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victoria hooper

victoria h.

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Question 9 Not yet answered Points out of 1.00 Which of the following forms of electromagnetic radiation are able to penetrate the earth's atmosphere? Select one: gamma ray and visible light infrared and x-ray x-ray and ultraviolet radio and gamma ray visible light and radio Clear my choice

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Section 5.2: The Definite Integral Total Area vs Signed Area A particle is moving on a straight line. Its distance (in meters) from the origin at time t (in seconds) is s(t). The velocity v(t) = s'(t) is given by the graph below: y 2 0 2 4 6 8 10 12 14 t -2 y = v(t) 1. What is the total distance traveled by the particle from t = 0 to t = 14? 2. What is the displacement of the particle from t = 0 to t = 14?

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a submarine submerges to a depth of 1000 ft. If atmospheric pressure

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Multiple Choice Question Management, being representative of all the owners, is in the agency position of making decisions that are in the best interest of the firm's: O suppliers O shareholders O managers O executives

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Question 2 (1 point) The average age of the three hundred men. Statistic Population Parameter Question 3 (1 point) The average age of all men in the state. Statistic Population Parameter Question 4 (1 point) The median IQ of the three hundred men. Statistic Population Parameter Question 5 (1 point) The largest shoe size for the three hundred men. Statistic Population Parameter

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2. The electric field intensity at a point near a charge Q represents the energy possessed by a unit positive charge, the force acting on a unit positive charge. a) b) the energy possessed by a unit negative charge, the force acting on a unit negative charge, the amount of work which could be done by a unit positive charge. c) d) e) Response for.

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Find the Fourier series for the periodic function shown with $F_o = 200$ N and $T = 5$ sec.

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Evaluate the sine, cosine, and tangent of the angle without using a calculator. (If an answer is undefined, enter UNDEFINED.) \frac{11\pi}{4} \sin \theta = 3\pi \cos \theta = \tan \theta =

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Series 22-45 6 Watts, 10,000 RPM Magnet AINiCo Efficiency up to 85% Commutator CuAg 0.15 segments Rotor Moment Brushes Graphite of Inertia 2010 oz-in^2 Bearings Oilite Mechanical Time Const. approx. 20 ms M2x4 Weight 2.7 oz 222 2 Dimensions - mm 1 mm + 0.0394 in Possible Combinations GearHeads H30, H40, P24 Tacho 20-08 Encoder HEDS-5500 Recommended Operational Data Speed max. 10,000 rpm Torque 0.7 oz-in Temperature -4 to +175F 13.5 12 455 Type Voltage No load speed Resistance Stall torque No load current approx. Recommended current Counter-EMF Speed/Torque Gradient 22-45-30 3 7,500 0.8 1.89 65 1000 0.51 3980 22-45-20 6 10,000 2.5 1.80 55 800 0.77 5560 22-45-16 9 10,100 4.5 2.19 45 600 1.15 4510 22-45-14 12 10,000 6 3.07 35 450 1.56 3270 22-45-12 18 9,700 14 2.95 25 300 2.34 3420 22-45-10 24 9,900 28 2.63 20 250 3.15 3780 22-45-08 36 V 9,700 rpm 65 Ohms 2.12 oz-in 18 mA 150 mA 4.78 4740 rpm/oz-in Gear Heads H30 and H40 with Oilite Bearings GearHead Max. torque Max. Motor Speed Max. Power Max. Axial Load Max. Radial Load Weight with motor H30 30 5000 1 36 36 4.2 H40 42 7500 2 54 36 5 Standard Gear Ratios 20:1 60:1 H40 40:1 100:1 oz-in rpm W oz oz 200:1 200:1 600:1 500:1 2500:1 1000:1 2000:1 5. For the motor in Figure 2 (a), draw the torque-speed curve for model 22-45-16.

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1. Wire LED and photoresistor to your board. 2. Use the photoresistor input to trigger changes in the levels of LED brightness. 3. LED must increase its brightness in sharp steps each time the photoresistor is covered. 4. Organize your code to have 5 levels of brightness from 0 to maximum. 5. Covering the photoresistor at the maximum output must return brightness to 0.

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