Optimal alarm sound design: New design process for noticeable‚ but pleasant sounds Author 193 Track 3: what the beep? ABSTRACT The goal of this research is improving alarm sound design‚ focusing on the paradox of noticeable versus pleasant sounds. The characteristics of annoying sounds correspond in large extend to the characteristics of noticeable sounds. Therefore it is difficult to design an alarm sound‚ which is noticeable‚ but not annoying. A lot of studies are conducted along aspects
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NEUROTRANSMITTERS AND AGGRESSION LARISSA BATISTA PSY 407 SUMMARY According to various scientific research studies conducted over the past three decades suggest that central neurotransmitters play a key role in the modulation of aggression in all mammalian species including humans. Specific neurotransmitters systems involved in aggression include serotonin‚ dopamine‚ norepinephrine‚ GABA‚ and neuropeptides such as vasopressin and oxytocin. Neurotransmitters not only
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Moreover‚ the simplicity of this circuit also adds a possibility of some simple audio modulation of the arc. So‚ let’s begin! The quasi-resonant topology But to say the least‚ the first driver I have built with this topology had an AC flyback and an input power supply rated just 60 watts. The result was a compact‚ short-circuit proof‚ high voltage “lab” supply with frequency control‚ some active cooling‚ audio modulation (singing arc‚ or a plasma speaker)‚ two 5-15 kV high voltage outputs (AC and DC)
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K. (1949). Unusual sensitivities in very young children. Psychoanalytic Study of the Child‚ 333–352. Cohn‚ E.‚ Miller‚ L. J.‚ & Tickle-Degnen‚ L. (2000). Prenatal hopes for therapy outcomes: Children with sensory modulation disorders. American Journal of Occupational Therapy‚ 54(1)‚ 6–12. Craske‚ M. G. (2003). Origins of phobias and anxiety disorders: Why more women than men? Oxford: Elsevier. Dawson‚ G.‚ & Lewy‚ A. (1989). Arousal‚ attention‚ and the socioemotional
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A SEMINAR REPORT “TRANSRECEIVER WI-FI SYSTEM BASED ON IEEE 802.11B STANDARD” Submitted By 1. Aumkar A. Lele 2. Tejash Kasalkar 3. Amol B. Jadhav In partial fulfilment of the third year in computer engineering is approved. Guide: Examiner: ChitraWasnik 1.
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DATA COMMUNICATION & NETWROKING COMP 310 ASSIGNMENT #2 ST.GEORGE’S UNIVERSITY LEOPOLDO PIRELA DUE DATE: SEPTEMBER 21ST‚ 2013 What is the phase shift for the following? a. A sine wave with the maximum amplitude at time zero b. A sine wave with maximum amplitude after 1/4 cycle c. A sine wave with zero amplitude after 3/4 cycle and increasing Solution: a. There is no phase shift at time zero b. (¼) 360 = 90 90 x 2π / 360 = 1.57 rad c. (¾) 360 = 270 270 x 2π / 360 = 4. 7 rad
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noticeably reduced? Save a copy of the spectrum analyzer display for submission. Stop the simulation. I. 8-PSK Transmitter In this step‚ we will change the number of data bits transmitted per symbol by increasing the number of phase states. An 8-PSK modulation scheme uses 8 phase states separated by 45degrees (pi/4) to transmit 3-bits per symbol. Change the M-PSK Modulator Baseband to the following parameters. i. M-ary number: 8 ii. Phase Offset: pi/4 a. Run the simulation and observe the 8-PSK frequency
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CARLETON UNIVERSITY Department of Systems and Computer Engineering SYSC 5608 Wireless Communication Systems Engineering SYSC 5608 ≡ ELG 6168 ≡ CRN 33905 Course Objectives: • To learn the fundamental analytical dynamics of wireless communications (theory) • To become familiar with the current and emerging wireless technologies (applications) Instructor: Office: Phone: Email: URL: Lectures: Professor Halim Yanikomeroglu MC 7032 613-520-5734 halim@sce.carleton.ca http://www.sce.carleton.ca/faculty/yanikomeroglu
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Introduction As communication is a natural urge of human beings so he is constantly struggling to improve the ways of fastest communication‚ LTE technology is the result of such struggle. LTE is the latest standard in wireless communication. Term LTE is referred to Long Term Evolution. It is also referred to as EUTRA (Evolved UMTS Terrestrial Radio Access) or E-UTRAN (Evolved UMTS Terrestrial Radio Access Network). This is the next level of wireless communication. LTE Timeline Objective of
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is the dominant of A Major. It then returns to A Major at bar 47‚ but then in bar 65 it modulates to E Major once more‚ followed by B Major (F#‚ C#‚ G#‚ D# & A#)‚ the dominant of E Major‚ at bar 67; to then return to E Major at bar 90. The final modulation‚ back to A Major‚ occurs at bar 105‚ it remains in A Major for the rest of the piece. The ending of the piece also creates a Plagal Cadence (IV – I)‚ which in this case is D Major to A Major‚ creating an ‘Amen’ ending. There are four Melodic
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