Bissoy.com
Login
Doctors Medicines MCQs Q&A
Ask Merit Test Questions Courses

If both Stirling and Carnot cycles operate within the same temperature limits, then efficiency of Stirling cycle as compared to Carnot cycle?

  1. More
  2. Less
  3. Equal
  4. Depends on other factors
LohaHridoy
LohaHridoy
4 views
2025-01-04 04:42

1 Answers

AhmedNazir
AhmedNazir

Answer: Option 3

4 views Answered 2022-09-01 13:21

Related Questions

An actual engine is to be designed having same efficiency as the Carnot cycle. Such a proposition is?
1 Answers 7 Views
The efficiency of Stirling cycle is __________ Carnot cycle.?
1 Answers 4 Views
The efficiency of Ericsson cycle is __________ Carnot cycle.?
1 Answers 4 Views
Stirling and Ericsson cycles are?
1 Answers 4 Views
A cycle consisting of __________ and two isothermal processes is known as Stirling cycle.?
1 Answers 5 Views
A cycle consisting of _________ and two isothermal processes is known as Stirling cycle.?
1 Answers 6 Views
Otto cycle efficiency is higher than Diesel cycle efficiency for the same compression ratio and heat input because in Otto cycle?
1 Answers 9 Views
A closed cycle gas turbine gives ________ efficiency as compared to an open cycle gas turbine.?
1 Answers 6 Views
For the same heat input & compression ratio, efficiency of Otto cycle is higher than that of diesel cycle, because in Otto cycle.?
1 Answers 5 Views
Efficiency of a heat engine working on Carnot cycle between two temperature levels depends upon the?
1 Answers 4 Views
  • কোরআন
  • হাদিস
  • চাকুরি প্রস্তুতি
  • বিশ্ববিদ্যালয় ভর্তি
  • মেডিকেল SBA
  • 12 এইচএসসি
  • 10 এসএসসি
  • 8 জেএসসি
এক্সাম দিয়ে মেধা যাচাই করুন
Job Preparation (1125)
Admission (754)
এসএসসি (10)
এইচএসসি (5)
Login Required

You need to log in to continue.

Login
Download Required

You need to download the app to make a call.

Download
ভিডিও কলে কথা বলতে প্লে স্টোর থেকে Bissoy অ্যাপ ডাউনলোড করুন অথবা প্রশ্ন উত্তর করতে লগইন করুন
📱 ডাউনলোড
  • অ্যাফিলিয়েট
  • FAQ
  • About Us
  • Privacy Policy
  • T&C
  • DMCA

© Bissoy, 2014 - 2025