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In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)
In the figure below, if a line segment connecting points B and D is perpendicular to AC and the area of triangle ADC is \(\frac{3\sqrt{3}}{2}\), then \(BC = ?\)