGITAL ENCODING VI. TRANS-OCEANIC CABLES VII. CONCLUSION
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screen perched on a desk. It ’s called a computer monitor‚ and as you stare at it‚ light is focused into a dimesized image on the retina at the back of your eyeball. The retina converts the light into signals that percolate into your brain via the optic nerve. Here ’s a better way to connect with that universe: eliminate that bulky‚ powerhungry monitor altogether by painting the images themselves directly onto your retina. To do so‚
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Name of Student: Name of Partner: Date of Experiment: Date of Report: Aim In this experiment‚ we aim to: (a) determine the refractive index n of a polymer slab from its constructive and destructive thin-film microwave interference; and (b) determine the lattice constant a of an array of thin copper rods from its Bragg diffraction of the incident microwave. Introduction Thin Film Interference When plane electromagnetic wave of wavelength λ is incident on a dielectric surface‚ part
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FSD 1123 EXPERIMENT 4 Microscopy Muhammad Afif Najhan Bin Zakaria 3144001771 Raja Mohammad Danial Bin Raja Zukarnain 3144000051 Muhammad Syukri Haqim Bin Muhammad Razali 4124012121 Muhammad Hafidz Bin Marzuki 3144004791 Nawaf Aizat Bin Md Nawi 3144005721 26 September 2014 TUAN AZMAR
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