the first part‚ it is the superposition of sine wave. We are going to construct a square wave (approximately) by adding together some pure tones of different frequencies. This stretched string vibrating at different frequencies at the same time. For the second part‚ we will do very similar as first part‚ but use the different frequency which is 196 Hz and its multiple times to create a music note from sine waves. For the third part‚ we do a sound cancellation experiment. We will understand
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0 L/km | 71.0 ft ³ /kft Cable Weight 4.06 kg/m | 2.73 lb/ft Diameter Over Jacket (E Plane) 5.65 mm | 143.50 in Diameter Over Jacket (H Plane) 2.99 mm | 75.90 in Electrical Specifications Operating Frequency Band 1.7 – 2.1 GHz eTE11 Mode Cutoff 1.364 GHz Group Delay 139 ns/100 ft @ 2.000 GHz 456 ns/100 m @ 2.000 GHz Environmental Specifications Installation Temperature 40 °C to +60 °C (40 °F to +140 °F) Operating Temperature
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UNITY AND DISCIPLINE ‘B’ CERTIFICATE EXAMINATION SPECIAL SYLLABUS ARMY WING (SD/SW) MODEL QUESTION PAPER -I Special Subject _________________________________________________________________________ SER NO TOTAL MARKS : 110 ROLL NO : TIME ALLOTTED : 01 Hrs _________________________________________________________________________ ( FOR OFFICE USE ONLY) Srl No Subject Marks Allotted Obtained Sig of Evaluator Obtained 1. Organisation of Signals 08 2. Radio Equipment
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BASIC IDEAS FOR FINAL YEAR PROJECT SELEC TION FOR ELECTRICAL & ELECTRONICS STUDENTS Project works are totally new to most of the engineering aspirants’ and is a blank slate to start with. It is an amorphous and a blank image to the students as they were earlier used to theory courses with prescribed text books and lab works that need to be carried out in the laboratory. A Project work is fortitude of common goal and group approach. Each passing year the engineering scholars are assigned project
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filters Crystal or Discrete component filter that passes all frequencies except those in a stop band centered on a center frequency. High Pass Filters Discrete component filter that passes high frequency but alternates frequencies lower then the cut off frequency. Low Pass Filters Discrete component filter that passes low frequency signals but alternates signals with frequencies higher then the cut off frequency. Filter Designs Chebyshev The transfer function of the
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fork is set vibrating at the same frequency as the tuning fork. The length and tension in the string are adjusted until standing waves are observed on the string. By knowing the tension in the string and the wavelength of the standing waves‚ the frequency of oscillation of the string and thus‚ the tuning fork is found. This value is then compared to a strobelight determination of the frequency. THEORY If transverse waves of constant frequency and amplitude are sent down a string
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Measuring Time Date Due: 2013.09.23____ Name: Lily Li____ Class: A__ Teacher: ___Mrs Slater___ Purpose: To determine the period and the frequency of a ticker timer. Materials/Apparatus: One ticker timer One carbon paper disc One 1.5+ meter tape One test tape One stop-watch Theory: The recording timer is a device that helps you study motion‚ it is a simple electric device plugged
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EXPERIMENT NO. 1 AIM :- To study wave guide components. APPARATUS REQUIRED :- Flanges‚ Twisted wave guide‚ wave guide tees‚ Directional Coupler‚ Attenuator‚ Isolators‚ Circulators‚ Matched terminator‚ Slide screw tuner‚ Slotted Section‚ Tunable probe‚ Horn antennas‚ Movable Short‚ Detector mount. THEORY:- A pipe with any sort of cross- section that could be used as a wave guide or system of conductors for carrying electromagnetic wave‚ is called a wave guide in which the waves are truly guided.
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What is sound? Sound is a wave‚ a pattern—simple or complex‚ depending on the sound—of changing air pressure. Sound is produced by vibrations of objects. The vibrations push and pull on air molecules. The pushes cause a local compression of the air (increase in pressure)‚ and the pulls cause a local rarefaction of the air (decrease in pressure). Since the air molecules are already in constant motion‚ the compressions and rarefactions starting at the original source are rapidly transmitted through
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medium ∗ Medium is more important in setting transmission parameters – Unguided medium ∗ Bandwidth of the signal produced by transmitting antenna is important in setting transmission parameters ∗ Signal directionality · Lower frequency signals are omnidirectional · Higher frequency signals can be focused in a directional beam • Design of data transmission system – Concerned with data rate and distance – Bandwidth ∗ Higher bandwidth implies higher data rate – Transmission impairments ∗ Attenuation ∗ Twisted
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