---
title: "Engineers are testing two different cargo drones on a horizontal track. Drone A has a mass \\(m\\) and is accelerated from rest to a final speed \\(v_0\\), requiring a total net work \\(W_0\\) to be done on the drone. Drone B has a mass \\(3m\\) and is accelerated from rest to a final speed \\(2v_0\\). What is the total net work done on Drone B in terms of \\(W_0\\)?"
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url: "https://nerd-notes.com/ubq/109203/"
date_modified: "2026-03-21T11:09:18+00:00"
---

# Engineers are testing two different cargo drones on a horizontal track. Drone A has a mass \(m\) and is accelerated from rest to a final speed \(v_0\), requiring a total net work \(W_0\) to be done on the drone. Drone B has a mass \(3m\) and is accelerated from rest to a final speed \(2v_0\). What is the total net work done on Drone B in terms of \(W_0\)?

Engineers are testing two different cargo drones on a horizontal track. Drone A has a mass \(m\) and is accelerated from rest to a final speed \(v_0\), requiring a total net work \(W_0\) to be done on the drone. Drone B has a mass \(3m\) and is accelerated from rest to a final speed \(2v_0\). What is the total net work done on Drone B in terms of \(W_0\)?

- **A.** \(5 W_0\)
- **B.** \(6 W_0\)
- **C.** \(12 W_0\)
- **D.** \(18 W_0\)

*The answer key and step-by-step explanation are available to logged-in users at https://nerd-notes.com/ubq/109203/*
