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mp4 | Video: h264,1280X720 | Audio: AAC, 44.1 KHz
Genre:eLearning | Language: English | Size:5.47 GB

Files Included :

1  The plan.mp4 (19.81 MB)
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10  Smooth pin & roller supports in a bent beam (exercise).mp4 (4.9 MB)
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11  Smooth pin & roller supports in a bent beam (solution).mp4 (32.46 MB)
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12  Smooth pin & cable support in a water & soil barrier (exercise).mp4 (15.7 MB)
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13  Smooth pin & cable support in a water & soil barrier (solution 1).mp4 (35.53 MB)
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14  Smooth pin & cable support in a water & soil barrier (solution 2).mp4 (53.2 MB)
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15  Smooth collar & contacting surface support in a bent beam (exercise).mp4 (8.2 MB)
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16  Smooth collar & contacting surface support in a bent beam (solution).mp4 (54.52 MB)
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17  Wheel support on an assembly platform (exercise).mp4 (7.52 MB)
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18  Wheel support on an assembly platform (solution).mp4 (31.02 MB)
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19  Wheel spring system (exercise).mp4 (8.4 MB)
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2  Reaction forces intro.mp4 (21.4 MB)
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20  Wheel spring system (solution).mp4 (33.75 MB)
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21  Wheel spring system (internal force analysis).mp4 (56.11 MB)
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22  Airplane wheel reaction forces in 3D (exercise).mp4 (12.64 MB)
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23  Intro to 3D rigid body equilibrium principle.mp4 (24.4 MB)
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24  Airplane wheel reaction forces in 3D (solution).mp4 (35.19 MB)
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25  Fixed support of a 3D airplane wing (exercise).mp4 (17.14 MB)
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26  Fixed support of a 3D airplane wing (solution).mp4 (72.63 MB)
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27  The ball and socket joint support of a sign structure in 3D (exercise).mp4 (8.78 MB)
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28  The ball and socket joint support of a sign structure in 3D (solution).mp4 (49.29 MB)
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29  Statically indeterminate cases & improper constraints.mp4 (21.98 MB)
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3  Rigid body equilibrium principle intro.mp4 (78.23 MB)
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4  External VS internal forces & moments.mp4 (28.01 MB)
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5  Smooth pin, rocker & roller support in beams (exercise).mp4 (59.55 MB)
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6  Smooth pin, rocker & roller support in beams (solution).mp4 (33.26 MB)
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7  Fixed support in beams (exercise).mp4 (3.38 MB)
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8  Fixed support in beams (solution) + two force member (exercise).mp4 (89.83 MB)
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9  Two force member (solution).mp4 (45.71 MB)
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1  Three member frames with fixed & smooth pin supports (exercise).mp4 (9.18 MB)
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10  Same pulleys, different configuration - what's the difference (solution 2).mp4 (52.45 MB)
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11  A steer loader machine & its internal forces (exercise).mp4 (23.04 MB)
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12  A steer loader machine & its internal forces (solution).mp4 (91.4 MB)
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13  A tractor arm machine & its internal forces (exercise).mp4 (8.16 MB)
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14  A tractor arm machine & its internal forces (solution).mp4 (96.35 MB)
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15  An oil pumping unit & its internal forces (exercise).mp4 (7.06 MB)
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16  An oil pumping unit & its internal forces (solution).mp4 (19.5 MB)
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17  A 3D frame & its internal forces (exercise).mp4 (11.7 MB)
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18  A 3D frame & its internal forces (solution).mp4 (72.87 MB)
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19  Follow up.mp4 (1.05 MB)
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2  Three member frames with fixed & smooth pin supports (solution 1).mp4 (56.32 MB)
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3  Three member frames with fixed & smooth pin supports (solution 2).mp4 (54.38 MB)
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4  A 3 pulley vertical system (exercise).mp4 (3.81 MB)
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5  A 3 pulley vertical system (solution).mp4 (43.84 MB)
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6  A 4 pulley diagonal system (exercise).mp4 (3.71 MB)
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7  A 4 pulley diagonal system (solution).mp4 (16.52 MB)
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8  Same pulleys, different configuration - what's the difference (exercise).mp4 (12.02 MB)
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9  Same pulleys, different configuration - what's the difference (solution 1).mp4 (39.49 MB)
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1  Work produced by forces & moments.mp4 (99.79 MB)
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10  Intro to conservative forces & moments.mp4 (78.65 MB)
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11  Intro to potential energy from gravity & spring.mp4 (27.04 MB)
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12  Intro to potential energy criterion for equilibrium.mp4 (94.17 MB)
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13  Applying a potential function for finding the equilibrium of a system (exercise).mp4 (19.83 MB)
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14  Applying a potential function for finding the equilibrium of a system (solution).mp4 (35.68 MB)
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15  Intro to equilibrium stability using the potential function analysis.mp4 (103.63 MB)
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16  A spring mass system with a rod - equilibrium & stability (exercise).mp4 (5.89 MB)
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17  A spring mass system with a rod - equilibrium & stability (solution 1).mp4 (51.57 MB)
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18  A spring mass system with a rod - equilibrium & stability (solution 2).mp4 (48.9 MB)
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19  A sphere system with torsion spring & mass - equilibrium & stability (exercise).mp4 (10.88 MB)
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2  Intro to virtual work principle.mp4 (58.5 MB)
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20  A sphere system with torsion spring & mass - equilibrium & stability (solution).mp4 (57.03 MB)
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3  Internal combustion engine with virtual work (exercise).mp4 (7.22 MB)
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4  Internal combustion engine with virtual work (solution).mp4 (95.05 MB)
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5  The Nuremberg scissors with virtual work (exercise).mp4 (15.9 MB)
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6  The Nuremberg scissors with virtual work (solution 1).mp4 (103.5 MB)
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7  The Nuremberg scissors with virtual work (solution 2).mp4 (75.4 MB)
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8  The container's hydraulic cylinder with virtual work (exercise).mp4 (6.36 MB)
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9  The container's hydraulic cylinder with virtual work (solution).mp4 (84.5 MB)
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1  Intro to friction.mp4 (79.89 MB)
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10  A two member ladder friction problem (solution 2).mp4 (79.03 MB)
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11  A slider problem with diagonal friction (exercise).mp4 (10.09 MB)
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12  A slider problem with diagonal friction (solution).mp4 (111.29 MB)
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13  Intro to friction between flat belts and fixed disks 1.mp4 (62.83 MB)
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14  Intro to friction between flat belts and fixed disks 2.mp4 (101.92 MB)
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15  Lowering a car with a constant velocity with a rope around the tree (exercise).mp4 (84.88 MB)
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16  Lowering a car with a constant velocity with a rope around the tree (solution).mp4 (43.89 MB)
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17  Relative friction of two blocks + a rope around a fixed peg (exercise).mp4 (8.24 MB)
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18  Relative friction of two blocks + a rope around a fixed peg (solution 1).mp4 (41.76 MB)
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19  Relative friction of two blocks + a rope around a fixed peg (solution 2).mp4 (71.82 MB)
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2  Static VS kinetic friction + roofer slipping problem (exercise).mp4 (88.6 MB)
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20  A 3 peg & rope friction problem (exercise).mp4 (5.4 MB)
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21  A 3 peg & rope friction problem (solution 1).mp4 (82.97 MB)
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22  A 3 peg & rope friction problem (solution 2).mp4 (35.96 MB)
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23  A friction moment of a hollow disk (exercise).mp4 (13.63 MB)
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24  A friction moment of a hollow disk (solution 1).mp4 (62.65 MB)
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25  A friction moment of a hollow disk (solution 2).mp4 (56.92 MB)
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26  Intro to rolling resistance of a wheel on an inclined plane (exercise).mp4 (75.81 MB)
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27  Intro to rolling resistance of a wheel on an inclined plane (solution 1).mp4 (40.21 MB)
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28  Intro to rolling resistance of a wheel on an inclined plane (solution 2).mp4 (60.74 MB)
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29  Calculating the rolling resistance force (exercise).mp4 (5.16 MB)
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3  Roofer slipping problem (solution).mp4 (85.26 MB)
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30  Calculating the rolling resistance force (solution).mp4 (80.54 MB)
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4  A pulley - crate friction problem (exercise).mp4 (6.15 MB)
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5  A pulley - crate friction problem (solution).mp4 (105.31 MB)
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6  A sideways slipping car problem (exercise).mp4 (5.26 MB)
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7  A sideways slipping car problem (solution).mp4 (35.32 MB)
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8  A two member ladder friction problem (exercise).mp4 (4.23 MB)
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9  A two member ladder friction problem (solution 1).mp4 (73.59 MB)
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1  Intro to trusses 1.mp4 (70.45 MB)
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10  The convention for normal, shear, and moment diagrams.mp4 (50.67 MB)
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11  The shear force & moment diagrams for a moving crane (exercise).mp4 (10.34 MB)
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12  The shear force & moment diagrams for a moving crane (solution 1).mp4 (50.69 MB)
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13  The shear force & moment diagrams for a moving crane (solution 2).mp4 (50.42 MB)
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14  The shear force & moment diagrams for a moving crane (solution 3).mp4 (75.2 MB)
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15  The shear force & moment diagrams for a moving crane (solution 4).mp4 (80.49 MB)
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16  The intuition for normal & shear stresses.mp4 (73.28 MB)
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17  The tension force in the suspension bridge cables 1.mp4 (60.34 MB)
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18  The tension force in the suspension bridge cables 2.mp4 (55.8 MB)
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19  The tension force in the suspension bridge cables 3.mp4 (72.51 MB)
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2  Intro to trusses 2 (exercise).mp4 (48.42 MB)
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20  The tension force in the suspension bridge cables 4 (exercise).mp4 (96.24 MB)
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21  The tension force in the suspension bridge cables 4 (solution 1).mp4 (48.6 MB)
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22  The tension force in the suspension bridge cables 4 (solution 2).mp4 (74.86 MB)
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23  The tension force in the suspension bridge cables 4 (solution 3).mp4 (37.54 MB)
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3  Intro to trusses 2 (solution 1).mp4 (53.72 MB)
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4  Intro to trusses 2 (solution 2).mp4 (55.68 MB)
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5  3D Trusses (exercise).mp4 (8.54 MB)
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6  3D Trusses (solution 1).mp4 (44.09 MB)
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7  3D Trusses (solution 2).mp4 (68.98 MB)
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8  Shear force & moment diagrams 1.mp4 (49.81 MB)
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9  Shear force & moment diagrams 2.mp4 (76.68 MB)
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1  Thank You!.mp4 (1.71 MB)
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Код:
 https://voltupload.com/08ioelqo46hd/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z01
https://voltupload.com/jimvp3qj65w7/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z02
https://voltupload.com/gnqzs4jkizmi/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z03
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https://voltupload.com/wyp768iofmuh/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z05
https://voltupload.com/u9zxyi4tc7z0/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.zip
Код:
 https://rapidgator.net/file/a47730f5fb7ab7379a558409517af322/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z01
https://rapidgator.net/file/7022f4e62005e4e2a30a8efcf095a86f/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z02
https://rapidgator.net/file/38ac8e120c08b8cdfe0ad9252a78a075/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z03
https://rapidgator.net/file/fdbaa3764e7d43d37dfd5d33b5a37bc4/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z04
https://rapidgator.net/file/7b6dfd7b4f89463736f5d3073272bff7/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.z05
https://rapidgator.net/file/ff99d4bffd070228215dbf789d77e85f/Udemy_Engineering_Mechanics_Statics_2_Intuition_Plus_Application.zip

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