1.12. A car is driving straight southward, past a service station, at 100 km h-¹. The surface pressure decreases toward the southeast at 1 Pa km-¹. What is the pressure tendency at the service station if the pressure measured by the car is decreasing at a rate of 50 Pa/3 h?

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Can someone please break down the steps to answer this question. I’m confused on how my teacher broke it down in class. Thank you so much!! I am referring to 1.12
PLE
SOLUTIONS
1.11. Demonstrate that A. (B x C) = - B. (Ax C).
1.12. A car is driving straight southward, past a service station, at 100 km h-¹. The surface
pressure decreases toward the southeast at 1 Pa km-¹. What is the pressure tendency
at the service station if the pressure measured by the car is decreasing at a rate of
50 Pa h?
Solutions
1.1. p(x, y) = 4x² + y³ +3
1.13. Imagine a stably stratified, steady-state flow in which temperature (T) is conserved.
What must be the relationship between horizontal advection of T and vertical motion?
Give a physical explanation of this relationship.
1.7. a 46.06°
23
1.8. p(x, y, z) = x²yz² + 12
1.10. The temperature at the destination will be 15°C.
1.12. The pressure falls at a rate of 87.38 Pa h ¹.
- V.VT
1.13. w (aT/əz)
los
Jos
Transcribed Image Text:PLE SOLUTIONS 1.11. Demonstrate that A. (B x C) = - B. (Ax C). 1.12. A car is driving straight southward, past a service station, at 100 km h-¹. The surface pressure decreases toward the southeast at 1 Pa km-¹. What is the pressure tendency at the service station if the pressure measured by the car is decreasing at a rate of 50 Pa h? Solutions 1.1. p(x, y) = 4x² + y³ +3 1.13. Imagine a stably stratified, steady-state flow in which temperature (T) is conserved. What must be the relationship between horizontal advection of T and vertical motion? Give a physical explanation of this relationship. 1.7. a 46.06° 23 1.8. p(x, y, z) = x²yz² + 12 1.10. The temperature at the destination will be 15°C. 1.12. The pressure falls at a rate of 87.38 Pa h ¹. - V.VT 1.13. w (aT/əz) los Jos
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