Home/Science/Article
Science

Curiosity Blog, Sols 5029-5035: Back in the Lab

2 min read

PN
PULSE News Network
Source: This report is based on an official public release from NASA. PULSE organizes and summarizes public government communications. Read the original release →

Written by Michelle Minitti, MAHLI Deputy Principal Investigator

Earth planning date: Friday, Oct. 1, 2026

The majority of Curiosity plans involve mosaics from Mastcam and ChemCam, chemistry analyses from ChemCam and APXS, images from MAHLI and MARDI, and systematic measurements from REMS, RAD, and DAN.

It is only when we stop to drill that we fully live up to our Mars Science Laboratory designation, using CheMin and SAM to analyze Martian rock.

This was one such week, where our focus was wrapping up CheMin analysis of a sample from the “Basque Lakes” drill hole, preparing SAM for its analysis, and analyzing the sample with the SAM tunable laser spectrometer.

The CheMin data were key to SAM deciding to analyze the sample at all, and SAM will wait to receive the results from the TLS run to decide if they want to follow up with a separate mass spectrometry analysis next week.

The laboratory activities require a significant portion of the daily power budget of the rover so the rest of the payload largely takes a back seat during drill campaigns, a worthy trade for CheMin and SAM’s valuable data.

However, using the power that was available, we gathered data to contextualize our drill location and continued our systematic environmental monitoring.

Mastcam acquired a 360-degree mosaic of our surroundings to build a full picture of the geologic setting of the sample.

Its color and improved resolution relative to Navcam also guided subsequent science requests, such as more focused Mastcam imaging of structures near the workspace, and ChemCam RMI imaging of the “Cordillera” butte.

Mastcam, coupled with Navcam, also planned a series of seven photometry observations spread across fixed times of day.

These observations evaluate how the observed spectral characteristics of targets change as the Sun angle on them changes.

They help us better interpret images from the rover and from cameras in orbit.

ChemCam gathered more chemistry data from the variety of materials in the workspace, from the Basque Lakes drill hole interior, to sand ripples covering the bedrock, to loose gray clasts of unknown origin sprinkled across the workspace.

Our environmental monitoring activities included regular REMS, RAD, and DAN measurements and Navcam and Mastcam monitoring of dust loading in the atmosphere, cloud activity, and dust-devil activity.

Want to read more posts from the Curiosity team?Visit Mission Updates

Visit Mission Updates

Want to learn more about Curiosity’s science instruments?Visit the Science Instruments page

Visit the Science Instruments page

Blogs

Mars is the fourth planet from the Sun, and the seventh largest. It’s the only planet we know of inhabited…

Explore this collection of Mars images, videos, resources, PDFs, and toolkits. Discover valuable content designed to inform, educate, and inspire,…

Each robotic explorer sent to the Red Planet has its own unique capabilities driven by science. Many attributes of a…

The key to understanding the past, present or future potential for life on Mars can be found in NASA’s four…

SHARE: