AUTOMOTIVE TECHNOLOGY TECH MANUAL
AUTOMOTIVE TECHNOLOGY TECH MANUAL
7th Edition
ISBN: 9781337794220
Author: ERJAVEC
Publisher: CENGAGE L
bartleby

Concept explainers

bartleby

Videos

Textbook Question
Book Icon
Chapter 7, Problem 2MC

Which of the following statements about latex and nitrile gloves is not true?

  1. The gloves offer protection against cuts.

  • The gloves offer protection against disease and grease buildup under and around your fingernails.
  • Latex gloves are more comfortable but weaken when they are exposed to gas, oil, and solvents.
  • Nitrile gloves are not as comfortable but they are not affected by gas, oil, and solvents.
  • Blurred answer
    Students have asked these similar questions
    Problem (17): water flowing in an open channel of a rectangular cross-section with width (b) transitions from a mild slope to a steep slope (i.e., from subcritical to supercritical flow) with normal water depths of (y₁) and (y2), respectively. Given the values of y₁ [m], y₂ [m], and b [m], calculate the discharge in the channel (Q) in [Lit/s]. Givens: y1 = 4.112 m y2 = 0.387 m b = 0.942 m Answers: ( 1 ) 1880.186 lit/s ( 2 ) 4042.945 lit/s ( 3 ) 2553.11 lit/s ( 4 ) 3130.448 lit/s
    Problem (14): A pump is being used to lift water from an underground tank through a pipe of diameter (d) at discharge (Q). The total head loss until the pump entrance can be calculated as (h₁ = K[V²/2g]), h where (V) is the flow velocity in the pipe. The elevation difference between the pump and tank surface is (h). Given the values of h [cm], d [cm], and K [-], calculate the maximum discharge Q [Lit/s] beyond which cavitation would take place at the pump entrance. Assume Turbulent flow conditions. Givens: h = 120.31 cm d = 14.455 cm K = 8.976 Q Answers: (1) 94.917 lit/s (2) 49.048 lit/s ( 3 ) 80.722 lit/s 68.588 lit/s 4
    Problem (13): A pump is being used to lift water from the bottom tank to the top tank in a galvanized iron pipe at a discharge (Q). The length and diameter of the pipe section from the bottom tank to the pump are (L₁) and (d₁), respectively. The length and diameter of the pipe section from the pump to the top tank are (L2) and (d2), respectively. Given the values of Q [L/s], L₁ [m], d₁ [m], L₂ [m], d₂ [m], calculate total head loss due to friction (i.e., major loss) in the pipe (hmajor-loss) in [cm]. Givens: L₁,d₁ Pump L₂,d2 오 0.533 lit/s L1 = 6920.729 m d1 = 1.065 m L2 = 70.946 m d2 0.072 m Answers: (1) 3.069 cm (2) 3.914 cm ( 3 ) 2.519 cm ( 4 ) 1.855 cm TABLE 8.1 Equivalent Roughness for New Pipes Pipe Riveted steel Concrete Wood stave Cast iron Galvanized iron Equivalent Roughness, & Feet Millimeters 0.003-0.03 0.9-9.0 0.001-0.01 0.3-3.0 0.0006-0.003 0.18-0.9 0.00085 0.26 0.0005 0.15 0.045 0.000005 0.0015 0.0 (smooth) 0.0 (smooth) Commercial steel or wrought iron 0.00015 Drawn…

    Chapter 7 Solutions

    AUTOMOTIVE TECHNOLOGY TECH MANUAL

    Knowledge Booster
    Background pattern image
    Mechanical Engineering
    Learn more about
    Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
    Similar questions
    SEE MORE QUESTIONS
    Recommended textbooks for you
    Text book image
    Automotive Technology: A Systems Approach (MindTa...
    Mechanical Engineering
    ISBN:9781133612315
    Author:Jack Erjavec, Rob Thompson
    Publisher:Cengage Learning
    Text book image
    Welding: Principles and Applications (MindTap Cou...
    Mechanical Engineering
    ISBN:9781305494695
    Author:Larry Jeffus
    Publisher:Cengage Learning
    Text book image
    Refrigeration and Air Conditioning Technology (Mi...
    Mechanical Engineering
    ISBN:9781305578296
    Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
    Publisher:Cengage Learning
    Text book image
    Precision Machining Technology (MindTap Course Li...
    Mechanical Engineering
    ISBN:9781285444543
    Author:Peter J. Hoffman, Eric S. Hopewell, Brian Janes
    Publisher:Cengage Learning
    General Industrial Safety; Author: Jim Pytel;https://www.youtube.com/watch?v=RXtF_vQRebM;License: Standard youtube license