i have been thinking about it ,,, tried many weird tricks ,, can you tell me a little about the variable t a little please..Greg Bernhardt said:Where have you tried to start? There must be something to give you a hint or clue.
oh i am sorry ,, ok i am going to show what i have doneLCKurtz said:There is nothing special about ##t##. It is just the variable of integration. What "weird tricks" have you tried? You have to show us what you have tried. What methods do you know to do integrals?
While I am at it, I should mention that it is impolite to start threads then abandon them, as you seem to have a habit of doing.
should i post it on "Mathematics" if i don't know how to start ?LCKurtz said:There is nothing special about ##t##. It is just the variable of integration. What "weird tricks" have you tried? You have to show us what you have tried. What methods do you know to do integrals?
While I am at it, I should mention that it is impolite to start threads then abandon them, as you seem to have a habit of doing.
LCKurtz said:There is nothing special about ##t##. It is just the variable of integration. What "weird tricks" have you tried? You have to show us what you have tried. What methods do you know to do integrals?
While I am at it, I should mention that it is impolite to start threads then abandon them, as you seem to have a habit of doing.
i have uploaded an other image , , and i have to find derivatives,, and i think it is based on the general definition of logarithmsLCKurtz said:There is nothing special about ##t##. It is just the variable of integration. What "weird tricks" have you tried? You have to show us what you have tried. What methods do you know to do integrals?
While I am at it, I should mention that it is impolite to start threads then abandon them, as you seem to have a habit of doing.
very helpful, thankyou again <3LCKurtz said:So now you have stated the question and posted the answer. If you are asking how that answer was obtained, look up Leibniz integral rule either online or in your textbook.