The required area is represented by the shaded area OBCDO.
Solving the given equation of circle,4x2+4y2=9,and parabola,x2=4y,we obtain the
point of intersection as B\((\sqrt2,\frac{1}{2})\)and D \((-\sqrt2,\frac{1}{2}).\)
It can be observed that the required area is symmetrical about y-axis.
∴Area OBCDO=2×Area OBCO
We draw BM perpendicular to OA.
Therefore,the coordinates of M are \((\sqrt2,0)\).
Therefore,Area OBCO=Area OMBCO-Area OMBO
=\(∫_0^{\sqrt2}\sqrt{\frac{(9-4x^2)}{4}}dx-∫_0^{\sqrt2}\sqrt{\frac{x^2}{4}}dx\)
=\(\frac{1}{2}∫_0^{√2}\sqrt{9-4x^2}\,dx-\frac{1}{4}∫_0^{\sqrt2}x^2dx\)
=\(\frac{1}{4}\bigg[x\sqrt{9-4x^2}+\frac{9}{2}sin^{-1}\frac{2x}{3}\bigg]_0^{\sqrt2}-\frac{1}{4}\bigg[\frac{x^3}{3}\bigg]_0^{\sqrt2}\)
=\(\frac{1}{4}[\sqrt{2}\sqrt{9-8}+\frac{9}{2}sin^{-1}\frac{2√2}{3}]-\frac{1}{12}(\sqrt2)^3\)
=\(\frac{\sqrt2}{4}+\frac{9}{8}sin^{-1}\frac{2\sqrt2}{3}-\frac{\sqrt2}{6}\)
=\(\frac{\sqrt2}{12}+\frac{9}{8}sin^{-1}\frac{2\sqrt2}{3}\)
=\(\frac{1}{2}(\frac{\sqrt2}{6}+\frac{9}{4}sin^{-1}\frac{2\sqrt2}{3})\)
Therefore,the required area OBCDO is
\((2×\frac{1}{2}[\frac{\sqrt2}{6}+\frac{9}{4}sin^{-1}\frac{2\sqrt2}{3}])=[\frac{\sqrt2}{6}+\frac{9}{4}sin^{-1}\frac{2\sqrt2}{3}]\)units.
Rupal, Shanu and Trisha were partners in a firm sharing profits and losses in the ratio of 4:3:1. Their Balance Sheet as at 31st March, 2024 was as follows:
(i) Trisha's share of profit was entirely taken by Shanu.
(ii) Fixed assets were found to be undervalued by Rs 2,40,000.
(iii) Stock was revalued at Rs 2,00,000.
(iv) Goodwill of the firm was valued at Rs 8,00,000 on Trisha's retirement.
(v) The total capital of the new firm was fixed at Rs 16,00,000 which was adjusted according to the new profit sharing ratio of the partners. For this necessary cash was paid off or brought in by the partners as the case may be.
Prepare Revaluation Account and Partners' Capital Accounts.
On the basis of the following hypothetical data, calculate the percentage change in Real Gross Domestic Product (GDP) in the year 2022 – 23, using 2020 – 21 as the base year.
Year | Nominal GDP | Nominal GDP (Adjusted to Base Year Price) |
2020–21 | 3,000 | 5,000 |
2022–23 | 4,000 | 6,000 |
Integral calculus is the method that can be used to calculate the area between two curves that fall in between two intersecting curves. Similarly, we can use integration to find the area under two curves where we know the equation of two curves and their intersection points. In the given image, we have two functions f(x) and g(x) where we need to find the area between these two curves given in the shaded portion.
Area Between Two Curves With Respect to Y is
If f(y) and g(y) are continuous on [c, d] and g(y) < f(y) for all y in [c, d], then,