
(a)
The satisfaction of AISC interaction equation using LRFD.

Answer to Problem 6.2.1P
The member satisfies the AISC interaction equation.
Explanation of Solution
Given:
The load is
The length of member is
The value of
The flexural load is
Concept Used:
Write the LRFD interaction equation.
Here, the factored load is
Calculation:
Calculate the factored load.
Here, the dead load is
Substitute
Calculate the effective length of the member.
Here, the unsupported length is
Substitute
Calculate the axial compressive design strength.
From the manual table, the axial compressive design strength of a
Calculate the nominal flexural strength about x-axis.
From the design table, calculate the nominal flexural strength about x-axis by using
Calculate the flexural load about x-axis.
Here, the flexural dead load is
Substitute
There is no bending about y-axis, therefore
Write the equation to calculate the controlling interaction formula.
Substitute
The value is greater than
Calculate the LRFD interaction equation.
Substitute
The interaction equation is satisfied.
Conclusion:
Therefore, the interaction equation is satisfied with the AISD interaction equation.
(b)
The satisfaction of AISC interaction equation using ASD.

Answer to Problem 6.2.1P
The member satisfies the AISC interaction equation.
Explanation of Solution
Concept Used:
Write the ASD interaction equation.
Here, the factored load is
Calculation:
Calculate the factored load.
Here, the dead load is
Substitute
Calculate the allowed compressive strength.
From the manual table, the allowed compressive strength of a
Calculate the nominal flexural strength about x-axis.
From the design table, calculate the nominal flexural strength about x-axis by using
Calculate the flexural load about x-axis.
Here, the flexural dead load is
Substitute
There is no bending about y-axis, therefore
Write the equation to calculate the controlling interaction formula.
Substitute
The value is greater than
Calculate the ASD interaction equation.
Substitute
The interaction equation is satisfied.
Conclusion:
Therefore, the interaction equation is satisfied with the ASD interaction equation.
Want to see more full solutions like this?
Chapter 6 Solutions
STEEL DESIGN (LOOSELEAF)
- By using the yield line theory, determine the moment (m) for an isotropic reinforced concrete two-way slab shown in figure under a uniformly distributed load. Use segment Equilibrium method 2.5 A 7.0m c.g. ㄨˋ B 1 B A IA 2.5 2.0 + 2.5 5.0marrow_forwardGiven cross-classification data for the Jeffersonville Transportation Study Area in this table, develop the family of cross-classification curves. (Use high = $55,000; medium = $25,000; low = $15,000. Submit a file with a maximum size of 1 MB.) Choose File No file chosen This answer has not been graded yet. Determine the number of trips produced (by purpose) for a traffic zone containing 400 houses with an average household income of $35,000. 1610 HBW HBO Your response differs from the correct answer by more than 10%. Double check your calculations. trips 1791 NHB Your response differs from the correct answer by more than 10%. Double check your calculations. trips 1791 Your response differs from the correct answer by more than 10%. Double check your calculations. tripsarrow_forward2.Water is siphoned from a reservoir. Determine (a) the maximum flow rate that can be achieved without cavitation occurring in the piping system (all indicated points) and (b) the maximum elevation of the highest point of the piping system to avoid cavitation. D = 20 cm, and d = 8 cm. The minimum pressure to avoid cavitation in the pipes is Pmin = 2340 Pa (absolute) for T = 20 °C. Water density = 1000 kg/m³. ✓ (1) T=20 C (4)arrow_forward
- 3. Water flows steadily down the inclined pipe as shown. Determine (a) the difference in pressure pı-p2 and (b) the head loss between section (1) and section (2). Flow 5 ft Section (1) 6 in. 30°/ Section (2) 8 in. Mercuryarrow_forward1. Streams of water from two tanks impinges upon each other as shown. If viscous effects are negligible and point A is a stagnation point, determine the height h. Free ets Air 20 ft P₁ = 25 psi 8 ftarrow_forwardProb. Design the dimensions (rectangular) and longitudinal reinforcements for the beans sham. Design the beams as SRBS. Given: fi= 21 MPa fy= 275 hPa X= 23.5 kaf. λ= 1.0arrow_forward
- Please answer the following show me how to solve in your paper dont type thank youarrow_forwardProb. Design the dimensions (rectangular) and longitudinal reinforcements for the beans sham. Design the beams as SRBS. Given: fi= 21 MPa fy= 275 hPa X= 23.5 kaf. λ= 1.0arrow_forwardQuestion 1Demonstrate and relate the different strategies you would use to enhance the buildingenvelope's performance in reducing heat ingress when retrofitting an existing building.Question 2There are several forms of renewable energy sources that are available for the builtenvironment.Demonstrate what some of these types of renewable energy sources are and evaluate in detailwhich type of renewable energy source is the most suitable for Singapore as well as itslimitations.Question 3Some of the broad strategies to optimize energy efficiency in existing building involve theuse of Energy Control Measures (ECMs).Demonstrate and appraise any THREE (3) Energy Control Measures for zero-cost, low-costand high-cost areas each.arrow_forward
- Steel Design (Activate Learning with these NEW ti...Civil EngineeringISBN:9781337094740Author:Segui, William T.Publisher:Cengage Learning
