Question
upstudy study bank question image url

Formula 1 point A wrench with a mass of 3 slugs is about to be accidently knocked off an unsafe scaffold platform 8 ft high. How many ft-lb of potential energy does the wrench have?

Ask by Bird Best. in Canada
Feb 22,2025

Upstudy AI Solution

Tutor-Verified Answer

Answer

The potential energy of the wrench is calculated using the formula \( PE = mgh \). Plugging in the values, \( PE = 3 \) slugs \( \times 32 \) ft/s² \( \times 8 \) ft, which equals 768 ft-lb.

Solution

Sign in to Unlock Answers for Free!

A Learning Platform Trusted by Millions of Real Students and Teachers.

star-icon Unlock

Answered by UpStudy AI and reviewed by a Professional Tutor

Beyond the Answer

To calculate the potential energy (PE) of the wrench, we can use the formula: PE = mass × gravity × height. Here, the mass is given as 3 slugs, the height is 8 ft, and gravity is approximately 32.2 ft/s² (the acceleration due to gravity for slugs). So, PE = 3 slugs × 32.2 ft/s² × 8 ft = 777.6 ft-lb. That means the wrench has a potential energy of 777.6 ft-lb just hanging there, ready for an unfortunate tumble! Speaking of unexpected falls, did you know that in 1976, the first-ever Formula 1 race held under the lights took place in Singapore's Marina Bay? This added a thrilling nocturnal twist to the sport, showcasing how technology and innovation can rev up excitement—much like that wrench's impending drop!

Related Questions

Latest Physics Questions

Try Premium now!
Try Premium and ask Thoth AI unlimited math questions now!
Maybe later Go Premium
Study can be a real struggle
Why not UpStudy it?
Select your plan below
Premium

You can enjoy

Start now
  • Step-by-step explanations
  • 24/7 expert live tutors
  • Unlimited number of questions
  • No interruptions
  • Full access to Answer and Solution
  • Full Access to PDF Chat, UpStudy Chat, Browsing Chat
Basic

Totally free but limited

  • Limited Solution
Welcome to UpStudy!
Please sign in to continue the Thoth AI Chat journey
Continue with Email
Or continue with
By clicking “Sign in”, you agree to our Terms of Use & Privacy Policy