2. Using Kirchhoff's Rules, a.) solve for the value of I1, I2 and I3 and b.) what is the potential difference between points a and d. (Current directions are already given.) 34 2 h ww r= %2= 1Ω 45V 47 Ω a b E = 85 V 18 Ω r = 1Ω e
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- Note:- • Do not provide handwritten solution. Maintain accuracy and quality in your answer. Take care of plagiarism. • Answer completely. • You will get up vote for sure.Make sure all quantities are expressed in standard units before calculating anything. Tank what my teacher added. Thank you :)Hi I need help here please
- Record answer with correct units and correct sig figs in box provided – use scientific notation if convenient. The beach is a favorite destination for most people during the summer. A) If the closest beach is 365 miles away, how long will it take to reach the beach if you travel at a speed of 62 mph? B) If your car gets 15.1 miles/gal and gas costs $2.75/gal, what does it cost to travel 365 miles?Topic : Numerical integration 3.) mid-ordinate ruleThe same projectile experiment was conducted as you did in class. A racquet ball rolls down a track, leaves the track at an initial height of 0.961m above floor, with an exit speed Vexit 1.40m/s at an angle exit 7.46°. The landing spot was repeatedly measured for ten times, and the racquet ball's horizontal range data is provided below. Data run = Landing spot (m) 1 2 0.585 0.590 3 4 0.595 0.590 5 6 0.585 0.580 7 0.580 8 = 9 10 0.585 0.580 0.575
- Pls solve accurate and exact answer pleaseI would like a step by step process with formulas used and drawings, along with therefore statementsFor the remaining questions, you need to use Figure 1.4 to obtain the necessary orders of magnitude of lengths, masses, and times.About how many floating-point operations can a supercomputer perform each year?
- Question 2: Complete the following Error Analysis The lengths of the sides of a rectangular box are measured using a ruler marked with a millimeter scale. W The measurements give the values length 83 mm, width 68 mm and height 23 mm. The uncertainty in each measurement is ±1 mm. Calculate, 1. The fractional uncertainty in the measurement of VOLUME is 2. Absolute uncertainty in the measurement of VOLUME in (mm³ ) is10. Ā = -2â + -3ŷ and B = -4â + -4ŷ. Calculate R = Ã+B. Calculate 0, the direction of R. Recall that 0 is defined as the angle with respect to the +x-axis. A. 49.4° B. 130.6° C. 229.4° D. 310.6°I have an homework where I was asked to get a generic 12 in/30 cm ruler and then answer the question in bold: Look at the smallest division and record what the uncertainty ▲x is of your tool. I am not sure how to ansswer this. Note: the previous question asked me to choose a unit of measurement on our tool which is the ruler and I choose inches (I hope that is a unit of measurement).