Soil Science and Fertility Flashcards
5 cards from real CPH practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.
Read the first 5 Soil Science and Fertility flashcards as text
What is the ideal pH range for most plants to grow?
Answer: 5.5–7.0
The ideal pH range for most plants to grow optimally is between 5.5 and 7.0, which is slightly acidic to neutral. Within this range, essential plant nutrients like nitrogen, phosphorus, and potassium are most readily available for absorption by the plant's roots. Deviations from this range can lead to nutrient deficiencies or toxicities, hindering plant growth.
Which soil type has the best water-holding capacity?
Answer: Loam
Loam soil generally has the best water-holding capacity while also providing good drainage and aeration. Loam is a balanced mixture of sand, silt, and clay particles, along with organic matter. This composition allows it to retain sufficient moisture for plant roots without becoming waterlogged, which is crucial for healthy plant growth.
What is the primary function of organic matter in soil?
Answer: Improving soil structure and fertility
Organic matter significantly improves soil structure by binding soil particles together, which enhances aeration and water infiltration. As it decomposes, it releases essential nutrients, increasing the soil's fertility and supporting a healthy microbial ecosystem crucial for plant growth.
Which macronutrient is primarily responsible for promoting root growth in plants?
Answer: Phosphorus
Phosphorus is a vital macronutrient that plays a critical role in energy transfer and storage within plants. It is particularly essential for stimulating strong root development, promoting early plant growth, and enhancing flowering and fruiting processes.
What term describes soil's ability to hold and exchange nutrients?
Answer: Cation Exchange Capacity (CEC)
Cation Exchange Capacity (CEC) measures the soil's ability to hold onto positively charged nutrient ions (cations) and exchange them with plant roots. A higher CEC indicates that the soil can retain more essential nutrients like calcium, magnesium, and potassium, making them available for plant uptake and reducing nutrient leaching.