Eastern coyotes (Canis latrans) have rapidly expanded their range throughout New England, establishing populations in suburban and urban environments despite ongoing human-caused mortality. This makes them an excellent model for understanding how large predators adapt to human-altered landscapes. This study examines the coyote family resident at Harvard Forest, focusing on how their spatial use shifts across the summer pup-rearing season and how their territory, which spans major roadways including Route 32, shapes their movement. Twelve motion-sensor cameras were deployed alongside four other Amherst College cameras throughout Harvard Forest property in Petersham. We identified these sites based on field-tracking methods (scat, scent marking, tracks, and travel corridors), which were highly correlated with beaver activity and prior tracking data by Lisa Brooks. These cameras were focused on capturing coyote and beaver activity but also captured incidental detections of two other main large mammals in the area: bobcats and black bears, as well as many other fauna. Alongside camera traps, three passive acoustic monitoring devices were deployed in areas of high coyote activity. We also incorporated a broader dataset of coyote activity collected throughout Harvard Forest between October 2025 and July 2026. Bioacoustic monitoring was successfully established, yielding an array of coyote howls and supplementary beaver sounds, including baby yips, tail slaps, and swimming sounds. These bioacoustic recordings are the first of their kind in this area and will be able to be used in the future for supplementary behavioral analysis. Camera data have also documented coyotes crossing Route 32 with pups. Analysis of the timing, frequency, and family member identification associated with these crossings is ongoing and will be integrated with occupancy modeling across camera locations to characterize seasonal shifts in spatial use. These findings will contribute to Lisa Brooks' book on Eastern Coyotes, as well as MassCoyote, a new regional citizen science initiative, supporting broader public understanding of these often misunderstood predators.