What is the curved surface area of the cuboid?

What is the curved surface area of the cuboid?

Solution: As we know, the total surface area of a cuboid, S = 2 (lb + bh + lh) and the lateral surface area of a cuboid is 2h(l + b). Therefore, the total surface area of cuboid and lateral surface area of a cuboid is 108 in2 and 60 in2 respectively.

How do you calculate CSA of a cuboid?

The Total surface area of a cuboid (TSA) is equal to the sum of the areas of it’s 6 rectangular faces, which is given by:

  1. Total Surface Area of a Cuboid (TSA) = 2 (lw + wh + lh) square units.
  2. Lateral Surface Area of a cuboid (LSA) = 2 (lh + wh) = 2 h (l + w) square units.
  3. Example 1:
  4. Solution.
  5. Example 2:
  6. Solution:

What is the formula for curved surface area?

The curved surface area of a cylinder is given using the formula, curved/lateral surface area of cylinder = 2πrh, where ‘r’ is the base radius and ‘h’ is the height of the cylinder.

How is the surface area of a cube derived?

The formula for surface area is equal to six times of square of length of the sides of cube. It is represented by 6a2, where a is the side length of cube.It is basically the total surface area.

What is a curved surface area?

Curved Surface Area- The curved surface area is defined as the area of only curved surface, leaving the circular top and base. Total Surface Area- It is the area of the curved surface as well as the bases.

What is the CSA of cube?

csa of cube = 4a^2. csa of cuboid= 2(l+b) × h or perimeter× height.

What is TSA and CSA?

Curved Surface Area (CSA) – It includes the area of all the curved surfaces. Lateral Surface Area (LSA) – It includes the area of all the surface excluding the top and bottom areas. Total Surface Area (TSA) – It includes the area of all the surfaces of the object including the bases.

What is curved surface area?

When we use curved surface area and total surface area?

What is curved surface area of cone?

Curved surface area of a cone = πrl. Total surface area of a cone = πr(l+r) l=√h2+r2.