Macro shot of autumn leaves covered in hoarfrost with a warm orange background. Detailed nature photography featuring frozen flora and cold weather textures.
Tags:
PHOTO INFO
- Image Size
- 6016x4000px
- File Size
- 2.27MB
- resolution
- 5K
- License
- Commercial use free
- Aesthetic Score
- 84/100
VISUAL ATTRIBUTES OF THIS STOCK PHOTO
- Color temperature
- warm
- Brightness
- mid_tone
- Saturation
- vibrant
- Lighting Source
- natural
- Lighting Condition
- overcast
- Negative Space
- none
- Negative Space Location
- none
- Depth Of Field
- shallow
- Has People
- none
- Season
- autumn
- Time Of Day
- unknown
- Shot Scale
- close_up
- Background Type
- blurred_bokeh
- Orientation
- horizontal
- Composition Style
- close_up
- Dominant colors
- orangebrownwhite
- Palette Style
- earthyvibrant
- Mood
- serenecalm
- Style
- naturedocumentary
- Subject type
- plantflower
ONLINE RESIZE
aesthetic analysis & score
This is a high-quality nature photograph that successfully captures the delicate beauty of frost on autumn foliage. The strong color contrast and sharp detail make it visually appealing and commercially viable for seasonal themes.
Composition & Framing score
85The close-up framing effectively isolates the frosted leaves, creating a strong focal point against the blurred background.
Lighting & exposure score
80Soft, diffused lighting highlights the crystalline texture of the frost without creating harsh shadows or blown-out highlights.
Color harmony & palette score
90The warm orange and brown tones of the leaves contrast beautifully with the cool white of the frost, creating a rich autumnal palette.
Visual impact & mood score
82The combination of warm colors and cold textures evokes a serene and crisp atmosphere typical of late autumn.
Technical Quality & Clarity score
85The image is sharp and detailed, clearly resolving the fine structure of the leaves and the individual ice crystals.
Subject clarity & focal hierarchy score
88The central branch and leaves are the undeniable subject, drawing the viewer's eye immediately due to the shallow depth of field.