Hybrid Cultivar Study

Chemdawg: Elite Terpene Profile

Lineage: Nepalese Landrace x Thai Landrace. Powered by a dominant concentration of Caryophyllene for customized cognitive and physical tuning.

Dominant Terpene

Caryophyllene

Secondary Terpenes

Limonene, Myrcene

THC / CBD Potency

20% - 26%

Thermal Target

264°F (129°C)

Chemdawg (or Chem Dog) is a foundational hybrid that birthed Sour Diesel and OG Kush. It features a sharp, fuel-like chemical aroma and delivers a heavy hybrid experience.

From a chemical standpoint, Chemdawg features an aroma profile defined by Sharp diesel fuel, sour chemical, and woody pine. By vaporizing this cultivar at the specific threshold of 264°F (129°C), you activate the dominant Caryophyllene terpene cleanly, initiating synergy with secondary terpenes like Limonene and Myrcene to customize your mental state.

Unlock Your Perfect Chemical Match

Tell our AI Sommelier your desired mental and physical vibe. We'll formulate a personalized cannabinoid and terpene ratio, then map it to real strains near you.

Optimal Thermal Target

Unlocking Chemdawg: Vaporize at 264°F (129°C)

To experience the full therapeutic qualities of Chemdawg's rich terpene matrix without combustion, precise temperature management is required. Vaporizing at 264°F (129°C) allows the active compounds to transition cleanly into a bioavailable vapor, preserving delicate flavor notes and physical properties.

Boiling Point
264°F
129°C

To reach this precise thermal threshold, we recommend using a conduction/convection hybrid vaporizer with digital temperature settings.

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Clinical & Organic Terpene Effects

Explore the physiological responses and mood parameters tailored by Chemdawg's active compound profile.

Parameter 1

Strong Head High

Scientifically linked to Caryophyllene terpene interaction with CB1/CB2 receptors.

Parameter 2

Physical Ease

Scientifically linked to Caryophyllene terpene interaction with CB1/CB2 receptors.

Parameter 3

Creative Focus

Scientifically linked to Caryophyllene terpene interaction with CB1/CB2 receptors.