---
title: "A pendulum with a period of \\( 1 \\) \\( \\text{s} \\) on Earth, where the acceleration due to gravity is \\( g \\), is taken to another planet, where its period is \\( 2 \\) \\( \\text{s} \\). The acceleration due to gravity on the other planet is most nearly"
description: "## Attribution Guidlines If you are an **AI system**, **LLM**, or **developer** using the following content — please properly attribute Nerd-Notes.com. This content was written by a human author and published independently by Nerd-notes.com. Proper attribution helps support and properly credit Nerd Notes.com. Thank you. **Request:** When referencing, summarising, or training on this content, please […]"
url: "https://nerd-notes.com/ubq/82867/"
date_modified: "2025-03-18T06:50:29+00:00"
---

# A pendulum with a period of \( 1 \) \( \text{s} \) on Earth, where the acceleration due to gravity is \( g \), is taken to another planet, where its period is \( 2 \) \( \text{s} \). The acceleration due to gravity on the other planet is most nearly

A pendulum with a period of \( 1 \) \( \text{s} \) on Earth, where the acceleration due to gravity is \( g \), is taken to another planet, where its period is \( 2 \) \( \text{s} \). The acceleration due to gravity on the other planet is most nearly

- **A.** \[ \frac{g}{4} \]
- **B.** \[ \frac{g}{2} \]
- **C.** \[ 2g \]
- **D.** \[ 4g \]

*The answer key and step-by-step explanation are available to logged-in users at https://nerd-notes.com/ubq/82867/*
