Concept explainers
(a)
Find the absolute permeability of the soil.
(a)
Answer to Problem 7.9P
The absolute permeability of the soil is
Explanation of Solution
Given information:
The length of the soil sample L is 400 mm.
The area of the sample A is
The diameter of the standpipe (d) is 11 mm.
The head difference
The head difference
The unit weight of water
The dynamic viscosity of water
Calculation:
Determine the area of the standpipe a using the relation.
Substitute 11 mm for d.
Determine the hydraulic conductivity k using the relation.
Substitute
Determine the absolute permeability of the soil using the relation.
Substitute
Therefore, the absolute permeability of the soil is
(b)
Find the head difference at 4 min time duration.
(b)
Answer to Problem 7.9P
The head difference at 4 min time duration is
Explanation of Solution
Given information:
The length of the soil sample L is 400 mm.
The area of the sample A is
The diameter of the standpipe (d) is 11 mm.
The head difference
The head difference
The unit weight of water
The dynamic viscosity of water
Calculation:
Determine the head difference at 4 min time duration using the relation.
Substitute
Therefore, the head difference at 4 min time duration is
Want to see more full solutions like this?
Chapter 7 Solutions
Bundle: Principles Of Geotechnical Engineering, Loose-leaf Version, 9th + Mindtap Engineering, 2 Terms (12 Months) Printed Access Card
- 8- A granular pavement with thin bituminous surfacing is going to be constructed in a rural area and it is estimated that the average annual daily traffic will be 21,000 vehicles per day. The road will have 3 lanes in each direction. The survey data from the existing roads close to that area shows that 15% of the vehicles in the traffic stream are heavy and the rest are light. However, no details of heavy vehicle types are given. It is also estimated that the annual growth factor is 3.2%. Determine the design traffic (DESA) assuming that the damage index (ESA/HVAG) is 0.9 9- a) What are the three main distress modes in flexible pavements (3 points)? b) What are their likely causesarrow_forwardfind SFD and BMDarrow_forward3.102 Find the force of the gate on the block as shown, where d = 12 m, h = 6 m, and w = 6 m. Water hxw gate h/2 Pivot h/2 Block Problem 3.102arrow_forward
- Need help!! in this martin luther king jr. day is a non working dayarrow_forwardThe plan and 3D elevation of an earth retaining structure used for support excavation is shown in Figs. 3 and 4 respectively. The retaining structure is made of wood planks supported in the horizontal direction on vertical steel piles (HP sections). The HP piles shape of an H and are typically used for piles. The section properties of these sections (A, I, S, etc…) are given in Part 1 of the AISC steel manual. The spacing of the supporting HP piles is 20ft. The height of the piles is 15 from top of the pile to top of the footing. The height of the water table from the top of the footing is 9 ft as shown in the elevation in Fig. 4. The pile height and soil properties and the earth pressure distribution behind the retaining structure are shown in Fig. 5. Figs. 6 shows the equations for earth pressure. q is a live load surcharge that accounts for traffic on top of the embankment; q is typically assumed to be 250 psf (per the bridge code (AASHTO)). Use Fy = 50 ksi 1. Determine…arrow_forwardfind SFD and BMD? where at node K the load is 25 kiparrow_forward
- find SFD and BMDarrow_forwardNote: Please provide a clear, step-by-step, simplified handwritten working out (no explanations!), ensuring it is completed without any AI involvement. I require an expert-level answer and will assess and rate your work based on its quality and accuracy, refer to the provided image for additional clarity. Make sure to double-check everything for correctness before submitting. Thanks, appreciate your time and effort!.arrow_forwardNeed help!! Add martin luther king jr day as a holiday so it won't be a work dayarrow_forward
- ضهقعفكضكشتبتلتيزذظظؤوروىووؤءظكصحبت٢٨٩٤٨٤ع٣خ٩@@@#&#)@)arrow_forwardA steel rod 100 ft long holds a 200 lb weight as shown. If the diameter of the circular rod is ¼ inch, find the maximum normal stress in the road, taking into account the weight of the rod itself. Use: density of steel = ϒ = 490 lb/ft3 .arrow_forwardضهقعفكضكشتبتلتيزذظظؤوروىووؤءظكصحبت٢٨٩٤٨٤ع٣خ٩@@@#&#)@)arrow_forward
- Principles of Geotechnical Engineering (MindTap C...Civil EngineeringISBN:9781305970939Author:Braja M. Das, Khaled SobhanPublisher:Cengage LearningFundamentals of Geotechnical Engineering (MindTap...Civil EngineeringISBN:9781305635180Author:Braja M. Das, Nagaratnam SivakuganPublisher:Cengage LearningPrinciples of Foundation Engineering (MindTap Cou...Civil EngineeringISBN:9781337705028Author:Braja M. Das, Nagaratnam SivakuganPublisher:Cengage Learning
- Principles of Foundation Engineering (MindTap Cou...Civil EngineeringISBN:9781305081550Author:Braja M. DasPublisher:Cengage Learning