Viewing a Demonstration Choosing Game Settings

Before you start using this book, you can view a demonstration of what it can do.

Once you have installed and selected the book card, press MENU and then the arrow keys to highlight View Demo on the Setup menu. Then press ENTER to view the demonstration.

If you want to stop the demonstration, press CLEAR .

You can customize the games to the settings that suit you. Go back and change them anytime you want more or less of a challenge. Here are the settings and how to use them:

1.Press MENU .

2.Press to highlight the skill level with which you want to play the games.

3.Press ENTER to select it.

Help is Always at Hand

You can view a help message at virtually any screen by pressing HELP . Press the arrow keys to read it. To exit help, press BACK .

If you want to read a tutorial about what the keys do, select Tutorial from the Setup menu.

Follow the Arrows

The flashing arrows on the right of the screen show which arrow keys you can press to move around the screen.

The check marks the selected setting.

4.Press to go to the Word Size menu.

5.Select a word size.

Random selects words of various lengths for game words.

Enter Your Own lets you type in your own game words.

6.Press CLEAR when done to go to the games list.

7.To select a game, press and

and then ENTER when the name of the game you want is showing.

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Franklin WGM-2037 manual Viewing a Demonstration Choosing Game Settings, If you want to stop the demonstration, press Clear

WGM-2037 specifications

The Franklin WGM-2037 is a versatile, high-performance unmanned aerial vehicle (UAV) designed for a range of applications, including surveillance, reconnaissance, and environmental monitoring. Built by Franklin Aerospace, the WGM-2037 incorporates cutting-edge technologies that set it apart in the competitive UAV market.

One of the standout features of the WGM-2037 is its advanced flight control system. This system utilizes a combination of GPS, inertial navigation, and sensor fusion to ensure precise maneuverability and stability in various flying conditions. With a maximum operating altitude of 20,000 feet and a range of up to 200 nautical miles, the WGM-2037 can effectively operate in diverse environments, from urban areas to remote landscapes.

The aircraft's airframe is constructed from lightweight composite materials, which enhance durability while minimizing weight. This design not only contributes to improved fuel efficiency but also allows for a greater payload capacity. The WGM-2037 can carry a variety of sensors and equipment, including high-resolution cameras, thermal imaging systems, and communication relays, making it suitable for a wide range of missions.

In terms of power, the WGM-2037 is equipped with a state-of-the-art hybrid propulsion system. This system combines electric motors with a small internal combustion engine, providing an optimal balance of speed, endurance, and operational flexibility. The hybrid design allows the UAV to achieve a flight endurance of up to 30 hours, making it ideal for long-duration missions without the need for frequent refueling.

Additionally, the WGM-2037 features an innovative data management system that allows for real-time data collection and transmission. This capability enables operators to receive critical information quickly, facilitating timely decision-making. The UAV can be operated remotely or autonomously, depending on the mission requirements, making it a highly adaptable platform.

The WGM-2037 incorporates advanced communication technologies to ensure secure and reliable data transmission. With encrypted channels and redundancy built into its communication systems, the UAV can maintain contact with ground control even in challenging environments.

In summary, the Franklin WGM-2037 stands out with its robust flight capabilities, advanced sensor compatibility, and innovative design. With a focus on efficiency and adaptability, this UAV meets the growing demands of various industries, offering a reliable solution for aerial tasks while pushing the boundaries of unmanned flight technologies.