①选取5个大叶芹种植小区随机挂牌,各标记5株大叶芹,分别施加不同量的微生物菌肥;
②将微生物菌肥一次性施入,各组施用量见下表;
③在种植后每隔10天测定其生长指标,重复3次,取其平均值。下表为5组大叶芹第60天生长指标及产量情况:
组别 | 微生物菌肥施用量(kg/667m2) | 株高(cm) | 茎粗(mm) | 叶片数(片) | 产量(kg/667m2) |
CK | 0 | 21.49 | 2.46 | 11.67 | 1424.06 |
A | 20 | 22.36 | 2.57 | 14.4 | 1483.15 |
B | 40 | 23.31 | 2.59 | 15.0 | 1581.53 |
C | 60 | 24.05 | 2.88 | 15.4 | 1650.26 |
D | 80 | 23.16 | 2.68 | 13.07 | 1593.76 |
(1)本实验的变量是
(2)为了减小实验误差,科研人员采取的具体措施是
(3)分析数据可知,不同微生物菌肥施用量对大叶芹生长发育的影响是
(4)若要进一步细化施用量,探究微生物菌肥的最适宜施用量,应在

同类型试题

y = sin x, x∈R, y∈[–1,1],周期为2π,函数图像以 x = (π/2) + kπ 为对称轴
y = arcsin x, x∈[–1,1], y∈[–π/2,π/2]
sin x = 0 ←→ arcsin x = 0
sin x = 1/2 ←→ arcsin x = π/6
sin x = √2/2 ←→ arcsin x = π/4
sin x = 1 ←→ arcsin x = π/2


y = sin x, x∈R, y∈[–1,1],周期为2π,函数图像以 x = (π/2) + kπ 为对称轴
y = arcsin x, x∈[–1,1], y∈[–π/2,π/2]
sin x = 0 ←→ arcsin x = 0
sin x = 1/2 ←→ arcsin x = π/6
sin x = √2/2 ←→ arcsin x = π/4
sin x = 1 ←→ arcsin x = π/2

