ASST. ENGINEER COMB. COMP. EXAM 2018 Mechanical Engg.-I Question Paper PDF

Rajasthan Government Jobs Engineer 2018

  • Year 2018
  • Conducted By RPSC
  • Maximum Marks 200
  • Duration 3 Hours
  • Languages English

Exam Details

Detail Information
Examination ASST. ENGINEER COMB. COMP. EXAM
Year 2018
Conducting Body RPSC
Paper Mechanical Engg.-I
Subject Mechanical Engineering
Duration 3 Hours
Maximum Marks 200
Question Type Mixed

This document contains the question paper for the Assistant Engineer Combined Competitive Examination (Mains) - 2018, specifically for Paper I of Mechanical Engineering, conducted by RPSC. The exam allows 3 hours to complete and is out of a maximum of 200 marks. This paper is crucial for candidates aspiring to positions in Mechanical Engineering within the Rajasthan government sector, providing a direct look at the types of questions asked and the difficulty level.

Major Topics Covered

  • Mechanical Engineering
  • ASST. ENGINEER COMB. COMP. EXAM
  • Mechanical Engg.-I
  • RPSC
  • 2018 question paper
  • previous year paper
  • PDF download

Why This Paper is Important

  • Useful for ASST. ENGINEER COMB. COMP. EXAM preparation
  • Helps understand the latest exam pattern
  • Useful for practice and self-assessment
  • Covers frequently asked General Studies topics
  • Helpful for analysing question trends

Related Resources

  • ASST. ENGINEER COMB. COMP. EXAM 2018 Mechanical Engg.-II
  • ASST. ENGINEER COMB. COMP. EXAM 2017 Mechanical Engg.-I
  • RPSC Assistant Engineer Previous Year Papers
  • ASST. ENGINEER COMB. COMP. EXAM 2018 Mechanical Engg.-I Answer Key
  • ASST. ENGINEER COMB. COMP. EXAM Syllabus
  • Mechanical Engineering Syllabus for Competitive Exams
  • ASST. ENGINEER COMB. COMP. EXAM Exam Pattern
  • RPSC Exam Pattern Mechanical Engineering

Instructions

  • PART - II Subject : Mechanical Engg. - I Paper Code: 08 \infty Total Pages W o 3 Hours Time w Z 200 Maximum PART-I Marks: Paper Code 08 TO BE FILLED BY THE CANDIDATE Subject Roll No.
  • (In words) SAVING Mechanical Engg. - I Name of the candidate GUIDE Date of Birth (DD/MM/YYYY) Shown Ü CORE Father's Name Signature/of the candidate SCIENT \infty Date of Examination HEGHT Ю 0 r HERRI М Rolf No. \odot \Theta\Theta ^\copyright \odot \odot \odot \odot \odot \odot \odot 9999999 \overline{\Theta} \overline{\odot} \frac{1}{2} \odot \overline{\circ} ^\circledR \overline{\circledcirc} \circledS \circledS \overline{\circledcirc} ^\circledR ^\circledR ^\circledR ^\copyright \circledcirc _{\odot} _{\odot} Š ^\circledR ^\circledR ^\circledR ^\circledR ^\circledR ^{\circ} ^{\circledR} ^{\circledR} ^{\circ} ^\circledR Invigilator must check the Roll No. and Photo ID. of the candidate, then Sign. here: TO BE FILLED BY INVIGILATOR COLOR If candidate found using unfair means them Invigilator should fill up this a. bubble with black/blue ball pen & report to the Centre Superintendent: 300031 CONTROL \circ m. 1430_H2C-2

Questions (page 2)

Q1.

(a) A fluid contained in a cylinder receives 150 kJ of mechanical energy by means of a paddle wheel, together with 50 kJ in the form of heat. At the same time, a piston in the cylinder moves in such a way that the pressure remains constant at 200\,kN/m2, during the fluid expansion from 2\,m3 to 5\,m3. What is the change in internal energy and in enthalpy?

(b) Consider a chilled-water pipe of length L, inner radius r1, outer radius r2 and thermal conductivity k. Water flows in the pipe at a temperature Tf and the heat transfer coefficient at the inner surface is h. If the pipe is well insulated on the outer surface, (i) express the differential equation and the boundary conditions for steady one-dimensional heat conduction through the pipe. (ii) obtain a relation for the variation of temperature in the pipe solving the differential equation.

(c) Briefly describe the following non-petroleum based liquid fuels used in IC engines: (i) Benzol (ii) Vegetable oils (iii) Alcohol (iv) Acetone

(d) Explain in detail the influence of any four factors on the volumetric efficiency of an automotive IC engine.

(e) A 40 cm long, 800 W electric resistance heating element with diameter 0.5 cm and surface temperature 120\,°C is immersed in 75 kg of water initially at 20°C. Determine how long it will take for this heater to raise the water temperature to 80°C. Also, determine the convection heat transfer coefficients at the beginning and at the end of the heating process.

Question paper preview

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ASST. ENGINEER COMB. COMP. EXAM 2018 Mechanical Engg.-I question paper page 1 instructions scan PDF download RPSC
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ASST. ENGINEER COMB. COMP. EXAM 2018 Mechanical Engg.-I question paper page 1 instructions scan PDF download RPSC

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Frequently asked questions

What is the name of the exam?

The exam is the ASST. ENGINEER COMB. COMP. EXAM.

What year is this question paper from?

This question paper is from the year 2018.

Which conducting body organized this exam?

The exam was conducted by RPSC.

What is the subject and paper name for this question paper?

The subject is Mechanical Engineering, and the paper name is Mechanical Engg.-I.

What is the paper code?

The paper code is 08.

What is the maximum marks for this paper?

The maximum marks for this paper are 200.

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