This document summarizes research showing that the gravitropic setpoint angle (GSA) of lateral plant branches is controlled by auxin. Experiments demonstrate that lateral branches maintain a non-vertical GSA through a balance of gravitropic growth, which orients growth toward gravity, and an opposing auxin-dependent antigravitropic growth component. When this antigravitropic offset is removed by clinorotation or auxin transport inhibitors, lateral branches grow outward/downward, revealing the antigravitropic influence. Genetic evidence also links the magnitude of the antigravitropic offset and resulting GSA to the level of auxin signaling. Therefore, auxin specifies the GSA of lateral branches by regulating
This document summarizes research showing that the gravitropic setpoint angle (GSA) of lateral plant branches is controlled by auxin. Experiments demonstrate that lateral branches maintain a non-vertical GSA through a balance of gravitropic growth, which orients growth toward gravity, and an opposing auxin-dependent antigravitropic growth component. When this antigravitropic offset is removed by clinorotation or auxin transport inhibitors, lateral branches grow outward/downward, revealing the antigravitropic influence. Genetic evidence also links the magnitude of the antigravitropic offset and resulting GSA to the level of auxin signaling. Therefore, auxin specifies the GSA of lateral branches by regulating
The document discusses an online traffic monitoring system for mobile users that provides information on traffic jams, meteorological conditions, traffic flow parameters, air pollution levels, and short-term and long-term health risks. It uses a Gaussian model of turbulent diffusion to calculate pollutant concentrations from traffic emissions based on factors like emission rates, wind speed, and source height. The system obtains real-time traffic and weather data from online sources to analyze current conditions. It also allows users to obtain routes with lowest estimated health risks and get categorized risk levels for their journey. While the simple calculation methods make instant estimates possible, the summary notes that more detailed road and vehicle data could improve accuracy.
18. 18Schneider Electric Company Confidential - Solar Business Unit Ranjeet Kuberkar Sep 2012
0
50
100
EU Efficiency
MPPT
Communication
Interfce
AmbientConditions
Ease of DC/AC
Connections
Ease of handling
0
50
100
EU Efficiency
MPPT
Communication Interfce
AmbientConditions
Ease of DC/AC
Connections
Ease of handling
0
50
100
EU Efficiency
MPPT
Communication Interfce
AmbientConditions
Ease of DC/AC
Connections
Ease of handling
0
50
100
EU Efficiency
MPPT
Communication Interfce
AmbientConditions
Ease of DC/AC
Connections
Ease of handling
0
50
100
EU Efficiency
MPPT
Communication Interfce
AmbientConditions
Ease of DC/AC
Connections
Ease of handling
0
50
100
EU Efficiency
MPPT
Communication Interfce
AmbientConditions
Ease of DC/AC
Connections
Ease of handling
Conext RL 仂亟亳仆 亳亰 仆舒亳弍仂仍亠亠
从仂仆从亠仆仂仗仂仂弍仆 仗仂亟从仂于 仆舒 仆从亠
仍亳亢舒亶亳亠 从仂仆从亠仆
舒仍仆亠 从仂仆从亠仆
Note: MPPT includes no. of MPPTs and MPPT voltage range; Ambient conditions includes IP rating and operating temperature range; Ease of handling
includes W/kg and W/dm3; Analysis for a representative 3kW inverter 18
E
19. 19Schneider Electric Company Confidential - Solar Business Unit Ranjeet Kuberkar Sep 2012
Conext RL 仂 于舒亳舒亳于仆仂亠 亳 仂亠仆
亠从亳于仆仂亠 仂亶于仂 亟仍 亠亠仆亳亶 于
仂仍仆亠仆仂亶 仆亠亞亠亳从亠
亳亰从亳亠 亰舒舒 仆舒 舒仆仂于从
亳 仂弍仍亢亳于舒仆亳亠
舒亳舒亳于仆仂 亳仗仂仍亰仂于舒仆亳
舒亟亠亢仆舒 亰舒亳舒 于舒亠亞仂 仂弍亠从舒
仂从舒 亠从亳于仆仂
20. 20Schneider Electric Company Confidential - Solar Business Unit Ranjeet Kuberkar Sep 2012
弌仗亠亳亳从舒亳
15.5 cm 47.3 cm
41cm
Note: Specifications are subject to change without notice
Conext RL 3000E and 4000E
Conext RL 5000E
17.7 cm 51 cm
44.5cm
21. 21Schneider Electric Company Confidential - Solar Business Unit Ranjeet Kuberkar Sep 2012
www.schneider-electric.ru
Editor's Notes
#20: Schneider Electric Bankability Easy to InstallFlexibleEasy to ServiceDesigned for ReliabilityMinimizes Total Cost of Ownership