Part C Assuming that the medicine has the same density as water (1000 kg/m³) and that the syringe is being held horizontal, what is the pressure value inside of the syringe? Since pressure values are so large when using Pascal, please be safe and enter all of the digits in your answer up to the ones place. ▸ View Available Hint(s) Η ΑΣΦ P1 = Submit Previous Answers Request Answer X Incorrect; Try Again ? Pa
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- need help with this problemMReview I Constants (Figure 1) shows a syringe filled with 20° C olive oil. Part A What is the gauge pressure in atm at point P, where the needle meets the wider body of the syringe? The pressure at the exit of the needle is 1.0 atm. Express your answer in atmospheres. Pg = %3D atm Submit Previous Answers Request Answer X Incorrect; Try Again; 6 attempts remaining Figure 1 of 1 Next > Provide Feedback LEGO Radius = 1.0 cm Radius = 1.0 mm 2.0 m/s Po 4.0 cm P PearsonPart C only please
- Question 1 A uniform lead sphere and a uniform aluminum sphere have the same mass. What is the ratio of the radius of the aluminum sphere to the radius of the lead sphere?Please use diagrams and explain thoroughlySECTION B [Expect to use one single-sided A4 page for each Section-B sub question.] Question B1 a) A horizontal pipe has a diameter of 7.0 cm on the left section and a diameter of 4.0 cm on the right section. Answer ALL questions in Section B Water flows through the pipe from left to right and then out into the atmosphere with a speed of 18.0 m.s-¹. i) Calculate the pressure in the left section of the pipe. ii) Calculate the volume of water that flows into the atmosphere in 30 minutes. The density of water is 1000 kg m-³. b) A block slides up a ramp that has an angle of 42° with respect to the horizontal. At the bottom of the ramp (point A), the block has a speed of 10.0 m-s-¹. The ramp is frictionless from point A to a point that is at a height of 2.5 m from the bot- tom (point B). At point B, the block encounters a rough patch of length 1.0 m, where the coefficient of kinetic friction is 0.37. The rough patch ends at point C. Figure 1 shows the diagram of the block. Determine whether…
- Solve C D E please A barometer is used to measure air pressure. It is made of a tube of mercury (density of 13500 kg/m3) in an open container. The top of the tube is sealed and contains a vacuum. Thebottom is open to the air.During a storm, the mercury is observed to have a height of h = 0.70m. The Hindenburg was an airship. It had a very large hydrogen-filled balloon, with a volume of 140 000 m3. Below the balloonwere heavy engines and room for cargo.The density of air is 1.20 kg/m3. The density of hydrogen is 0.09kg/m3.c) What was the buoyant force on the balloon?d) What was the weight force of the hydrogen?e) If the balloon didn’t accelerate up or down, what was the total mass of the engines and cargo?Assume that the weight of the balloon fabric is negligible.can you explain how they got this answer?A raft is made of 11 logs lashed together. Each is 45 cm in diameter and has a length of 6.1 m. Part A How many people can the raft hold before they start getting their feet wet, assuming the average person has a mass of 65 kg ? Do not neglect the weight of the logs. Assume the specific gravity of wood is 0.60. Express your answer using two significant figures. N = ΑΣΦ
- A3Can you please answer number 2 and all of the sub problems A through C and show all of the steps to the solutions▼ Part A In the following picture, a hydraulic lift balances two masses. Solve for me if m₁ = 50 kg, and the diameters are d₁ = 1.0 m, and d₂ = 5.0 m. Express your answer with the appropriate units. m₂ = μA Value Submit Request Answer Provide Feedback 0 M Units m1 oil Pearson m2 dh Copyright © 2022 Pearson Education Inc. All rights reserved. | Terms of Use | Privacy Policy | Pe