SYSTEM OF PARTICLES AND ROTATIONAL MOTION CENTRE OF MASS AND ROTATIONAL MOTION INTRODUCTION- For describing the motion of rigid bodies‚ we shall introduce the key concept of ‘centre of mass’. This concept enables us to understand how we can apply justifiably the Newton’s laws of motion‚ in essentially the same form to objects of large size including even the astronomical objects like the planets and the stars. KINDS OF MOTION OF A RIGID BODY- A rigid body may have three kinds of motion- (1) Pure
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This block contains the LM35 sensor. It receives 9V supply from a battery and delivers an output voltage signal that ranges between 0 and 500 mV depending on temperature‚ 0V at 0ºC and 500mV at 50ºC increasing linearly in between. It may deliver more than 500 mV when the temperature is higher than 50ºC ‚ but it is useless since the conditioning system has a ceiling temperature of 50ºC beyond which sticks displaying as if it was 50ºC. It has a RC damper of 1uA capacitance and 100Ω resistor connected
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According to the law of conservation of angular momentum if there is no unbalanced external torque acting on a rotating system‚ then the angular momentum of that system remains constant. This means that with no net change in external torque‚ the product of rotational inertia and rotational velocity at one time will be the same as at any other time. If the polar ice caps where to melt and the depth of the world’s oceans increased by 30m the mass of the polar ice caps would no longer be at the earth’s
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INTRODUCTION Soccer is the most popular sport worldwide. The Federation Internationale de Football Association represents 203 countries including more than 200 million licensed participants. (9) The Union des Associations Europeennes de Football represents 49 European nations with approximately 20 million participants‚ and the German Soccer Association listed 6.25 million participants in 2000. (6‚28) These statistics do not include players who play soccer on an unorganized basis. No other discrete
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to the deflection arm. The movement of the deflection arm is measured by a linear potentiometer‚ which is connected to a calibrated TQ digital torque meter to give readout of the torque in unit of Nm or lb.in. The move we turned the input hand wheel clockwise to increase the degree of rotation‚ the more torque is produced. At the initial stage‚ the graphical relationship of the torque and degree of rotation measured is linear as demonstrated. The specimen is elastically deformed and the recovery of
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MOMENT OF INERTIA Chua‚ Richard Janssen J.‚ PHY11L/A3 chardsenchua77@yahoo.com Abstract The moment of inertia‚ or also known as the rotational inertia‚ is the rotational analog of a rigid body to a linear or an angular motion. It is one of the fundamentals of the dynamics of rotational motion. The moment of inertia must always be in a specified chosen axis of rotation. The point of motion is basically defined as the relationship between mass and the perpendicular distance to the rotational
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Aireen G. Tiamzon Dr. N. Racho M.A in Philosophy “Is Process Cyclical or Linear?” Process? Some say it is the mode of change whether physical‚ organic or psychological‚ while some defined it as the sequentially structured sequence of successive stages or phases. Whatever the definition or characterization on the matter a person accepts‚ still we can not deny process because it is the pervasive predominant feature of the real. At present time‚ no one will argue about the reality of change
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Professor Amit Seru Linear Technologies Case “I pledge my honor that I have not violated the Chicago Booth honor code for this assignment” Viral Patel 1. Linear’s historical payout policy has been to pay a quarterly dividend of $0.05/share and use any additional funds to repurchase shares to increase shareholder value. This kept their payout ratio to around 15% until about 2002 where this dividend payout moved the ratio to around 25% to 30%. Currently Linear is sitting on a large
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Linear Predictive Coding Jeremy Bradbury December 5‚ 2000 0 Outline I. II. Proposal Introduction A. Speech Coding B. Voice Coders C. LPC Overview III. Historical Perspective of Linear Predictive Coding A. B. C. IV. V. VI. History of Speech & Audio Compression History of Speech Synthesis Analysis/Synthesis Techniques Human Speech Production LPC Model LPC Analysis/Encoding A. B. C. D. E. Input speech Voice/Unvoiced Determination Pitch Period Estimation Vocal Tract Filter Transmitting the Parameters
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The teacher’s hypothesis is horribly inaccurate. First of all‚ Scenario A is the only linear function in the group consisting of A‚B‚ and C. Scenario B is a function‚ but not linear. Scenario C is not a function. Scenario A has all the criteria of a linear function. For every independent variable (aka “x” value or input) in the domain‚ there is one and only one dependent variable (aka output or “y” value) in the range. It can be written in the form “y=mx+b” where “m” and “b” are real numbers‚ “x”
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