Question

(D) Given w y for flow of air in the coordinate system shown, find: (a) the velocity vector (b) the total force/vol vector, F (N/m)) and magnitude, acting on an air particle at point (1.1) : (e) the time it takes a particle at (1. 1) to reach y 0.5 and the value ofx at that point? (x.y

How do I solve this problem?

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
How do I solve this problem? (D) Given w y for flow of air in the...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • can someone explain how to solve a and c part i???? ple U 11. The long,...

    can someone explain how to solve a and c part i???? ple U 11. The long, straight wire shown below moving to the left. A particle of mass m and positive charge q is initially moving to the wire with a speed vo when it is at point P as shown below is in the pai g, m With reference to the coordinate system, what is the direction of the magnetic force acting on the particle at point P? dosvnward...

  • MIT Marine Hydrodynamics Spring 2005 Problem Set 5B Please solve these for me thanks ! :)...

    MIT Marine Hydrodynamics Spring 2005 Problem Set 5B Please solve these for me thanks ! :) 1. Supplementary Problem 12 2. A fluid jet issues from a long vertical slot and strikes against a vertical flat plate at an angle. The resulting two-dimensional steady flow in a horizontal plane is shown below. The plate is frictionless (a) If the volume flow rate of a vertical section of the jet before it strikes the plate is Q A, where A, is...

  • Hi, I need the full worked solution (step-by-step with clear explanations where possible) for all parts of this question, please. The final answers to all the parts are given below the questions. Woul...

    Hi, I need the full worked solution (step-by-step with clear explanations where possible) for all parts of this question, please. The final answers to all the parts are given below the questions. Would greatly appreciate neat handwriting with clear steps. Thank you! :) Question 6 A particle of mass m is projected vertically upwards with an initial speed vo in a fluid. The magnitude of the resistive force is kv, where v is the speed of the particle and k...

  • 2) The force that a magnetic field exerts on a charged particle is given by Ę...

    2) The force that a magnetic field exerts on a charged particle is given by Ę = qö xĒ. A particle with mass m= 2.0x108 kg and charge q = +2.5x10-8C has an initial speed of v = 4+2 x 103 m/s (in the x- y plane). The magnetic field vector and velocity vector are B and û, respectively are displayed on the coordinate axis below. The angle between the vectors is 135 degrees. Use unit vector notation when describing...

  • 2) The force that a magnetic field exerts on a charged particle is given by F...

    2) The force that a magnetic field exerts on a charged particle is given by F = qö x B. A particle with mass m = 2.0x10 kg and charge q - +2.5x10°C has an initial speed of v = 4/2 x 103 m/s (in the x- y plane). The magnetic field vector and velocity vector are 5 and 0, respectively are displayed on the coordinate axis below. The angle between the vectors is 135 degrees. Use unit vector notation...

  • (a) The velocity of a particle moving in the x - y plane is given by...

    (a) The velocity of a particle moving in the x - y plane is given by ☺ = ((-3.2t+ 9.6 t)i + (2.4t + 4.0)j) m/s, where v is in meters per second and t in seconds. The particle is at the origin of the coordinate system at t = 0 s. i. Determine the magnitude of the acceleration of the particle at t = 2.5 s. ANS: ii. Determine the position of the particle at t = 2.5 s....

  • how do I solve this problem? Homework 3.1 5- A projectile is shot from the edge...

    how do I solve this problem? Homework 3.1 5- A projectile is shot from the edge of a cliff 115 m above ground level with an initial speed of 65.0 m/s at an angle of 35.0° with the horizontal, as shown in Fig. 3-44. (a) Deter- mine the time taken by the projectile to hit point P at ground level. (b) Determine the distance X of point P from the base of the vertical cliff. At the instant just before...

  • An important problem in chemical engineering separation equipment involves thin liquid films flow...

    An important problem in chemical engineering separation equipment involves thin liquid films flowing down vertical walls due to gravity, as shown in this figure yV A. Assume that the wall is long and wide compared to the film thickness, with steady flow that is laminar and fully developed: u= v=0 and w w(x). Using a force balance on a rectangular differential element, derive an expression relating g, p, and τΧΖ . Use τΧΖ-n(-_ +--) for a Newtonian fluid to convert...

  • please solve the following problem and its subparts) Consider three point charges located at the corners...

    please solve the following problem and its subparts) Consider three point charges located at the corners of a right triangle as shown in the figure, where 9, = 93 = 4.50 HC, = -2.00 HC, and a = 0.120 m. Find the resultant force exerted on 9. The force exerted by 9, on 4, is F13. The force exerted by 92 on 93 is F23. The resultant force F3 is the vector sum +13 + F23 92 92 ----_ +...

  • Clearly draw diagrams and show step by step details on how to solve this problem 2-69....

    Clearly draw diagrams and show step by step details on how to solve this problem 2-69. Determine the magnitude and coordinate direction angles of the resultant force, and sketch this vector on the coordinate system. 2 F2 = 125 N 2 60° 45° 60° F1 = 400 N

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT