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Usage Examples
Filter by Meaning Changes in photoperiod can trigger seasonal affective disorder in humans.
The photoperiod varies according to the latitude of a location.
The study of photoperiod is important in understanding the ecology of a region.
The photoperiod varies depending on the time of year and latitude of a location.
The photoperiod is a crucial factor in the timing of reproduction in some animals.
The photoperiod of high-latitude regions can significantly impact the life cycle of marine organisms.
Plants have different photoperiod requirements to produce flowers.
The photoperiod affects the growth of certain crops.
The study of photoperiod provides insight into the adaptation of organisms to their environment.
The farmer knows how to manipulate the photoperiod to get the best harvest.
The photoperiod in greenhouses is often artificially controlled to optimize plant growth.
The photoperiod plays a crucial role in the survival of some insects.
The photoperiod influences the hibernation patterns of some animals.
The photoperiod of the day is shorter in winter than in summer.
Researchers are studying the effects of photoperiod on the growth of crops.
The photoperiod triggers the migration of birds in the fall.
The photoperiod plays a key role in the life cycle of many insects.
Some animals become more active during a longer photoperiod.
The photoperiod affects the flowering of certain plants.
The photoperiod of hibernating animals changes during winter months.
The plant needs a certain amount of light in its photoperiod to grow.
The length of the photoperiod affects the growth of the flowers.
The photoperiod is an important environmental cue for many organisms.
The photoperiod regulates the mating season of many animals.
The photoperiod can have an impact on the migration patterns of birds.
The photoperiod in the Arctic regions can affect the behavior of wildlife.
The photoperiod is an important factor in the circadian rhythm of humans.
The photoperiod of chickens is regulated to increase their egg production.
To cultivate certain crops, such as tomatoes, the photoperiod needs to be adjusted to mimic their natural growing conditions.
The photoperiod in the greenhouse is set to 14 hours of light and 10 hours of darkness.
Increasing the photoperiod to 16 hours may accelerate plant growth in the greenhouse.
The photoperiod of the greenhouse is adjusted according to the season to ensure optimal growth conditions.
The photoperiod in the greenhouse is set to 12 hours of light and 12 hours of darkness.
The photoperiod for cannabis cultivation is often adjusted to optimize yields and potency.
Properly managing the photoperiod can help control pests and diseases in the greenhouse.
The photoperiod of the greenhouse is carefully monitored to ensure consistent growth.
The photoperiod for flowering crops should be carefully monitored to ensure proper development.
The photoperiod for seedling development may need to be shorter than for mature plants.
The plant growth in the greenhouse is determined by the photoperiod.
The photoperiod of the greenhouse is adjusted to mimic the natural day and night cycle.
The photoperiod in the greenhouse can be adjusted to promote early flowering.
The optimal photoperiod for lettuce is around 16 hours of light and 8 hours of darkness.
The photoperiod for these tomato plants is critical to ensure maximum yield.
The photoperiod of the greenhouse can be manipulated to speed up the growth of certain crops.
Growers can use artificial lighting to extend the photoperiod and increase plant growth.
The photoperiod can impact the metabolism and energy balance of animals.
The photoperiod can be used to regulate the breeding cycles of livestock.
Plants require a specific photoperiod to flower.
The photoperiod can vary depending on the season and latitude.
The photoperiod can influence the timing of migration in fish.
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