- A.<IMG src="//img1.yqda.net/question-name/e3/42b9185b9a1552375fc51d5c54d959.jpg">
- B.<IMG src="//img1.yqda.net/question-name/04/5960724da0dde0fa98bfa701dbfe64.jpg">
- C.<IMG src="//img1.yqda.net/question-name/24/aff99ae428eba0a32952ee09218047.jpg">
- D.<IMG src="//img1.yqda.net/question-name/55/4dab544a725382835b556dc3c9a16b.jpg">
- A.一级
- B.二级
- C.三级
- D.由业主确定
- A.200
- B.220
- C.240
- D.260
- A.向上30
- B.向上20
- C.向上10
- D.向上0
- A.91 000
- B.93 000
- C.95 000
- D.97 000
- A.61 000
- B.61 500
- C.61 700
- D.62 000
- A.二车道
- B.三车道
- C.四车道
- D.五车道
- A.21 000
- B.21 500
- C.22 000
- D.22 500
- A.Φ6
- B.Φ8
- C.Φ10
- D.Φ12
- A.2.53
- B.3.8
- C.4.31
- D.10.13
- A.0.65
- B.0.7
- C.0.75
- D.0.82
- A.0.65
- B.0.7
- C.0.75
- D.0.8
- A.μ<SUB>N</SUB>=0.81<0.95,满足三级要求
- B.μ<SUB>N</SUB>=0.81<0.85,满足二级要求
- C.μ<SUB>N</SUB>=0.80<0.85,满足二级要求
- D.μ<SUB>N</SUB>=0.80<0.95,满足三级要求
- A.3100kN
- B.8640kN
- C.9720kN
- D.9180kN
- A.1260
- B.1230
- C.1200
- D.1160
- A.2413
- B.2669
- C.2839
- D.3140
- A.565
- B.694
- C.756
- D.914
- A.2492
- B.3271
- C.3919
- D.4555
- A.1.997
- B.2.29
- C.2.351
- D.2.616
- A.153
- B.257
- C.466
- D.525
- A.1.616
- B.1.945
- C.2.256
- D.2.505
- A.218 760
- B.233 333
- C.303 333
- D.306 133
- A.1.276
- B.1.315
- C.1.381
- D.1.499
- 24
-
下列结论正确的是( )。
- A.土的重度愈大,其密实度愈高
- B.液性指数愈小,土愈坚硬
- C.土的含水量愈大,其饱和度愈高
- D.地下水位以下土的含水量为100%
- A.受水平荷载和弯矩较大的桩,配筋长度应通过计算确定
- B.桩基承台下存在淤泥、淤泥质土或液化土层时,配筋长度应穿过淤泥、淤泥质土或液化土层
- C.坡地岸边的桩、地震区的桩、抗拔桩、嵌岩端承桩应通长配筋
- D.桩径大于600mm的钻孔灌注桩,构造钢筋的长度不宜小于桩长的2/3
- A.83.4kN/m<SUP>2</SUP>
- B.96.7kN/m<SUP>2</SUP>
- C.105.7kN/m<SUP>2</SUP>
- D.114.9kN/m<SUP>2</SUP>
- A.19.69kN/m<SUP>2</SUP>
- B.29.03kN/m<SUP>2</SUP>
- C.38.64kN/m<SUP>2</SUP>
- D.46.79kN/m<SUP>2</SUP>
- A.189.6kN/m<SUP>2</SUP>
- B.195.3kN.m<SUP>2</SUP>
- C.216.5kN/m<SUP>2</SUP>
- D.225kN/m<SUP>2</SUP>
- A.139kN/m<SUP>2</SUP>
- B.149kN/m<SUP>2</SUP>
- C.156kN/m<SUP>2</SUP>
- D.165kN/m<SUP>2</SUP>
- A.10 675kN
- B.11 869kN
- C.12 960kN
- D.13 651kN
- A.249kN/m<SUP>2</SUP>
- B.256kN/m<SUP>2</SUP>
- C.261kN/m<SUP>2</SUP>
- D.273kN/m<SUP>2</SUP>
- A.0.134m
- B.0.148m
- C.0.155m
- D.0.169m
- A.11 560kN
- B.12 396kN
- C.13 675kN
- D.14 486kN
- A.2936kN
- B.3041kN
- C.3105kN
- D.3248kN
- A.3900kN·m
- B.4000kN·m
- C.4100kN·m
- D.4200kN·m
- A.1625kN
- B.1778kN
- C.1896kN
- D.1945kN
- A.6.86
- B.5.23
- C.6.94
- D.7.4
- A.1853kN
- B.1901kN
- C.1958kN
- D.2019kN
- A.65.2mm<SUP>2</SUP>
- B.51.7mm<SUP>2</SUP>
- C.55.2mm<SUP>2</SUP>
- D.61.7mm<SUP>2</SUP>
- A.多层砌体房屋抗震计算,可采用底部剪力法
- B.多层砌体房屋,可只选择承载面积较大或竖向应力较小的墙段进行截面抗剪验算
- C.进行地震剪力分配和截面验算时,墙段的层间抗侧力等效刚度可只考虑剪切变形
- D.各类砌体沿阶梯形截面破坏的抗剪强度应采用f<SUB>VE</SUB>
- A.提高房屋构件的承载能力
- B.增强房屋的整体刚度
- C.防止由于较大振动荷载对房屋引起的不利影响
- D.防止由于地基不均匀沉降对房屋引起的不利影响
- A.M=7.5kN·m,V=21.02kN
- B.M=6.31kN·m,V=21.02kN
- C.M=6.31kN·m,V=18.31kN
- D.M=9.51kN·m,V=26.5kN
- A.M=7.36kN·m,V=19.54kN
- B.M=5.89kN·m,V=16.7kN
- C.M=6.85kN·m,V=17.5kN
- D.M=9.51kN·m,V=26.5kN
- A.0.85
- B.0.81
- C.0.76
- D.0.7
- A.9.27kN·m
- B.15.05kN·m
- C.8.94kN·m
- D.13.27kN·m
- A.331kN
- B.356kN
- C.456kN
- D.528kN
- A.7.04kN·m
- B.5.05kN·m
- C.6.94kN·m
- D.8.75kN·m
- A.98.4kN
- B.101kN
- C.134.2kN
- D.147.8kN
- A.M=74.49kN·m,V=49.75kN
- B.M=35.98kN·m,V=145.87kN
- C.M=35.98kN·m,V=74.49kN
- D.M=35.98kN·m,V=152.13kN
- A.45mm
- B.57mm
- C.65mm
- D.54mm
- A.0.0884;2.032
- B.0.0940;2.156
- C.0.0984;2.032
- D.0.0884;2.221
- A.热轧方钢管
- B.热轧圆钢管
- C.热轧H型钢组合截面
- D.热轧H型
- A.构件变形计算
- B.构件整体稳定性计算
- C.构件抗弯强度计算
- D.构件抗剪强度计算
- A.171.3
- B.180.6
- C.205.9
- D.151.4
- A.<IMG src="//img1.yqda.net/question-name/e5/64948eec3f6900be95703df5ae7cf5.jpg">
- B.<IMG src="//img1.yqda.net/question-name/a3/147db3fcb010917a93685f31dd8ad7.jpg">
- C.<IMG src="//img1.yqda.net/question-name/93/03c8882cc9ab0845eaa3ed1c268946.jpg">
- D.<IMG src="//img1.yqda.net/question-name/62/cb9a9daf2e33f18407c3c49867eee4.jpg">
- A.171.3
- B.180.6
- C.205.9
- D.152.3
- A.8
- B.9.2
- C.11.3
- D.12.5
- A.46.2
- B.35
- C.27.8
- D.24.9
- A.3.3
- B.4.4
- C.5.5
- D.6.6
- A.356
- B.258.7
- C.178.5
- D.158.2
- A.26
- B.22
- C.18
- D.16
- A.85.7
- B.61.2
- C.50.4
- D.48.2
- A.V与P的共同作用
- B.V与P和q的共同作用
- C.V与q的共同作用
- D.P与q的共同作用
- A.8
- B.14
- C.28
- D.42
- A.不论N的大小,均可提高构件的抗剪承载力V<SUB>u</SUB>
- B.不论N的大小,均可降低构件的V<SUB>u</SUB>
- C.N适当时提高构件的V<SUB>u</SUB>,N太大时降低构件的V<SUB>u</SUB>
- D.N大时提高构件的V<SUB>u</SUB>,N小时降低构件的V<SUB>u</SUB>
- A.54×10<SUP>8</SUP>
- B.81×10<SUP>8</SUP>
- C.90×10<SUP>8</SUP>
- D.108×10<SUP>8</SUP>
- A.保证受压钢筋在构件破坏时能达到其抗压强度设计值
- B.防止受压钢筋压屈
- C.避免保护层剥落
- D.保证受压钢筋在构件破坏时能达到极限抗压强度
- A.2428mm<SUP>2</SUP>
- B.2619mm<SUP>2</SUP>
- C.3310mm<SUP>2</SUP>
- D.2945mm<SUP>2</SUP>
- A.0.498
- B.0.345
- C.0.427
- D.0
- A.42 555kN·m<SUP>2</SUP>
- B.49 123kN·m<SUP>2</SUP>
- C.33 125kN·m<SUP>2</SUP>
- D.55 412kN·m<SUP>2</SUP>
- A.1566mm<SUP>2</SUP>
- B.1.439mm<SUP>2</SUP>
- C.1376mm<SUP>2</SUP>
- D.1669mm<SUP>2</SUP>
- A.1266mm<SUP>2</SUP>
- B.1439mm<SUP>2</SUP>
- C.1376mm<SUP>2</SUP>
- D.1569mm<SUP>2</SUP>
- A.183N/mm<SUP>2</SUP>
- B.211N/mm<SUP>2</SUP>
- C.84N/mm<SUP>2</SUP>
- D.101N/mm<SUP>2</SUP>
- A.1129mm<SUP>2</SUP>
- B.1025mm<SUP>2</SUP>
- C.1256mm<SUP>2</SUP>
- D.912mm<SUP>2</SUP>
- A.V=222.1kN,M=-98.4kN·m
- B.V=222.1kN,M=-89.2kN·m
- C.V=208.2kN,M=-98.4kN·m
- D.V=241.5kN,M=-109.5kN·m
- A.114mm<SUP>2</SUP>
- B.79mm<SUP>2</SUP>
- C.65mm<SUP>2</SUP>
- D.101mm<SUP>2</SUP>
- A.76mm<SUP>2</SUP>
- B.99mm<SUP>2</SUP>
- C.138mm<SUP>2</SUP>
- D.102mm<SUP>2</SUP>
- A.64mm<SUP>2</SUP>
- B.85mm<SUP>2</SUP>
- C.107mm<SUP>2</SUP>
- D.94mm<SUP>2</SUP>