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  1. Home
  2. USGBC Certification
  3. LEED-AP-BD-C Exam
  4. USGBC.LEED-AP-BD-C.v2025-06-23.q228 Dumps
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Question 101

Which of the following is required to earn Energy and Atmosphere Credit, Renewable Energy Production if using a Solar Photovoltaic System?

Correct Answer: D
The Energy and Atmosphere Credit, Renewable Energy Production rewards projects that use renewable energy systems to offset building energy costs1. According to the LEED Reference Guide for Building Design and Construction2, the credit has two options: Option 1. On-Site Renewable Energy and Option 2. Off- Site Renewable Energy. Option 1 requires the project to use renewable energy systems that are located on the project site and that produce electricity or thermal energy for the project. The amount of renewable energy production is calculated based on the percentage of the annual energy cost that is offset by the renewable energy systems. Option 2 requires the project to use renewable energy systems that are located off the project site and that are owned by the project or have a long-term contract with the project. The amount of renewable energy production is calculated based on the percentage of the annual energy use that is offset by the renewable energy systems.
Therefore, among the given options, only Option D is relevant to the credit requirements, as it implies that the solar photovoltaic system is located on the project site and that the produced electricity is consumed by the project. The other options, such as carbon offsets, daylighting strategies, and passive solar strategies, are not directly related to the credit requirements, although they may have other benefits for the project.
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Question 102

In order to comply with Indoor Environmental Quality Credit, Enhanced Indoor Air Quality Strategies, Option 2. Additional Enhanced IAQ Strategies

Correct Answer: C
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Question 103

What is a viable strategy for optimizing open space under Sustainable Sites Credit, Open Space? U

Correct Answer: D
Coordinating open space features early during the site planning phase is a viable strategy for optimizing open space under Sustainable Sites Credit, Open Space. This can help to preserve natural habitats, reduce heat island effects, and enhance human health and well-being. The credit requires that the project provide outdoor space that is at least 30% of the total site area, and that at least 25% of that outdoor space meets certain criteria for vegetated, pervious, or shaded areas. Reference:
LEED credit library: This is the USGBC's comprehensive listing of all the LEED credits available in pursuing certification for your project. The credit library contains the requirements and guidance for each credit, as well as the web-based reference guide for the Building Design and Construction rating system.
Open Space: This is the specific credit page for the Open Space credit under the Sustainable Sites category. It provides the intent, requirements, and strategies for achieving the credit, as well as the number of points available and the applicable project types.
Step by Step Approach to Comply with the Open Space Credit in LEED v4: This is a blog post that explains the steps and calculations involved in complying with the Open Space credit. It also provides some examples and tips for optimizing open space design.
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Question 104

Landscape irrigation practices consume large quantities of potable water. By evaluating the project's outdoor water budget and irrigation water demand early in the design process in Water Efficiency Prerequisite, Outdoor Water Use Reduction project teams will be able to

Correct Answer: C
The intent of the Water Efficiency Prerequisite, Outdoor Water Use Reduction is to reduce outdoor water consumption by either eliminating the need for irrigation or reducing the irrigation demand by at least 30% from the baseline. This prerequisite requires project teams to evaluate the project's outdoor water budget and irrigation water demand using the EPA WaterSense Water Budget Tool or a local equivalent. This will help project teams to estimate and optimize water use in landscape designs by selecting appropriate plant species and irrigation system efficiency.
References: = LEED v4: Building Design + Construction Guide, Outdoor Water Use Reduction Credits in LEED v4, Part Two: LEED v4 BD+C Outdoor Water Reduction and Related Credits
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Question 105

The project landscape architect suggests reducing the area planned for surface parking and replacing it with additional vegetated space. What benefit would this strategy provide to the owner?

Correct Answer: A
Explanation
Reducing the area planned for surface parking and replacing it with additional vegetated space can provide several benefits to the owner, such as:
* Decreasing the amount of bicycle parking that must be provided, since there will be less demand for parking spaces for cyclists.
* Increasing the overall SR (solar reflectance) of the hardscape area, which can reduce the cooling load and energy consumption of the building.
* Decreasing the required amount of on-street parking that must be provided, since there will be less demand for parking spaces for cars.
However, one of the most significant benefits of this strategy is increasing the rainwater infiltration capacity, which can improve the water quality and quantity in the stormwater system. According to a study by Biondolilo1, integrating green space into parking lots can decrease stormwater runoff, mitigate the heat island effect, store carbon, improve air quality and may have social benefits as well. The study estimated that converting 30% of Manhattan's parking into green space would decrease runoff and pollutants from parking lots1. Therefore, this strategy can help reduce water demand and environmental impact in arid climates.
References:
* How Eliminating Parking Minimums Actually Makes Cities Better
* Analyzing the benefits of reducing parking: improving public transportation to reduce parking demand and increase space for green infrastructure in Manhattan, Kansas
* Benefits of Urban Vegetation and Green Spaces - BeautyHarmonyLife
* Reduce Urban Heat Island Effect | Green Infrastructure | US EPA
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