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1.3.1 Identify fronts \( \mathbf{A} \) and B on the map. 1.3.2 Identify area \( X \) on the satellite image. 1.3.3 Mention the conditions that favoured the formation of tropical cyclone Dikeledi in the South western Indian ocean. 1.3.4 Why do midlatitude cyclones mostly affect the weather of South Africa during winter. 1.3.5 "The notice further indicates that Malawi will experience reduced rainfall" account for the conditions described in the statement. 1.3.6 According to information from DCCMS, the storm is expected to land over northern Madagascar on Sunday, January 12, 2025" Suggest the action plan that the government of Madagascar can apply to reduce the impacts of tropical cyclone Dikeledi. 1.3.7 Draw a well labelled cross section to illustrate the midlatitude stage represented at \( C \).

Ask by Thornton Robbins. in South Africa
Mar 19,2025

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**1.3.1 Front Identification** - **Front A:** Red line on the map, representing the warm front where warm air meets colder air. - **Front B:** Blue line, indicating the cold front where colder air undercuts warmer air. **1.3.2 Area X Identification** - Area X is the region with a cluster of deep convective clouds on the satellite image, showing intense thunderstorm activity. **1.3.3 Conditions Favoring Tropical Cyclone Dikeledi** - Warm sea surface temperatures (\(26^\circ\text{C}\) or higher). - High atmospheric moisture. - Low vertical wind shear. - Presence of a pre-existing disturbance that initiates cyclonic rotation. **1.3.4 Midlatitude Cyclones and South African Winter Weather** - Enhanced temperature contrast between cold polar and milder subtropical air during winter. - Increased baroclinicity favors cyclone development. - Cyclone tracks often pass over South Africa, leading to variable and severe winter weather. **1.3.5 Reduced Rainfall in Malawi** - Cyclone Dikeledi alters atmospheric circulation, leading to subsidence and stabilization over Malawi. - Diverts moisture inflow, resulting in reduced convective activity and rainfall. **1.3.6 Action Plan for Madagascar** - **Early Warning Systems:** Implement robust communication of storm warnings. - **Evacuation Routes:** Establish and secure evacuation paths and shelters. - **Infrastructure Reinforcement:** Secure critical infrastructure and prepare emergency response teams. - **Public Awareness:** Educate the public on cyclone preparedness and conduct drills. - **International Collaboration:** Work with regional and international agencies for additional support. **1.3.7 Midlatitude Cyclone Cross Section at Point C** - **Warm Front:** Sloping boundary where warm air rises. - **Cold Front:** Steep boundary where cold air advances. - **Occlusion at C:** Region where cold front catches up with warm front, forming an occluded front. - **Vertical Motion:** Ascending on the warm side and descending in the cold sector. This cross-section illustrates the typical structure of a midlatitude cyclone during its mature stage.

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Fronts A and B, often depicted in weather maps, represent boundaries where two different air masses meet, typically defined by temperature and humidity differences. Front A generally signifies a cold front, where cold air is advancing, while Front B symbolizes a warm front, where warm air rises over cold air. Understanding these fronts is vital for predicting weather patterns, as they directly influence local weather changes such as precipitation or temperature fluctuations. Area X, visible in satellite images, often highlights specific weather phenomena or geographic features, crucial for understanding various meteorological events. This area may show cloud formations indicative of storm development, temperature variations, or even land use patterns that influence local climate. By analyzing such images, meteorologists can assess atmospheric conditions and predict significant weather events, enhancing our preparedness for natural phenomena like tropical cyclones.

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